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内皮素-1在鸡胚模型中诱导的持续性缺血

Endothelin-1-Induced Persistent Ischemia in a Chicken Embryo Model.

作者信息

Kumari Neha, Prakash Ravi, Siddiqui Abu J, Waseem Arshi, Khan Mohsin A, Raza Syed S

机构信息

Laboratory for Stem Cell and Restorative Neurology, Department of Biotechnology, Era's Lucknow Medical College and Hospital, Era University, Lucknow, Uttar Pradesh, India.

Era's Lucknow Medical College and Hospital, Era University, Lucknow, Uttar Pradesh, India.

出版信息

Bio Protoc. 2024 Sep 5;14(17):e5060. doi: 10.21769/BioProtoc.5061.

Abstract

Current ischemic models strive to replicate ischemia-mediated injury. However, they face challenges such as inadequate reproducibility, difficulties in translating rodent findings to humans, and ethical, financial, and practical constraints that limit the accuracy of extensive research. This study introduces a novel approach to inducing persistent ischemia in 3-day-old chicken embryos using endothelin-1. The protocol targets the right vitelline arteries, validated with Doppler blood flow imaging and molecular biology experiments. This innovative approach facilitates the exploration of oxidative stress, inflammatory responses, cellular death, and potential drug screening suitability utilizing a 3-day-old chicken embryo. Key features • This model enables the evaluation and investigation of the pathology related to persistent ischemia • This model allows for the assessment of parameters like oxidative stress, inflammation, and cellular death • This model enables quantification of molecular changes at the nucleic acid and protein levels • This model allows for the efficient screening of drugs and their targets Graphical overview.

摘要

当前的缺血模型致力于复制缺血介导的损伤。然而,它们面临着诸如可重复性不足、将啮齿动物研究结果转化为人类研究结果的困难以及限制广泛研究准确性的伦理、财务和实际限制等挑战。本研究介绍了一种使用内皮素-1在3日龄鸡胚中诱导持续性缺血的新方法。该方案以右卵黄动脉为靶点,并通过多普勒血流成像和分子生物学实验进行了验证。这种创新方法有助于利用3日龄鸡胚探索氧化应激、炎症反应、细胞死亡以及潜在的药物筛选适用性。关键特性 • 该模型能够评估和研究与持续性缺血相关的病理学 • 该模型允许评估氧化应激、炎症和细胞死亡等参数 • 该模型能够在核酸和蛋白质水平上对分子变化进行定量 • 该模型允许高效筛选药物及其靶点 图形概述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2ab/11393046/3e82cdcb2aac/BioProtoc-14-17-5061-g001.jpg

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