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Park, Tae-Eun
Micro Tissue Engineering & Nanomedicine Lab.
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A high affinity kidney targeting by chitobionic acid-conjugated polysorbitol gene transporter alleviates unilateral ureteral obstruction in rats

Author(s)
Islam, Mohammad ArifulKim, SanghwaFirdous, JannatulLee, Ah-YoungHong, Seong-HoSeo, Min KyeongPark, Tae-EunYun, Cheol-HeuiChoi, Yun-JaieChae, ChanheeCho, Chong-SuCho, Myung-Haing
Issued Date
2016-09
DOI
10.1016/j.biomaterials.2016.06.013
URI
https://scholarworks.unist.ac.kr/handle/201301/22629
Fulltext
http://www.sciencedirect.com/science/article/pii/S0142961216302678?via%3Dihub
Citation
BIOMATERIALS, v.102, pp.43 - 57
Abstract
Aside from kidney transplantation a procedure which is exceedingly dependent on donor-match and availability leading to excessive costs there are currently no permanent treatments available which reverse kidney injury and failure. However, kidney-specific targeted gene therapy has outstanding potential to treat kidney-related dysfunction. Herein we report a novel kidney-specific targeted gene delivery system developed through the conjugation of chitobionic acid (CBA) to a polysorbitol gene transporter (PSGT) synthesized from sorbitol diacrylate and low molecular weight polyethylenimine (PEI) carrying hepatocyte growth factor (HGF) gene to alleviate unilateral ureteral obstruction (UUO) in rats. CBA-PSGT performed exceptionally well for targeted delivery of HGF to kidney tissues compared to its non-targeted counterparts (P < 0.001) after systemic tail-vein injection and significantly reduced the UUO symptoms, returning the UUO rats to a normal health status. The kidney-targeted CBA-PSGT-delivered HGF also strikingly reduced various pathologic and molecular markers in vivo such as the level of collagens (type I and II), blood urea nitrogen (BUN), creatinine, and the expressions of ICAM-1, TIMP-1 and alpha-S1VIA which play a critical role in obstructive kidney functions. Therefore, CBA-PSGT should be further investigated because of its potential to alleviate UUO and kidney-related diseases using high affinity kidney targeting.
Publisher
ELSEVIER SCI LTD
ISSN
0142-9612

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