Engineered adipose tissue platforms: recent breakthroughs and future perspectives

Heejeong Yoon, Tae-Eun Park
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Abstract

As overweight and obesity rates have increased worldwide, the prevalence of metabolic disorders has also grown. Due to the lack of physiologically relevant adipose tissue platforms, research in adipose tissue biology has relied on animal models, leading to false conclusions on pathophysiological mechanisms and therapeutic efficacy. Despite the urgent need for an adipose tissue model, it is still extremely difficult to cultivate mature adipocytes and recapitulate multi-cellular interactions in adipose tissue in vitro. For this reason, adipose tissue modeling requires new technologies that allow better culture conditions for adipocytes and contain a complex network of microenvironments. Herein, we discuss recent technologies, including 3-dimensional (3D) adipocyte spheroids, biomaterial-based 3D culture, 3D bioprinting, and microphysiological systems, which may offer new opportunities to discover drugs targeting adipose tissue.
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工程脂肪组织平台:最近的突破和未来的展望
随着世界范围内超重和肥胖率的增加,代谢紊乱的患病率也在上升。由于缺乏与脂肪组织生理学相关的平台,脂肪组织生物学的研究一直依赖于动物模型,导致在病理生理机制和治疗效果上得出错误的结论。尽管迫切需要脂肪组织模型,但在体外培养成熟脂肪细胞和再现脂肪组织中的多细胞相互作用仍然非常困难。因此,脂肪组织建模需要新的技术,为脂肪细胞提供更好的培养条件,并包含一个复杂的微环境网络。在此,我们讨论了包括三维(3D)脂肪细胞球体、基于生物材料的3D培养、3D生物打印和微生理系统在内的最新技术,这些技术可能为发现针对脂肪组织的药物提供新的机会。
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