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一种用脂肪细胞外基质成分功能化的仿生水凝胶,作为人和小鼠脂肪细胞三维培养的微环境。

A biomimetic hydrogel functionalized with adipose ECM components as a microenvironment for the 3D culture of human and murine adipocytes.

作者信息

Louis Fiona, Pannetier Pauline, Souguir Zied, Le Cerf Didier, Valet Philippe, Vannier Jean-Pierre, Vidal Guillaume, Demange Elise

机构信息

CELENYS, Biopolis 2, 75 route de Lyons-la-forêt, Rouen 76000, France.

Université de Rouen, Lab. PBS UMR 6270 CNRS, Mont Saint Aignan, France.

出版信息

Biotechnol Bioeng. 2017 Aug;114(8):1813-1824. doi: 10.1002/bit.26306. Epub 2017 May 8.

DOI:10.1002/bit.26306
PMID:28398656
Abstract

The lack of relevant in vitro models for adipose tissue makes necessary the development of a more physiological environment providing spatial and chemical cues for the effective maturation of adipocytes. We developed a biofunctionalized hydrogel with components of adipose extracellular matrix: collagen I, collagen VI, and the cell binding domain of fibronectin and we compared it to usual 2D cultures on plastic plates. This scaffold allowed 3D culture of mature adipocytes from the preadipocytes cell lines 3T3-L1 and 3T3-F442A, as well as primary Human White Preadipocytes (HWP), acquiring in vivo-like organization, with spheroid shaped adipocytes forming multicellular aggregates. The size of these aggregates increased with time up to 120 μm in diameter after 4 weeks of maturation, with good viability. Significantly higher lipogenic activity (up to 20-fold at day 28 for HWP cultures) and differentiation rates were also observed compared to 2D. Gene expression analyses highlighted earlier differentiation and complete maturation of 3D HWP compared to 2D, reinforced by the expression of Perilipin protein after 21 days of nutrition. This increase in adipocytes phenotypic and genotypic markers made this scaffold-driven culture as a robust adipose 3D model. Retinoic acid inhibition of lipogenesis in HWP or isoprenalin and caffeine induction of lipolysis performed on mouse 3T3-F442A cells, showed higher doses of molecules than typically used in 2D, underlying the physiologic relevance of this 3D culture system. Biotechnol. Bioeng. 2017;114: 1813-1824. © 2017 Wiley Periodicals, Inc.

摘要

缺乏用于脂肪组织的相关体外模型使得有必要开发一种更具生理环境的模型,为脂肪细胞的有效成熟提供空间和化学线索。我们开发了一种具有脂肪细胞外基质成分的生物功能化水凝胶:I型胶原蛋白、VI型胶原蛋白和纤连蛋白的细胞结合结构域,并将其与塑料板上的常规二维培养进行比较。这种支架允许来自前脂肪细胞系3T3-L1和3T3-F442A以及原代人白色前脂肪细胞(HWP)的成熟脂肪细胞进行三维培养,形成类似体内的组织结构,球形脂肪细胞形成多细胞聚集体。这些聚集体的大小随时间增加,成熟4周后直径可达120μm,且具有良好的活力。与二维培养相比,还观察到显著更高的脂肪生成活性(HWP培养在第28天高达20倍)和分化率。基因表达分析突出了三维培养的HWP与二维培养相比更早的分化和完全成熟,在营养21天后脂滴包被蛋白的表达进一步加强了这一点。脂肪细胞表型和基因型标记的这种增加使得这种支架驱动的培养成为一种强大的脂肪三维模型。在HWP中视黄酸对脂肪生成的抑制或在小鼠3T3-F442A细胞上异丙肾上腺素和咖啡因对脂肪分解的诱导表明,所需分子剂量高于二维培养中通常使用的剂量,这突出了这种三维培养系统的生理相关性。《生物技术与生物工程》2017年;114:1813 - 1824。©2017威利期刊公司

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