Investigating the attenuating effects of metformin-loaded selenium nanoparticles coupled with Myrtus communis L. flower extract on CaOx deposition in male Sprague Dawley rat kidneys via regulating MAPK signaling pathway

IF 3.5 3区 环境科学与生态学 Q3 CELL & TISSUE ENGINEERING Regenerative Therapy Pub Date : 2024-05-17 DOI:10.1016/j.reth.2024.04.006
Jian Kang , Yanqing Tong
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Abstract

Kidney stones are a foremost clinical concern in urology with CaOx crystals accounting for roughly 80% of these renal formations. This research endeavor seeks to ascertain the protective effects of Metformin-encapsulated selenium nanoparticles (M@Se NPs), combined with a 55% hydroethanolic flower extract from Myrtus communis L. (MCL) in countering the formation of kidney stones in Male Sprague Dawley rats. The particle's diameter was measured to be 39 nm and 13.8 nm from DLS and HR-TEM analysis. Rat groups administered with the MCL-M@Se NPs (1:1.5:1) exhibited reduced renal stone formation in urine and serum analysis compared to the negative control group. Histological evaluations of kidney samples using H&E, and MTS staining indicated a subdued presence of ECM deposition in contrast to other rat groups. Conclusively, the protective mechanism of MCL-M@Se NPs against CaOx stone damage can be confidently attributed to the obstruction of the MAPK signaling pathway.

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研究二甲双胍载硒纳米颗粒与桃金娘花提取物通过调节 MAPK 信号通路对雄性 Sprague Dawley 大鼠肾脏氧化钙沉积的抑制作用
肾结石是泌尿科临床关注的首要问题,其中氧化钙结晶约占肾结石的 80%。本研究旨在确定二甲双胍包裹的硒纳米粒子(M@Se NPs)与 55% 水乙醇提取物(Myrtus communis L. (MCL))结合使用对雄性 Sprague Dawley 大鼠肾结石形成的保护作用。通过 DLS 和 HR-TEM 分析测得的颗粒直径分别为 39 纳米和 13.8 纳米。与阴性对照组相比,使用 MCL-M@Se NPs(1:1.5:1)的大鼠组在尿液和血清分析中显示肾结石的形成有所减少。使用 H&E 和 MTS 染色法对肾脏样本进行的组织学评估表明,与其他大鼠组相比,ECM 沉积的程度较低。最终,MCL-M@Se NPs 对 CaOx 结石损伤的保护机制可以肯定地归因于 MAPK 信号通路的阻断。
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来源期刊
Regenerative Therapy
Regenerative Therapy Engineering-Biomedical Engineering
CiteScore
6.00
自引率
2.30%
发文量
106
审稿时长
49 days
期刊介绍: Regenerative Therapy is the official peer-reviewed online journal of the Japanese Society for Regenerative Medicine. Regenerative Therapy is a multidisciplinary journal that publishes original articles and reviews of basic research, clinical translation, industrial development, and regulatory issues focusing on stem cell biology, tissue engineering, and regenerative medicine.
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