Advances, challenges and future applications of liver organoids in experimental regenerative medicine.

IF 3.1 3区 医学 Q1 MEDICINE, GENERAL & INTERNAL Frontiers in Medicine Pub Date : 2025-01-24 eCollection Date: 2024-01-01 DOI:10.3389/fmed.2024.1521851
Da Gong, Jiaye Mo, Mei Zhai, Fulin Zhou, Guocai Wang, Shaohua Ma, Xiaoyong Dai, Xuesong Deng
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Abstract

The liver is a vital organ responsible for numerous metabolic processes in the human body, including the metabolism of drugs and nutrients. After liver damage, the organ can rapidly return to its original size if the causative factor is promptly eliminated. However, when the harmful stimulus persists, the liver's regenerative capacity becomes compromised. Substantial theoretical feasibility has been demonstrated at the levels of gene expression, molecular interactions, and intercellular dynamics, complemented by numerous successful animal studies. However, a robust model and carrier that closely resemble human physiology are still lacking for translating these theories into practice. The potential for liver regeneration has been a central focus of ongoing research. Over the past decade, the advent of organoid technology has provided improved models and materials for advancing research efforts. Liver organoid technology represents a novel in vitro culture system. After several years of refinement, human liver organoids can now accurately replicate the liver's morphological structure, nutrient and drug metabolism, gene expression, and secretory functions, providing a robust model for liver disease research. Regenerative medicine aims to replicate human organ or tissue functions to repair or replace damaged tissues, restore their structure or function, or stimulate the regeneration of tissues or organs within the body. Liver organoids possess the same structure and function as liver tissue, offering the potential to serve as a viable replacement for the liver, aligning with the goals of regenerative medicine. This review examines the role of liver organoids in regenerative medicine.

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肝类器官在实验再生医学中的进展、挑战和未来应用。
肝脏是负责人体许多代谢过程的重要器官,包括药物和营养物质的代谢。肝损伤后,如果及时消除致病因素,肝脏可以迅速恢复到原来的大小。然而,当有害刺激持续存在时,肝脏的再生能力就会受到损害。大量的理论可行性已经在基因表达、分子相互作用和细胞间动力学水平上得到了证明,并得到了大量成功的动物研究的补充。然而,将这些理论转化为实践,仍然缺乏一个与人体生理学非常相似的鲁棒模型和载体。肝脏再生的潜力一直是正在进行的研究的中心焦点。在过去的十年里,类器官技术的出现为推进研究工作提供了改进的模型和材料。肝类器官技术是一种新型的体外培养系统。经过几年的完善,人类肝脏类器官现在可以准确地复制肝脏的形态结构、营养和药物代谢、基因表达和分泌功能,为肝脏疾病的研究提供了一个强大的模型。再生医学旨在复制人体器官或组织功能,以修复或替换受损组织,恢复其结构或功能,或刺激体内组织或器官的再生。肝类器官具有与肝组织相同的结构和功能,提供了作为肝脏可行替代品的潜力,与再生医学的目标一致。本文就肝类器官在再生医学中的作用作一综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Medicine
Frontiers in Medicine Medicine-General Medicine
CiteScore
5.10
自引率
5.10%
发文量
3710
审稿时长
12 weeks
期刊介绍: Frontiers in Medicine publishes rigorously peer-reviewed research linking basic research to clinical practice and patient care, as well as translating scientific advances into new therapies and diagnostic tools. Led by an outstanding Editorial Board of international experts, this multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. In addition to papers that provide a link between basic research and clinical practice, a particular emphasis is given to studies that are directly relevant to patient care. In this spirit, the journal publishes the latest research results and medical knowledge that facilitate the translation of scientific advances into new therapies or diagnostic tools. The full listing of the Specialty Sections represented by Frontiers in Medicine is as listed below. As well as the established medical disciplines, Frontiers in Medicine is launching new sections that together will facilitate - the use of patient-reported outcomes under real world conditions - the exploitation of big data and the use of novel information and communication tools in the assessment of new medicines - the scientific bases for guidelines and decisions from regulatory authorities - access to medicinal products and medical devices worldwide - addressing the grand health challenges around the world
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