体外3D肾脏模型的最新发展趋势。

IF 8.2 2区 医学 Q1 ENGINEERING, BIOMEDICAL
Gaddam Kiranmai, Shibu Chameettachal, Yeleswarapu Sriya, Sarah Duin, Anja Lode, Michael Gelinsky, Ashwini Rahul Akkineni, Falguni Pati
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引用次数: 0

摘要

肾脏对维持身体平衡至关重要,容易受到各种疾病的影响,这些疾病会破坏肾脏的功能。传统上,肾脏疾病的研究依赖于动物模型和简单的二维细胞培养,这并不能完全复制人体组织病理。为了解决这个问题,最近的进展集中在使用人类来源的细胞开发先进的3D仿生体外模型。这些模型具有特异性地模拟健康和病变肾脏组织,通过组织工程复制肾小球和肾小管结构等关键元素。通过密切模仿人体生理,它们为研究肾脏疾病、药物性肾毒性和评估新疗法提供了一个有前途的平台。然而,挑战包括优化可扩展性、可重复性和长期稳定性,以提高研究和临床应用的可靠性。这篇综述强调了3D仿生体外肾脏模型在推进生物医学研究和临床应用方面的变革潜力。通过专注于人类特异性细胞培养和组织工程技术,这些模型旨在克服传统动物模型和简单的2D细胞培养的局限性。本文详细讨论了目前正在开发的各种类型的仿生肾脏模型,它们的具体应用,以及用于构建它们的创新方法。它还解决了与这些模型相关的挑战和限制,因为它们在研究环境中的广泛采用和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent trends in the development ofin vitro3D kidney models.

The kidneys are vital for maintaining bodily homeostasis and are susceptible to various diseases that disrupt their function. Traditionally, research on kidney diseases has relied on animal models and simplistic two-dimensional cell cultures, which do not fully replicate human tissue pathology. To address this, recent advances focus on developing advanced 3D biomimeticin vitromodels using human-derived cells. These models mimic healthy and diseased kidney tissues with specificity, replicating key elements like glomerular and tubular structures through tissue engineering. By closely mimicking human physiology, they provide a promising platform for studying renal disorders, drug-induced nephrotoxicity, and evaluating new therapies. However, the challenges include optimizing scalability, reproducibility, and long-term stability to enhance reliability in research and clinical applications. This review highlights the transformative potential of 3D biomimeticin vitrokidney models in advancing biomedical research and clinical applications. By focusing on human-specific cell cultures and tissue engineering techniques, these models aim to overcome the limitations of conventional animal models and simplistic 2D cell cultures. The review discusses in detail the various types of biomimetic kidney models currently under development, their specific applications, and the innovative approaches used to construct them. It also addresses the challenges and limitations associated with these models for their widespread adoption and reliability in research settings.

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来源期刊
Biofabrication
Biofabrication ENGINEERING, BIOMEDICAL-MATERIALS SCIENCE, BIOMATERIALS
CiteScore
17.40
自引率
3.30%
发文量
118
审稿时长
2 months
期刊介绍: Biofabrication is dedicated to advancing cutting-edge research on the utilization of cells, proteins, biological materials, and biomaterials as fundamental components for the construction of biological systems and/or therapeutic products. Additionally, it proudly serves as the official journal of the International Society for Biofabrication (ISBF).
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