Atomic force microscopy characterization of white and beige adipocyte differentiation.

IF 1.5 4区 生物学 Q4 CELL BIOLOGY In Vitro Cellular & Developmental Biology. Animal Pub Date : 2024-09-01 Epub Date: 2024-06-04 DOI:10.1007/s11626-024-00925-z
Alia Mallah, Katerina Stojkova, Ronald N Cohen, Nehal Abu-Lail, Eric M Brey, Maria A Gonzalez Porras
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Abstract

Adipose tissue plays an essential role in systemic metabolism with white adipose tissue (WAT) making up most of the tissue and being involved in the regulation of energy homeostasis, and brown and beige adipose tissue (BAT) exhibiting thermogenic activity. There is promise in the conversion of white adipocytes into beige ones as a therapeutic potential to control and enhance systemic metabolism, but it is difficult to maintain this transformation in vivo because we do not fully understand the mechanism of conversion. In this study, we applied atomic force microscopy (AFM) to characterize beige or white adipocytes during the process of differentiation for morphology, roughness, adhesion, and elasticity at different time points. As cells differentiated to white and beige adipocytes, they exhibited morphological changes as they lipid loaded, transitioning from flattened elongated cells to a rounded shape indicating adipogenesis. While there was an initial decrease in elasticity for both beige and white adipocytes, white adipocytes exhibited a higher elasticity than beige adipocytes at all time points. Beige and white adipogenesis exhibited a decrease in adhesion energy compared to preadipocytes, yet at day 12, white adipocytes had a significant increase in adhesion energy compared to beige adipocytes. This work shows significant differences in the mechanical properties of white vs. beige adipocytes during differentiation. Results from this study contribute to a better understanding of the differentiation of adipocytes which are vital to the therapeutic induction, engineered models, and maintenance of beige adipocytes as a potential approach for enhancing systemic metabolism.

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原子力显微镜表征白色和米色脂肪细胞的分化。
脂肪组织在全身新陈代谢中起着至关重要的作用,其中白色脂肪组织(WAT)占大部分,参与能量平衡的调节,而棕色和米色脂肪组织(BAT)则表现出致热活性。将白色脂肪细胞转化为米色脂肪细胞有望成为控制和增强系统代谢的一种治疗潜力,但由于我们还不完全了解这种转化的机制,因此很难在体内维持这种转化。在这项研究中,我们应用原子力显微镜(AFM)对米色或白色脂肪细胞在分化过程中不同时间点的形态、粗糙度、粘附性和弹性进行了表征。当细胞分化成白色和米色脂肪细胞时,它们的形态会随着脂质的负载而发生变化,从扁平拉长的细胞过渡到圆形,这表明脂肪正在生成。虽然米色和白色脂肪细胞的弹性最初都有所下降,但白色脂肪细胞在所有时间点的弹性都高于米色脂肪细胞。与前脂肪细胞相比,米色和白色脂肪细胞的粘附能有所下降,但在第 12 天,白色脂肪细胞的粘附能明显高于米色脂肪细胞。这项研究表明,在分化过程中,白色与米色脂肪细胞的机械特性存在明显差异。这项研究的结果有助于更好地了解脂肪细胞的分化过程,这对于米色脂肪细胞的治疗诱导、工程模型和维护至关重要,是提高全身新陈代谢的一种潜在方法。
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来源期刊
CiteScore
3.70
自引率
4.80%
发文量
96
审稿时长
3 months
期刊介绍: In Vitro Cellular & Developmental Biology - Animal is a journal of the Society for In Vitro Biology (SIVB). Original manuscripts reporting results of research in cellular, molecular, and developmental biology that employ or are relevant to organs, tissue, tumors, and cells in vitro will be considered for publication. Topics covered include: Biotechnology; Cell and Tissue Models; Cell Growth/Differentiation/Apoptosis; Cellular Pathology/Virology; Cytokines/Growth Factors/Adhesion Factors; Establishment of Cell Lines; Signal Transduction; Stem Cells; Toxicology/Chemical Carcinogenesis; Product Applications.
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