Study of tree shrew biology and models: A booming and prosperous field for biomedical research.

IF 4 1区 生物学 Q1 ZOOLOGY
Yong-Gang Yao, Li Lu, Rong-Jun Ni, Rui Bi, Ceshi Chen, Jia-Qi Chen, Eberhard Fuchs, Marina Gorbatyuk, Hao Lei, Hongli Li, Chunyu Liu, Long-Bao Lv, Kyoko Tsukiyama-Kohara, Michinori Kohara, Claudia Perez-Cruz, Gregor Rainer, Bao-Ci Shan, Fang Shen, An-Zhou Tang, Jing Wang, Wei Xia, Xueshan Xia, Ling Xu, Dandan Yu, Feng Zhang, Ping Zheng, Yong-Tang Zheng, Jumin Zhou, Jiang-Ning Zhou
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Abstract

The tree shrew ( Tupaia belangeri) has long been proposed as a suitable alternative to non-human primates (NHPs) in biomedical and laboratory research due to its close evolutionary relationship with primates. In recent years, significant advances have facilitated tree shrew studies, including the determination of the tree shrew genome, genetic manipulation using spermatogonial stem cells, viral vector-mediated gene delivery, and mapping of the tree shrew brain atlas. However, the limited availability of tree shrews globally remains a substantial challenge in the field. Additionally, determining the key questions best answered using tree shrews constitutes another difficulty. Tree shrew models have historically been used to study hepatitis B virus (HBV) and hepatitis C virus (HCV) infection, myopia, and psychosocial stress-induced depression, with more recent studies focusing on developing animal models for infectious and neurodegenerative diseases. Despite these efforts, the impact of tree shrew models has not yet matched that of rodent or NHP models in biomedical research. This review summarizes the prominent advancements in tree shrew research and reflects on the key biological questions addressed using this model. We emphasize that intensive dedication and robust international collaboration are essential for achieving breakthroughs in tree shrew studies. The use of tree shrews as a unique resource is expected to gain considerable attention with the application of advanced techniques and the development of viable animal models, meeting the increasing demands of life science and biomedical research.

树鼩生物学和模型研究:一个蓬勃发展、欣欣向荣的生物医学研究领域。
树鼩(Tupaia belangeri)与灵长类动物在进化上关系密切,因此长期以来一直被建议作为非人灵长类动物(NHPs)的合适替代品,用于生物医学和实验室研究。近年来,树鼩研究取得了重大进展,包括确定树鼩基因组、利用精原干细胞进行遗传操作、病毒载体介导的基因传递以及绘制树鼩脑图谱。然而,全球树鼩的数量有限,这仍然是该领域面临的巨大挑战。此外,确定最适合用树鼩回答的关键问题也是另一个难题。树鼩模型历来被用于研究乙型肝炎病毒(HBV)和丙型肝炎病毒(HCV)感染、近视和社会心理压力诱发的抑郁症,最近的研究则侧重于开发传染病和神经退行性疾病的动物模型。尽管做出了这些努力,但树鼩模型在生物医学研究中的影响力还无法与啮齿类动物或非人类动物模型相提并论。本综述总结了树鼩研究的突出进展,并反思了利用该模型解决的关键生物学问题。我们强调,要想在树鼩研究中取得突破性进展,密集的投入和强有力的国际合作是必不可少的。随着先进技术的应用和可行动物模型的开发,树鼩作为一种独特的资源有望得到广泛关注,从而满足生命科学和生物医学研究日益增长的需求。
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
Zoological Research
Zoological Research Medicine-General Medicine
CiteScore
7.60
自引率
10.20%
发文量
1937
审稿时长
8 weeks
期刊介绍: Established in 1980, Zoological Research (ZR) is a bimonthly publication produced by Kunming Institute of Zoology, the Chinese Academy of Sciences, and the China Zoological Society. It publishes peer-reviewed original research article/review/report/note/letter to the editor/editorial in English on Primates and Animal Models, Conservation and Utilization of Animal Resources, and Animal Diversity and Evolution.
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