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Renoprotective effects of synthetic bilirubin nanomedicine ㅁagainst ischemia-reperfusion injury after kidney transplantation

Authors
 Yan, Ji-Jing  ;  Piao, Honglin  ;  Jang, Joon Young  ;  Kim, Bomin  ;  Lee, Hwan  ;  Seong, Minhee  ;  Han, Kyu-Hyun  ;  Choi, Minho  ;  Jo, Seunghyun  ;  Koh, Hee Byung  ;  Kim, Beom Seok  ;  Chang, Yoon-Seok  ;  Jon, Sangyong  ;  Kim, Myung L.  ;  Yang, Jaeseok 
Citation
 CLINICAL SCIENCE, Vol.140(5) : 845-857, 2026-05 
Journal Title
CLINICAL SCIENCE
ISSN
 0143-5221 
Issue Date
2026-05
MeSH
Acute Kidney Injury* / metabolism ; Acute Kidney Injury* / pathology ; Acute Kidney Injury* / prevention & control ; Animals ; Apoptosis / drug effects ; Bilirubin* / administration & dosage ; Bilirubin* / analogs & derivatives ; Bilirubin* / pharmacology ; Cytokines / metabolism ; Disease Models, Animal ; Fibrosis ; Kidney Transplantation* / adverse effects ; Kidney* / drug effects ; Kidney* / metabolism ; Kidney* / pathology ; Male ; Mice ; Mice, Inbred C57BL ; Nanomedicine / methods ; Nanoparticles* ; Oxidative Stress / drug effects ; Regeneration / drug effects ; Reperfusion Injury* / etiology ; Reperfusion Injury* / metabolism ; Reperfusion Injury* / pathology ; Reperfusion Injury* / prevention & control
Abstract
Renal ischemia-reperfusion injury (IRI) poses a significant challenge in kidney transplantation, contributing to acute kidney injury and chronic kidney fibrosis. In the present study, we investigated renoprotective effects of BX-001N, a synthetic polyethylene glycol-conjugated bilirubin nanoparticle, against renal IRI after kidney transplantation. A murine syngeneic kidney transplantation model was used to study renal IRI. BX-001N was administered intravenously at 0 and 2.5 h post-transplantation. Renal functions (creatinine and BUN), histopathological injury, oxidative stress, renal regeneration, and fibrotic changes were assessed at post-transplant day (POD) 1 and 7. BX-001N significantly improved renal function and attenuated renal tissue injury and tubular cell apoptosis at POD 1, following cold IRI. It markedly reduced neutrophil infiltration and suppressed the expression of pro-inflammatory cytokines (TNF-alpha and IFN-gamma) and chemokines (MCP-1 and CXCL2). Antioxidant responses were enhanced, as evidenced by increased expression of heme oxygenase-1 and decreased accumulation of nitrotyrosine. Furthermore, at POD 7, BX-001N promoted renal regeneration with increased Ki-67 and vascular endothelial growth factor expression. It also inhibited renal fibrosis and suppressed epithelial-mesenchymal transition with decreased expression of alpha-smooth muscle actin, while preserving E-cadherin expression. In conclusion, BX-001N effectively mitigates IRI-induced renal injury by reducing oxidative stress, inflammation, and fibrosis, indicating its potential therapeutic value in kidney transplantation.
Full Text
https://portlandpress.com/clinsci/article/140/5/845/237423/Renoprotective-effects-of-synthetic-bilirubin
DOI
10.1042/CS20250982
Appears in Collections:
1. College of Medicine (의과대학) > Dept. of Internal Medicine (내과학교실) > 1. Journal Papers
1. College of Medicine (의과대학) > Research Institute (부설연구소) > 1. Journal Papers
Yonsei Authors
Koh, Hee Byung(고희병)
Kim, Beom Seok(김범석) ORCID logo https://orcid.org/0000-0002-5732-2583
Yang, Jaeseok(양재석)
Yan, Ji-Jing(엄희정)
Han, Kyu-Hyun(한규현)
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/212565
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