Updated on 2026/08/03

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写真a

 
Shingo Urate
 
Organization
YCU Medical Center Devision of Nephrology and Hypertension Assistant Professor
Title
Assistant Professor
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Degree

  • Ph.D ( 2023.3   Yokohama City University )

Research History

  • Yokohama City University Medical Center

    2026.4

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  • Japanese Red Cross Medical Center

    2023.4 - 2026.3

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  • 横浜市立大学附属病院   腎臓高血圧内科   指導診療医

    2022.4 - 2023.3

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Professional Memberships

Papers

  • Efficacy of Nordic Walking in Improving Walking Ability in Patients on Peritoneal Dialysis: A Randomized Controlled Trial. International journal

    Rena Sumura Sonoda, Kiyotaka Uchiyama, Yuka Inaba, Chiaki Kasahara, Tomoki Sato, Ayaka Kaihara, Shohei Yamada, Shingo Urate, Mai Yanagi, Satoshi Kinugasa, Kiyokazu Tanaka, Junichi Kunoki, Yoshitaka Ishibashi

    Therapeutic apheresis and dialysis : official peer-reviewed journal of the International Society for Apheresis, the Japanese Society for Apheresis, the Japanese Society for Dialysis Therapy   30 ( 4 )   502 - 510   2026.8

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    BACKGROUND: Nordic walking (NW) is a four-point walking style that may improve exercise tolerance in chronic diseases, but its effects in peritoneal dialysis (PD) patients remain unclear. METHODS: PD patients with sarcopenia and/or musculoskeletal pain were randomly assigned to NW or usual care. The intervention consisted of NW for 20-30 min/day, at least three times per week for 12 weeks. The primary endpoint was the change in 6-min walking distance (6MWD). RESULTS: Twenty-four patients were enrolled (13 in the intervention group, 11 in the usual care group; age 74.0 ± 6.8 years; 6MWD 391.0 ± 58.1 m). Instructional compliance was 96% in the intervention group. The change in 6MWD was greater in the intervention group than in usual care (33.1 ± 33.5 vs. 4.9 ± 32.9 m), reaching borderline significance (p = 0.05). CONCLUSION: NW may be associated with improved walking ability in PD patients with sarcopenia or musculoskeletal pain, with a high adherence rate. TRIAL REGISTRATION: UMIN-CTR no.: UMIN 000052466.

    DOI: 10.1002/1744-9987.70141

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  • Exposure to Shower Water Without Dressings Is Associated With Increased Risk of Catheter-Related Infection in Peritoneal Dialysis Patients: A Retrospective Cohort Study. International journal

    Shingo Urate, Ayaka Kaihara, Chiaki Kasahara, Yuka Inaba, Tomoki Sato, Ryoichi Shirai, Shugo Doi, Hirotoshi Kakiwaki, Rena Sumura, Mai Yanagi, Satoshi Kinugasa, Kiyotaka Uchiyama, Yoshitaka Ishibashi

    Therapeutic apheresis and dialysis : official peer-reviewed journal of the International Society for Apheresis, the Japanese Society for Apheresis, the Japanese Society for Dialysis Therapy   30 ( 3 )   397 - 402   2026.6

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    INTRODUCTION: Preventing catheter-related infection (CRI) and peritonitis remains a challenge in peritoneal dialysis (PD). This study assessed whether showering without covering the catheter exit site increases CRI risk. METHODS: This single-center retrospective cohort study was conducted between January 2019 and December 2022, and included all patients who were receiving PD at the beginning of the study or initiated PD during the study period. Participants were classified into two groups: those who covered the exit site with waterproof dressings during showering (dressing group), and those who took showers with the exit site uncovered (uncovered group). The primary outcome was CRI-free catheter survival; the secondary outcome was catheter-related peritonitis. RESULTS: Of 188 eligible patients, 42 were excluded. Among the remaining 146, 54 were in the dressing group and 92 in the uncovered group. The mean age was 70.4 ± 11.1 years and 63.3 ± 12.9 years, respectively; 59% and 72% were male. CRI occurred in 29 patients in the dressing group and 76 patients in the uncovered group. The uncovered group had a significantly higher risk of CRI by the log-rank test (p < 0.01). In a multivariate Cox proportional-hazards model adjusted for potential confounders, uncovered showering remained an independent predictor of CRI (hazard ratio 2.29; 95% confidence interval 1.40-3.76; p < 0.01), along with a history of prior CRI. No cases of catheter-related peritonitis occurred in either group. CONCLUSION: Showering without covering the exit site is associated with an increased risk of CRI in PD patients.

    DOI: 10.1002/1744-9987.70132

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  • Enhancement of angiotensin II type 1 receptor-associated protein suppresses kidney inflammation in a mouse model of aristolochic acid nephropathy. International journal

    Rika Furuta, Shingo Urate, Hiromichi Wakui, Tatsuki Uehara, Shunichiro Tsukamoto, Shinya Taguchi, Ryutaro Morita, Naohito Okami, Akio Yamashita, Kengo Azushima, Kouichi Tamura

    Scientific reports   15 ( 1 )   27975 - 27975   2025.7

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    Chronic kidney disease generally progresses to irreversible fibrosis through chronic inflammation and age-related changes. We had previously reported that genetic knockdown of angiotensin II type 1 receptor (AT1R)-associated protein (ATRAP) exacerbates aging-associated kidney tubulointerstitial fibrosis in mice. However, whether enhanced ATRAP expression can suppress renal fibrosis and senescence in vivo remains unknown. Recently, we proposed that aristolochic acid nephropathy (AAN) could be used for modeling kidney aging with fibrosis. The present study aimed to investigate the functional role of ATRAP in aging-associated kidney fibrosis and inflammation using ATRAP transgenic (Tg19) mice subjected to AAN. AA administration caused histological renal fibrosis and enhanced ATRAP expression had no apparent effect on AA-induced renal fibrosis. However, enhanced ATRAP expression significantly suppressed AA-induced macrophage infiltration concomitant with reductions in inflammation-related, macrophage-related and senescence-related gene expression in the kidneys. Furthermore, the renal expression of anti-aging gene (Klotho, Sirtuin1) was significantly reduced in control mice in response to AA administration, whereas AA-mediated downregulation of Sirtuin1 expression was tendentially less prominent in Tg19 mice. Collectively, the enhancement of ATRAP expression failed to ameliorate renal fibrosis but partially attenuated renal inflammation and cellular senescence in AAN. Thus, ATRAP is a potential therapeutic target against renal inflammation and senescence.

    DOI: 10.1038/s41598-025-08642-7

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  • Leucine-rich alpha-2-glycoprotein 1 deficiency suppresses ischemia-reperfusion injury-induced renal fibrosis. International journal

    Naohito Okami, Hiromichi Wakui, Kengo Azushima, Tomohito Miyazawa, Eisuke Kubo, Shunichiro Tsukamoto, Mari Sotozawa, Shinya Taguchi, Shingo Urate, Kohei Ishiga, Sho Kinguchi, Tomohiko Kanaoka, Kouichi Tamura

    Scientific reports   15 ( 1 )   1259 - 1259   2025.1

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    Ischemia reperfusion injury (IRI) is a major cause of acute kidney injury (AKI) and ultimately leads to renal fibrosis, primarily via the transforming growth factor-β (TGF-β) pathway. Leucine-rich alpha-2-glycoprotein 1 (LRG1), a novel modulator of the TGF-β pathway, has been implicated in the modulation of renal fibrosis by affecting the TGF-β/Smad3 signaling axis. However, the role of LRG1 in the transition from AKI to chronic kidney disease (CKD) remains unclear. This study aimed to investigate the functional role of LRG1 during the remodeling phase post-IRI. Unilateral IRI was induced in C57BL/6J wild-type (WT) mice and systemic LRG1 knockout (KO) mice. In C57BL/6J WT mice, renal LRG1 mRNA expression was significantly elevated on the ischemia/reperfusion side compared to the sham side over a 28-day period. In contrast, LRG1 KO mice demonstrated significantly reduced renal fibrosis compared to WT mice on postoperative day 28. Additionally, renal mRNA expression of TGF-β and associated pro-fibrotic genes was diminished in LRG1 KO mice compared to WT mice. Consequently, LRG1 KO mice exhibited attenuated IRI-induced chronic fibrosis. These findings indicate that LRG1 is involved in the pathogenesis of the transition from AKI to CKD and may be a potential therapeutic target.

    DOI: 10.1038/s41598-024-84798-y

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  • Combination of sacubitril/valsartan and blockade of the PI3K pathway enhanced kidney protection in a mouse model of cardiorenal syndrome. International journal

    Shunichiro Tsukamoto, Hiromichi Wakui, Tatsuki Uehara, Yuka Shiba, Kengo Azushima, Eriko Abe, Shohei Tanaka, Shinya Taguchi, Keigo Hirota, Shingo Urate, Toru Suzuki, Takayuki Yamada, Sho Kinguchi, Akio Yamashita, Kouichi Tamura

    European heart journal open   3 ( 6 )   oead098   2023.11

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    AIMS: Angiotensin receptor-neprilysin inhibitor (ARNI) is an established treatment for heart failure. However, whether ARNI has renoprotective effects beyond renin-angiotensin system inhibitors alone in cardiorenal syndrome (CRS) has not been fully elucidated. Here, we examined the effects of ARNI on the heart and kidneys of CRS model mice with overt albuminuria and identified the mechanisms underlying ARNI-induced kidney protection. METHODS AND RESULTS: C57BL6 mice were subjected to chronic angiotensin II infusion, nephrectomy, and salt loading (ANS); they developed CRS phenotypes and were divided into the vehicle treatment (ANS-vehicle), sacubitril/valsartan treatment (ANS-ARNI), and two different doses of valsartan treatment (ANS-VAL M, ANS-VAL H) groups. Four weeks after treatment, the hearts and kidneys of each group were evaluated. The ANS-vehicle group showed cardiac fibrosis, cardiac dysfunction, overt albuminuria, and kidney fibrosis. The ANS-ARNI group showed a reduction in cardiac fibrosis and cardiac dysfunction compared with the valsartan treatment groups. However, regarding the renoprotective effects characterized by albuminuria and fibrosis, ARNI was less effective than valsartan. Kidney transcriptomic analysis showed that the ANS-ARNI group exhibited a significant enhancement in the phosphoinositide 3-kinase (PI3K)-AKT signalling pathway compared with the ANS-VAL M group. Adding PI3K inhibitor treatment to ARNI ameliorated kidney injury to levels comparable with those of ANS-VAL M while preserving the superior cardioprotective effect of ARNI. CONCLUSION: PI3K pathway activation has been identified as a key mechanism affecting remnant kidney injury under ARNI treatment in CRS pathology, and blockading the PI3K pathway with simultaneous ARNI treatment is a potential therapeutic strategy for treating CRS with overt albuminuria.

    DOI: 10.1093/ehjopen/oead098

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  • Effects of a High-Protein Diet on Kidney Injury under Conditions of Non-CKD or CKD in Mice. International journal

    Shohei Tanaka, Hiromichi Wakui, Kengo Azushima, Shunichiro Tsukamoto, Takahiro Yamaji, Shingo Urate, Toru Suzuki, Eriko Abe, Shinya Taguchi, Takayuki Yamada, Ryu Kobayashi, Tomohiko Kanaoka, Daisuke Kamimura, Sho Kinguchi, Masahito Takiguchi, Kengo Funakoshi, Akio Yamashita, Tomoaki Ishigami, Kouichi Tamura

    International journal of molecular sciences   24 ( 9 )   2023.4

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    Considering the prevalence of obesity and global aging, the consumption of a high-protein diet (HPD) may be advantageous. However, an HPD aggravates kidney dysfunction in patients with chronic kidney disease (CKD). Moreover, the effects of an HPD on kidney function in healthy individuals are controversial. In this study, we employed a remnant kidney mouse model as a CKD model and aimed to evaluate the effects of an HPD on kidney injury under conditions of non-CKD and CKD. Mice were divided into four groups: a sham surgery (sham) + normal diet (ND) group, a sham + HPD group, a 5/6 nephrectomy (Nx) + ND group and a 5/6 Nx + HPD group. Blood pressure, kidney function and kidney tissue injury were compared after 12 weeks of diet loading among the four groups. The 5/6 Nx groups displayed blood pressure elevation, kidney function decline, glomerular injury and tubular injury compared with the sham groups. Furthermore, an HPD exacerbated glomerular injury only in the 5/6 Nx group; however, an HPD did not cause kidney injury in the sham group. Clinical application of these results suggests that patients with CKD should follow a protein-restricted diet to prevent the exacerbation of kidney injury, while healthy individuals can maintain an HPD without worrying about the adverse effects.

    DOI: 10.3390/ijms24097778

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  • Cardiovascular and kidney outcomes of combination therapy with sodium-glucose cotransporter-2 inhibitors and mineralocorticoid receptor antagonists in patients with type 2 diabetes and chronic kidney disease: A systematic review and network meta-analysis. International journal

    Shunichiro Tsukamoto, Ryutaro Morita, Takayuki Yamada, Shingo Urate, Kengo Azushima, Kazushi Uneda, Ryu Kobayashi, Tomohiko Kanaoka, Hiromichi Wakui, Kouichi Tamura

    Diabetes research and clinical practice   194   110161 - 110161   2022.11

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    AIMS: Both sodium-glucose cotransporter-2 (SGLT-2) inhibitors and mineralocorticoid receptor antagonists (MRAs) have been shown to reduce cardiovascular (CV) event in patients with type 2 diabetes (T2D) and chronic kidney disease (CKD). However, little evidence pertains to the benefits of their combined use. METHODS: We systematically searched the PubMed, MEDLINE, EMBASE, and Cochrane Library databases through July 2022. We selected randomized controlled trials comparing SGLT-2 inhibitors, MRAs, or SGLT-2 inhibitor + MRA combination therapy, with placebo in patients with T2D and CKD. We performed a network meta-analysis to indirectly compare the treatments. The primary outcome was a composite of CV events. RESULTS: Eight studies were selected with 36,186 patients. The primary outcome was significantly improved in the combination therapy group compared with the other groups (RR [95% CI]; vs SGLT-2 inhibitors, 0.76 [0.60; 0.96]; vs MRAs, 0.66 [0.53; 0.82]; vs placebo, 0.58 [0.47; 0.73]). Additionally, the combination therapy was associated with a considerable reduction in the risk of hyperkalemia (RR vs MRA, 0.43 [0.23; 0.79]). CONCLUSION: Combination of SGLT-2 inhibitors and MRAs potentially reduced CV events compared with SGLT-2 inhibitors or MRAs alone. This combination may be a candidate treatment strategy for patients with T2D and CKD.

    DOI: 10.1016/j.diabres.2022.110161

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  • Angiotensin II type-1 receptor-associated protein interacts with transferrin receptor-1 and promotes its internalization. Reviewed International journal

    Eriko Abe, Akio Yamashita, Keigo Hirota, Takahiro Yamaji, Kengo Azushima, Shingo Urate, Toru Suzuki, Shohei Tanaka, Shinya Taguchi, Shunichiro Tsukamoto, Tatsuki Uehara, Hiromichi Wakui, Kouichi Tamura, Hidehisa Takahashi

    Scientific reports   12 ( 1 )   17376 - 17376   2022.10

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    Kidney fibrosis is a common pathway that leads to chronic kidney disease. Angiotensin II type-1 receptor (AT1R)-associated protein (ATRAP) was originally identified as an AT1R-binding protein. Previously, we reported that systemic knockout of ATRAP exacerbates kidney fibrosis in aged mice. Although these effects of ATRAP appeared to be AT1R-independent actions, the molecular mechanism remains poorly understood. To elucidate the molecular mechanism of ATRAP independent of AT1R, we explored novel ATRAP-interacting proteins. Mass spectrometric analysis of the immunoprecipitants of a Flag-tagged ATRAP complex revealed 376 candidate proteins that potentially interact with ATRAP. Gene ontology analysis revealed that proteins related to vesicle trafficking, membrane transport, and many membrane proteins, including transferrin receptor 1 (TfR1), were enriched. Because TfR1 promotes cellular iron uptake and iron is a key factor involved in kidney fibrosis, we focused on TfR1 and confirmed that it interacts with ATRAP. In addition, our findings revealed that enhanced ATRAP expression decreased cell-surface TfR1 expression without altering the overall cellular TfR1 expression levels. Furthermore, enhanced ATRAP expression attenuated cellular iron levels. Together, our results highlight the role of ATRAP as a suppressor of TfR1 that functions by facilitating TfR1 internalization, which affects iron metabolism and oxidative stress signaling.

    DOI: 10.1038/s41598-022-22343-5

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  • SARS-CoV-2 spike protein antibody titers 6 months after SARS-CoV-2 mRNA vaccination among patients undergoing hemodialysis in Japan.

    Daisuke Kanai, Hiromichi Wakui, Tatsuya Haze, Kengo Azushima, Sho Kinguchi, Shunichiro Tsukamoto, Tomohiko Kanaoka, Shingo Urate, Yoshiyuki Toya, Nobuhito Hirawa, Hideaki Kato, Fumimasa Watanabe, Kanako Hanaoka, Masaaki Hanaoka, Hiroshi Mitsuhashi, Satoshi Yamaguchi, Toshimasa Ohnishi, Kouichi Tamura

    Clinical and experimental nephrology   26 ( 10 )   988 - 996   2022.6

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    BACKGROUND: Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) vaccination is shown to prevent severe illness and death in hemodialysis (HD) patients, but the immune response to vaccines is reduced in this population. This study compared SARS-CoV-2 spike protein antibody titers between HD patients and healthy controls in Japan for up to 6 months following vaccination. METHODS: A multi-institutional retrospective study at five clinics in Japan was conducted using 412 HD patients and 156 healthy controls who received two doses of the BNT162b2 (Pfizer-BioNTech) mRNA vaccine. Anti-SARS-CoV-2 spike protein S1 IgG antibody titers were measured at 1, 3, and 6 months after the second dose. The attenuation speed was calculated as slope (i.e., -β) using a linear mixed-effects model toward the log-transformed antibody titers. RESULTS: The HD group had significantly lower month 1 antibody titers (Ab-titer-1) than the controls, and these remained lower through month 6 (95% CI: 2617.1 (1296.7, 5240.8) vs. 7285.4 (4403.9, 11,000.0) AU/mL at Ab-titer-1, and 353.4 (178.4, 656.3) vs. 812.0 (498.3, 1342.7) AU/mL at Ab-titer-6 (p < 0.001, respectively)). Lower log Ab-titer-1 levels in the HD group were significantly associated with a lower log Ab-titer-6 (0.90 [0.83, 0.97], p < 0.001). The -β values in the HD patients and healthy controls were -4.7 ± 1.1 and -4.7 ± 1.4 (year-1), respectively. CONCLUSION: SARS-CoV-2 spike protein antibody titers were significantly lower in HD patients than in healthy controls at 1 (peak) and 6 months after the second vaccination. Low peak antibody titers contributed to low 6-month antibody titers.

    DOI: 10.1007/s10157-022-02243-8

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  • Comparative Efficacy of Pharmacological Treatments for Adults With Autosomal Dominant Polycystic Kidney Disease: A Systematic Review and Network Meta-Analysis of Randomized Controlled Trials. International journal

    Shunichiro Tsukamoto, Shingo Urate, Takayuki Yamada, Kengo Azushima, Takahiro Yamaji, Sho Kinguchi, Kazushi Uneda, Tomohiko Kanaoka, Hiromichi Wakui, Kouichi Tamura

    Frontiers in pharmacology   13   885457 - 885457   2022

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    Background: Tolvaptan is the gold standard treatment for autosomal dominant polycystic kidney disease (ADPKD), while several other drugs have the potential to inhibit the progression of ADPKD. However, individual clinical trials may not show sufficient differences in clinical efficacy due to small sample sizes. Furthermore, the differences in therapeutic efficacy among drugs are unclear. Herein, we investigated the effect of the ADPKD treatments. Methods: We systematically searched PubMed, Medline, EMBASE, and the Cochrane Library through January 2022 to identify randomized controlled trials in ADPKD patients that compared the effects of treatments with placebo or conventional therapy. A network meta-analysis was performed to compare the treatments indirectly. The primary outcomes were changes in kidney function and the rate of total kidney volume (TKV) growth. Results: Sixteen studies were selected with a total of 4,391 patients. Tolvaptan significantly preserved kidney function and inhibited TKV growth compared to the placebo {standardized mean difference (SMD) [95% confidence interval (CI)]: 0.24 (0.16; 0.31) and MD: -2.70 (-3.10; -2.30), respectively}. Tyrosine kinase inhibitors and mammalian target of rapamycin (mTOR) inhibitors inhibited TKV growth compared to the placebo; somatostatin analogs significantly inhibited TKV growth compared to the placebo and tolvaptan [MD: -5.69 (-7.34; -4.03) and MD: -2.99 (-4.69; -1.29), respectively]. Metformin tended to preserve renal function, although it was not significant [SMD: 0.28 (-0.05; 0.61), p = 0.09]. Conclusion: The therapeutic effect of tolvaptan was reasonable as the gold standard for ADPKD treatment, while somatostatin analogs also showed notable efficacy in inhibiting TKV growth. Systematic Review Registration: https://www.crd.york.ac.uk/prospero/, identifier CRD42022300814.

    DOI: 10.3389/fphar.2022.885457

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  • Effects of tumor necrosis factor-α inhibition on kidney fibrosis and inflammation in a mouse model of aristolochic acid nephropathy. Reviewed International journal

    Shinya Taguchi, Kengo Azushima, Takahiro Yamaji, Shingo Urate, Toru Suzuki, Eriko Abe, Shohei Tanaka, Shunichiro Tsukamoto, Daisuke Kamimura, Sho Kinguchi, Akio Yamashita, Hiromichi Wakui, Kouichi Tamura

    Scientific reports   11 ( 1 )   23587 - 23587   2021.12

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    Tumor necrosis factor (TNF)-α is a potent mediator of inflammation and is involved in the pathophysiology of chronic kidney disease (CKD). However, the effects of TNF-α inhibition on the progression of kidney fibrosis have not been fully elucidated. We examined the effects of TNF-α inhibition by etanercept (ETN) on kidney inflammation and fibrosis in mice with aristolochic acid (AA) nephropathy as a model of kidney fibrosis. C57BL/6 J mice were administered AA for 4 weeks, followed by a 4-week remodeling period. The mice exhibited kidney fibrosis, functional decline, and albuminuria concomitant with increases in renal mRNA expression of inflammation- and fibrosis-related genes. The 8-week ETN treatment partially but significantly attenuated kidney fibrosis and ameliorated albuminuria without affecting kidney function. These findings were accompanied by significant suppression of interleukin (IL)-1β, IL-6, and collagen types I and III mRNA expression. Moreover, ETN tended to reduce the AA-induced increase in interstitial TUNEL-positive cells with a significant reduction in Bax mRNA expression. Renal phosphorylated p38 MAPK was significantly upregulated by AA but was normalized by ETN. These findings indicate a substantial role for the TNF-α pathway in the pathogenesis of kidney fibrosis and suggest that TNF-α inhibition could become an adjunct therapeutic strategy for CKD with fibrosis.

    DOI: 10.1038/s41598-021-02864-1

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  • Aristolochic Acid Induces Renal Fibrosis and Senescence in Mice. International journal

    Shingo Urate, Hiromichi Wakui, Kengo Azushima, Takahiro Yamaji, Toru Suzuki, Eriko Abe, Shohei Tanaka, Shinya Taguchi, Shunichiro Tsukamoto, Sho Kinguchi, Kazushi Uneda, Tomohiko Kanaoka, Yoshitoshi Atobe, Kengo Funakoshi, Akio Yamashita, Kouichi Tamura

    International journal of molecular sciences   22 ( 22 )   2021.11

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    The kidney is one of the most susceptible organs to age-related impairments. Generally, renal aging is accompanied by renal fibrosis, which is the final common pathway of chronic kidney diseases. Aristolochic acid (AA), a nephrotoxic agent, causes AA nephropathy (AAN), which is characterized by progressive renal fibrosis and functional decline. Although renal fibrosis is associated with renal aging, whether AA induces renal aging remains unclear. The aim of the present study is to investigate the potential use of AAN as a model of renal aging. Here, we examined senescence-related factors in AAN models by chronically administering AA to C57BL/6 mice. Compared with controls, the AA group demonstrated aging kidney phenotypes, such as renal atrophy, renal functional decline, and tubulointerstitial fibrosis. Additionally, AA promoted cellular senescence specifically in the kidneys, and increased renal p16 mRNA expression and senescence-associated β-galactosidase activity. Furthermore, AA-treated mice exhibited proximal tubular mitochondrial abnormalities, as well as reactive oxygen species accumulation. Klotho, an antiaging gene, was also significantly decreased in the kidneys of AA-treated mice. Collectively, the results of the present study indicate that AA alters senescence-related factors, and that renal fibrosis is closely related to renal aging.

    DOI: 10.3390/ijms222212432

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  • Tissue-specific expression of the SARS-CoV-2 receptor, angiotensin-converting enzyme 2, in mouse models of chronic kidney disease. Reviewed International journal

    Shunichiro Tsukamoto, Hiromichi Wakui, Kengo Azushima, Takahiro Yamaji, Shingo Urate, Toru Suzuki, Eriko Abe, Shohei Tanaka, Shinya Taguchi, Takayuki Yamada, Sho Kinguchi, Daisuke Kamimura, Akio Yamashita, Daisuke Sano, Masayuki Nakano, Tatsuo Hashimoto, Kouichi Tamura

    Scientific reports   11 ( 1 )   16843 - 16843   2021.8

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    Elevated angiotensin-converting enzyme 2 (ACE2) expression in organs that are potential targets of severe acute respiratory syndrome coronavirus 2 may increase the risk of coronavirus disease 2019 (COVID-19) infection. Previous reports show that ACE2 alter its tissue-specific expression patterns under various pathological conditions, including renal diseases. Here, we examined changes in pulmonary ACE2 expression in two mouse chronic kidney disease (CKD) models: adenine-induced (adenine mice) and aristolochic acid-induced (AA mice). We also investigated changes in pulmonary ACE2 expression due to renin-angiotensin system (RAS) blocker (olmesartan) treatment in these mice. Adenine mice showed significant renal functional decline and elevated blood pressure, compared with controls. AA mice also showed significant renal functional decline, compared with vehicles; blood pressure did not differ between groups. Renal ACE2 expression was significantly reduced in adenine mice and AA mice; pulmonary expression was unaffected. Olmesartan attenuated urinary albumin excretion in adenine mice, but did not affect renal or pulmonary ACE2 expression levels. The results suggest that the risk of COVID-19 infection may not be elevated in patients with CKD because of their stable pulmonary ACE2 expression. Moreover, RAS blockers can be used safely in treatment of COVID-19 patients with CKD.

    DOI: 10.1038/s41598-021-96294-8

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  • Tissue xanthine oxidoreductase activity in a mouse model of aristolochic acid nephropathy. International journal

    Takeo Ishii, Tomohiro Kumagae, Hiromichi Wakui, Shingo Urate, Shohei Tanaka, Eriko Abe, Toru Suzuki, Takahiro Yamaji, Sho Kinguchi, Ryu Kobayashi, Kotaro Haruhara, Takashi Nakamura, Shuzo Kobayashi, Kouichi Tamura

    FEBS open bio   11 ( 2 )   507 - 518   2021.2

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    Xanthine oxidoreductase (XOR) is a critical enzyme in purine metabolism and uric acid production, and its levels are reported to increase during stress, thereby promoting organ damage. Herein, we investigated the activity of XOR in a mouse model of aristolochic acid I (AA)-induced nephropathy, a type of nephrotoxic chronic kidney disease (CKD). A persistent decrease in renal function was observed in mice up to 4 weeks after 4 weeks of AA (2.5 mg kg-1 ) administration. Renal histology revealed an increase in tubular interstitial fibrosis over time. Although AA administration did not change XOR activity in the plasma, heart, liver, or muscle, XOR activity was persistently increased in renal tissue. Our results suggest that the renal tissue-specific increase in XOR activity is involved in the progression of tubulo-interstitial disorders, specifically fibrosis.

    DOI: 10.1002/2211-5463.13083

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  • Cardiovascular and renal outcomes with SGLT-2 inhibitors versus GLP-1 receptor agonists in patients with type 2 diabetes mellitus and chronic kidney disease: a systematic review and network meta-analysis. International journal

    Takayuki Yamada, Mako Wakabayashi, Abhinav Bhalla, Nitin Chopra, Hirotaka Miyashita, Takahisa Mikami, Hiroki Ueyama, Tomohiro Fujisaki, Yusuke Saigusa, Takahiro Yamaji, Kengo Azushima, Shingo Urate, Toru Suzuki, Eriko Abe, Hiromichi Wakui, Kouichi Tamura

    Cardiovascular diabetology   20 ( 1 )   14 - 14   2021.1

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    BACKGROUND: Emerging evidence suggests that sodium-glucose cotransporter-2 (SGLT-2) inhibitors and glucagon-like peptide-1 receptor agonists (GLP-1 RAs) are associated with decreased risk of cardiovascular and renal events in type 2 diabetes mellitus (DM) patients. However, no study to date has compared the effect of SGLT-2 inhibitors with that of GLP-1 RAs in type 2 DM patients with chronic kidney disease (CKD). We herein investigated the benefits of SGLT-2 inhibitors and GLP-1 RAs in CKD patients. METHODS: We performed a systematic literature search through November 2020. We selected randomized control trials that compared the risk of major adverse cardiovascular events (MACE) and a composite of renal outcomes. We performed a network meta-analysis to compare SGLT-2 inhibitors with GLP-1 RAs indirectly. Risk ratios (RRs) with corresponding 95% confidence intervals (CI) were synthesized. RESULTS: Thirteen studies were selected with a total of 32,949 patients. SGLT-2 inhibitors led to a risk reduction in MACE and renal events (RR [95% CI]; 0.85 [0.75-0.96] and 0.68 [0.59-0.78], respectively). However, GLP-1 RAs did not reduce the risk of cardiovascular or renal adverse events (RR 0.91 [0.80-1.04] and 0.86 [0.72-1.03], respectively). Compared to GLP-1 RAs, SGLT-2 inhibitors did not demonstrate a significant difference in MACE (RR 0.94 [0.78-1.12]), while SGLT-2 inhibitors were associated with a lower risk of renal events compared to GLP-1 RAs (RR 0.79 [0.63-0.99]). A sensitivity analysis revealed that GLP-1 analogues significantly decreased MACE when compared to placebo treatment (RR 0.81 [0.69-0.95]), while exendin-4 analogues did not (RR 1.03 [0.88-1.20]). CONCLUSIONS: In patients with type 2 DM and CKD, SGLT-2 inhibitors were associated with a decreased risk of cardiovascular and renal events, but GLP-1 RAs were not. SGLT-2 inhibitors significantly decreased the risk of renal events compared to GLP-1 RAs. Among GLP-1 RAs, GLP-1 analogues showed a positive impact on cardiovascular and renal outcomes, while exendin-4 analogues did not.

    DOI: 10.1186/s12933-020-01197-z

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  • Effect of renin-angiotensin system blockers on contrast-induced acute kidney injury in patients with normal or mild-to-moderate reduced kidney function undergoing coronary angiography: A systematic review and meta-analysis. International journal

    Takayuki Yamada, Tomohiro Fujisaki, Nitin Chopra, Takahiro Yamaji, Kengo Azushima, Ryu Kobayashi, Sho Kinguchi, Shingo Urate, Toru Suzuki, Eriko Abe, Hiromichi Wakui, Kouichi Tamura, Daniel Steinberg

    Clinical nephrology   94 ( 5 )   227 - 236   2020.11

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    INTRODUCTION: Contrast-induced acute kidney injury (CI-AKI) is a major complication after coronary angiography (CAG) or percutaneous coronary intervention (PCI) and is associated with increased morbidity and mortality. It remains controversial whether renin-angiotensin system (RAS) blockers increase or decrease CI-AKI. In this meta-analysis, we investigated the association between RAS blockers and CI-AKI in patients with normal kidney function or mild-to-moderate chronic kidney disease (CKD). MATERIALS AND METHODS: We performed a systematic search of PubMed, EMBASE, clinicaltrials.gov, and the Cochrane Library up to December 2019 for studies that assessed the association between RAS blockers and CI-AKI events after CAG/PCI. The primary outcome was the development of CI-AKI. Odds ratios (ORs) with corresponding 95% confidence interval (CI) were synthesized. RESULTS: Five randomized controlled trials (RCTs) and five observational studies were included, accounting for a total of 7,420 patients. Unstratified, RAS blocker administration was significantly associated with an increased risk of CI-AKI (pooled OR = 1.63, 95% CI 1.19 - 2.25, p = 0.003). However, the effect was not observed in RCTs (pooled OR = 1.22, 95% CI 0.54 - 2.74, p = 0.63). Sensitivity analysis in observational studies showed significant association (pooled OR = 1.77, 95% CI 1.22 - 2.55, p = 0.003) with high heterogeneity and evidence of publication bias. CONCLUSION: In patients with relatively-preserved renal function, the association of RAS blockers with an increased risk of CI-AKI after contrast media exposure was inconclusive, as sensitivity analysis showed conflicting results and bias. Although this study did not demonstrate significant evidence, it indicated that clinicians need to be vigilant in assessing the potential risk for RAS blockers to cause CI-AKI in low-risk patients.

    DOI: 10.5414/CN110171

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  • Systematic Review of the Association Between Worsening Renal Function and Mortality in Patients With Acute Decompensated Heart Failure. International journal

    Takayuki Yamada, Hiroki Ueyama, Nitin Chopra, Takahiro Yamaji, Kengo Azushima, Ryu Kobayashi, Sho Kinguchi, Shingo Urate, Toru Suzuki, Eriko Abe, Yusuke Saigusa, Hiromichi Wakui, Paulina Partridge, Alfred Burger, Claudio A Bravo, Maria A Rodriguez, Juan Ivey-Miranda, Kouichi Tamura, Jeffery Testani, Steven Coca

    Kidney international reports   5 ( 9 )   1486 - 1494   2020.9

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    Introduction: Outcomes in acute decompensated heart failure (ADHF) have remained poor. Worsening renal function (WRF) is common among patients with ADHF. However, the impact of WRF on the prognosis is controversial. We hypothesized that in patients with ADHF, the achievement of concomitant decongestion would diminish the signal for harm associated with WRF. Methods: We performed a systematic search of PubMed, EMBASE, and the Cochrane Library up to December 2019 for studies that assessed signs of decongestion in patients with WRF during ADHF admission. The primary outcome was all-cause mortality and heart transplantation. Results: Thirteen studies were selected with a pooled population of 8138 patients. During the follow-up period of 60-450 days, 19.2% of patients died. Unstratified, patients with WRF versus no WRF had a higher risk for mortality (odds ratio [OR], 1.71 [95% confidence interval {CI}, 1.45-2.01]; P < 0.0001). However, patients who achieved decongestion had a similar prognosis (OR, 1.15 [95% CI, 0.89-1.49]; P = 0.30). Moreover, patients with WRF who achieved decongestion had a better prognosis compared with those without WRF or decongestion (OR, 0.63 [95% CI, 0.46-0.86]; P = 0.004). This tendency persisted for the sensitivity analyses. Conclusions: Decongestion is a powerful effect modifier that attenuates harmful associations of WRF with mortality. Future studies should not assess WRF as an endpoint without concomitant assessment of achieved volume status.

    DOI: 10.1016/j.ekir.2020.06.031

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  • Effects of Rikkunshito treatment on renal fibrosis/inflammation and body weight reduction in a unilateral ureteral obstruction model in mice. Reviewed International journal

    Hiromichi Wakui, Takahiro Yamaji, Kengo Azushima, Kazushi Uneda, Kotaro Haruhara, Akiko Nakamura, Kohji Ohki, Sho Kinguchi, Ryu Kobayashi, Shingo Urate, Toru Suzuki, Daisuke Kamimura, Shintaro Minegishi, Tomoaki Ishigami, Tomohiko Kanaoka, Kohei Matsuo, Tomoyuki Miyazaki, Tetsuya Fujikawa, Akio Yamashita, Kouichi Tamura

    Scientific reports   10 ( 1 )   1782 - 1782   2020.2

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    Chronic kidney disease (CKD) progresses to end-stage renal failure via renal tubulointerstitial fibrosis. Malnutrition, inflammation, and arteriosclerosis interact to exacerbate the poor prognosis of CKD, and their effective management is thus essential. The traditional Japanese medicine Rikkunshito (RKT) exerts appetite-stimulating effects via ghrelin, which attenuates inflammation and fibrosis. We evaluated the therapeutic effect of RKT in unilateral ureter obstruction (UUO)-induced renal fibrosis/inflammation and body weight loss in mice. UUO and sham-operated mice were fed a standard diet or diet containing 3.0% RKT. Renal fibrosis was investigated by histopathology and macrophage infiltration was determined by immunohistochemistry. Expression levels of genes associated with fibrosis, inflammation, ghrelin, and mitochondrial function were determined by quantitative reverse transcription-polymerase chain reaction and western blot analyses. RKT treatment partially prevented UUO-induced weight loss but failed to attenuate renal fibrosis and inflammation. Renal expression of sirtuin 1, a ghrelin-downstream signalling molecule, and gene expression of peroxisome proliferator-activated receptor-γ coactivator 1α and Bcl-2/adenovirus E1B interacting protein 3 were unaffected by RKT. These results indicate that RKT inhibits weight loss but does not improve renal fibrosis or inflammation in a rapidly progressive renal fibrosis mouse model. RKT may have a protective effect on weight loss associated with CKD.

    DOI: 10.1038/s41598-020-58214-0

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  • Angiotensin II type 1 receptor-associated protein deficiency attenuates sirtuin1 expression in an immortalised human renal proximal tubule cell line. Reviewed International journal

    Takahiro Yamaji, Akio Yamashita, Hiromichi Wakui, Kengo Azushima, Kazushi Uneda, Yumiko Fujikawa, Sona Haku, Ryu Kobayashi, Kohji Ohki, Kotaro Haruhara, Sho Kinguchi, Takeo Ishii, Takayuki Yamada, Shingo Urate, Toru Suzuki, Eriko Abe, Shohei Tanaka, Daisuke Kamimura, Tomoaki Ishigami, Yoshiyuki Toya, Hidehisa Takahashi, Kouichi Tamura

    Scientific reports   9 ( 1 )   16550 - 16550   2019.11

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    The proximal tubule is a particularly important site for ageing-related kidney damage. Sirtuin 1 (SIRT1), an NAD+ (nicotinamide adenine dinucleotide)-dependent deacetylase in the proximal tubule, may be involved in renal injury associated with ageing. However, the mechanisms of SIRT1 regulation remain to be elucidated. We recently reported that angiotensin II type 1 receptor (AT1R)-associated protein (ATRAP)-deficient mice displayed age-associated renal function decline and tubulointerstitial fibrosis. Our data showed that SIRT1 protein expression was reduced in ATRAP-deficient mice, although the relationship between ATRAP deficiency and age-associated renal fibrosis is still not fully understood. It is, therefore, necessary to investigate how ATRAP affects SIRT1 protein expression to resolve ageing-associated kidney dysfunction. Here, since ageing studies are inherently lengthy, we used an ex vivo model of the proximal tubule to determine the role of ATRAP in SIRT1 protein expression. We first generated a clonal immortalised human renal proximal tubule epithelial cell line (ciRPTEC) expressing AT1R and ATRAP. Using this cell line, we demonstrated that ATRAP knockdown reduced SIRT1 protein expression in the ciRPTEC but did not alter SIRT1 mRNA expression. Thus, ATRAP likely mediates SIRT1 protein abundance in ciRPTEC.

    DOI: 10.1038/s41598-019-52566-y

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Awards

  • 第30回日本腹膜透析医学会学術集会 優秀演題賞

    2024.11   日本腹膜透析医学会  

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  • 第699回関東地方会 指導医賞

    2024.10   日本内科学会  

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Research Projects

  • ARNIを足掛かりとした心腎連関症候群の分子病態機序の解明および新規治療法の開発

    Grant number:23K14741  2023.4 - 2026.3

    日本学術振興会  科学研究費助成事業  若手研究

    浦手 進吾

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    Grant amount:\4680000 ( Direct Cost: \3600000 、 Indirect Cost:\1080000 )

    近年、様々な病態形成に、複数の臓器間ネットワークの関与を示唆する知見が集積しつつある。心不全治療薬であるアンジオテンシン受容体-ネプリライシン阻害薬(通称、ARNI)は、心腎連関症候群における臓器保護効果を有する事が推定されているが、その機序の詳細は不明である。本研究では、複数の心腎連関モデル動物に対してARNIを投与し、その効果を、心臓・腎臓における網羅的解析を交えて検証し、心腎連関症候群の病態進展機序およびARNIによる治療メカニズムを分子レベルで明らかにする。アンジオテンシンⅡ投与 (A)と片腎摘出 (N)、食塩水負荷 (S)を行ったANSマウスを作製し、ARNIとARB(バルサルタン)による治療効果を比較検討した。ARNIとARBはどちらもANSマウスの血圧上昇を有意に抑制した。ARNIはさらにANSマウスの心不全(左室収縮力の低下)や心線維化をARBよりも改善させた。一方、腎臓については、ARNIよりもARBの方が、ANSマウスのアルブミン尿抑制や腎線維化・糸球体肥大の抑制効果において優れていた。そこで、さらに腎臓を詳細に解析したところ、ARNIによる治療ではANSマウスで亢進していたホスファチジルイノシトール3-キナーゼ(PI3K)-Aktシグナリングパスウェイの抑制が、ARBと比べて不十分であることがわかった。このPI3K-Aktパスウェイを阻害薬をARNI治療に併用することで、ARBと同程度までARNIの腎保護効果が発揮された。

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  • 腎老化病態におけるATRAPと新規老化関連因子Glutaminaseの関連性の究明

    Grant number:22K20861  2022.8 - 2024.3

    日本学術振興会  科学研究費助成事業 研究活動スタート支援  研究活動スタート支援

    浦手 進吾

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    Grant amount:\2860000 ( Direct Cost: \2200000 、 Indirect Cost:\660000 )

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  • 加齢性腎障害におけるATRAPとグルタミン代謝の役割と関連性の解明

    横浜総合医学振興財団  わかば研究助成 

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