医学部 乳腺外科
基本情報
主要な研究分野
3主要な論文
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Pediatric nephrology (Berlin, Germany) 41(6) 1721-1730 2026年6月BACKGROUND: Cyclosporine A (CsA) is an effective steroid-sparing agent for steroid-dependent nephrotic syndrome (SDNS); however, long-term use can cause chronic kidney injury (CsA nephropathy). We previously reported that alternatively activated macrophages (M2-type) are linked to interstitial fibrosis in progressive kidney disease. This study aimed to investigate the potential involvement of M2-type macrophages in CsA nephropathy in SDNS. METHODS: Thirty-three children with SDNS treated with CsA for more than 2 years were investigated. Fourteen age-matched SDNS children without CsA served as controls. Kidney fibrosis was assessed by Masson staining. Sections were immunostained for α-SMA, type I collagen, CD68, CD163, and CCL2. Urine levels of CCL2 were measured using a cytometric bead array kit. RESULTS: The CsA-treated group showed greater interstitial fibrosis (12.2 ± 7.3 vs.7.6 ± 2.1%, p < 0.001) and increased CD163+CD68+ macrophages (10.8 vs.7.9/HPF; p < 0.001). Multivariate analysis identified CD163⁺ infiltration (β = 0.632, p < 0.0001), cumulative prednisolone (PSL) dose during CsA therapy (β = 0.015, p = 0.0031), and cumulative PSL dose from onset to biopsy (β = - 0.005, p = 0.030) as independent predictors of fibrosis. CCN2 and CCL2 co-localized with CD163+ macrophages in CsA biopsies. Urinary CCL2/creatinine ratio was higher in the CsA group than controls at relapse (1012 ± 641.2 vs. 239.9 ± 226.9 pg/mg; p = 0.02) and at remission (202.0 ± 178.4 vs. 77.7 ± 127.3 pg/mg; p = 0.04). CONCLUSION: CD163+ M2-type macrophages may contribute to CsA-induced interstitial fibrosis. Steroid treatment during CsA treatment appears to augment CsA nephrotoxicity via pro-fibrotic pathways.
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Pediatric nephrology (Berlin, Germany) 38(6) 1831-1842 2022年11月10日BACKGROUND: The immunosuppressant mizoribine (Miz) can reduce progression of childhood IgA nephropathy (IgAN). This study examined whether Miz affects CD163+ M2-type macrophages which are associated with kidney fibrosis in childhood IgAN. METHODS: A retrospective cohort of 90 children with IgAN were divided into groups treated with prednisolone (PSL) alone (P group; n = 42) or PSL plus Miz (PM group; n = 48) for a 2-year period. Normal human monocyte-derived macrophages were stimulated with dexamethasone (Dex), or Dex plus Miz, and analyzed by DNA microarray. RESULTS: Clinical and histological findings at first biopsy were equivalent between patients entering the P and PM groups. Both treatments improved proteinuria and haematuria, and maintained normal kidney function over the 2-year course. The P group exhibited increased mesangial matrix expansion, increased glomerular segmental or global sclerosis, and increased interstitial fibrosis at 2-year biopsy; however, the PM group showed no progression of kidney fibrosis. These protective effects were associated with reduced numbers of glomerular and interstitial CD163+ macrophages in the PM versus P group. In cultured human macrophages, Dex induced upregulation of cytokines and growth factors, which was prevented by Miz. Miz also inhibited Dex-induced expression of CD300E, an activating receptor which can prevent monocyte apoptosis. CD300e expression by CD163+ macrophages was evident in the P group, which was reduced by Miz treatment. CONCLUSION: Miz halted the progression of kidney fibrosis in PSL-treated pediatric IgAN. This was associated with reduced CD163+ and CD163+CD300e+ macrophage populations, plus in vitro findings that Miz can suppress steroid-induced macrophage expression of pro-fibrotic molecules. A higher resolution version of the Graphical abstract is available as Supplementary information.
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Steroid treatment promotes an M2 anti-inflammatory macrophage phenotype in childhood lupus nephritisPediatric Nephrology 36(2) 349-359 2020年9月1日BACKGROUND: M1-type proinflammatory macrophages (MΦ) promote glomerular injury in lupus nephritis (LN). However, whether this phenotype is altered by steroid therapy is unclear. Therefore, we investigated the effect of steroid treatment on MΦ phenotype in LN. METHODS: Patients with LN (7-18 years old) were divided into 2 groups: those with no treatment (N) before biopsy (n = 17) and those who underwent steroid (S) treatment (3-73 days) before biopsy (n = 15). MΦ number and phenotype were assessed by immunofluorescence. In vitro studies used monocyte-derived MΦ from healthy volunteers. RESULTS: Age at biopsy, urine findings, and kidney function (eGFR) were comparable between the two groups. Biopsies in N group had higher levels of active lesions such as endocapillary hypercellularity, necrosis, and cellular crescent formation (p < 0.05). The total CD68+ MΦ infiltrate was comparable between N and S groups. However, N group had more M1 MΦ (CD68+ CD86+ cells) (p < 0.05) and fewer M2 MΦ (CD68+ CD163+ cells) (p < 0.05), giving a 6-fold increase in the M2/M1 ratio in S vs. N groups. Dexamethasone treatment of cultured MΦ induced upregulation of CD163 expression, increased production of anti-inflammatory (IL-10, IL-19) and profibrotic factors (FGF-22, PDGF), and upregulated the scavenger receptor, stabilin-1. Upregulation of stabilin-1 in CD163+ M2 MΦ was confirmed in biopsies from S group. CONCLUSIONS: Initial steroid treatment induces MΦ phenotypic change from proinflammatory M1 to anti-inflammatory or profibrotic M2 in LN with acute/active lesions. Although steroid treatment is effective for resolution of M1-medated injury, promotion of fibrotic lesions via M2 MΦ is a potential downside of steroid single therapy in LN.
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Clinical and Experimental Nephrology 23(9) 1154-1160 2019年9月BACKGROUND: Several immunosuppressants have been used to treat children with steroid-dependent nephrotic syndrome (SDNS). Mizoribine (MZR) is an immunosuppressant used to maintain remission in children with SDNS, although its effectiveness for treating SDNS remains controversial. Therefore, in this study, we assessed the clinical factors associated with children having SDNS who were successfully treated with MZR. METHODS: A total of 47 children with SDNS who underwent MZR treatment were retrospectively evaluated. Clinical features including pharmacokinetics after MZR administration were compared between MZR responders and non-responders. RESULTS: The comparison of the two groups revealed no significant differences in age, body weight (BW), daily dose of MZR per BW, serum concentration 2 h after administration (C2), peak serum concentration (Cmax), and area under the concentration curve 0-4 h after administration (AUC0-4). C2/(single dose/BW), Cmax/(single dose/BW), and AUC0-4/(single dose/BW) were significantly higher in the MZR responders than in the non-responders (all p < 0.01). Receiver operating characteristic analysis revealed that the cutoff values of C2 (single dose/kg), Cmax/(single dose/BW), and AUC0-4/(single dose/BW) were 0.55, 0.58, and 1.37, respectively. CONCLUSIONS: MZR is a useful immunosuppressant for treating frequent-relapse NS in children who are susceptible to the drug. The efficacy of MZR may be associated with not only serum concentrations defined by the dosage or absorption efficiency through MZR transporters, but also the susceptibility defined by the expression level and performance of MZR transporters on the target cells.
主要なMISC
38講演・口頭発表等
1所属学協会
1-
2014年4月 - 現在
共同研究・競争的資金等の研究課題
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日本学術振興会 科学研究費助成事業 2020年4月 - 2023年3月