4.8 Article

Strategy for constructing vascularized adipose units in poly(L-glutamic acid) hydrogel porous scaffold through inducing in-situ formation of ASCs spheroids

Journal

ACTA BIOMATERIALIA
Volume 51, Issue -, Pages 246-257

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2017.01.043

Keywords

Cellular spheroid; Adipose derived stem cells; Poly((L)-glutamic acid); Adipose tissue engineering; Vascularization

Funding

  1. National Natural Science Foundation of China [51373094, 51503119]
  2. Science and Technology Commission of Shanghai Municipality [15JC1490400]

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Vascularization is of great importance to adipose tissue regeneration. Here we introduced a paradigm that using scaffold to induce ASC spheroids, so to promote vascularized adipose tissue regeneration. Poly (L-glutamic acid) (PLGA) was activated by EDC, followed by being cross -linked by Adipic dihydrazide (ADH) to form a homogeneous hydrogel. Lyophilization was then carried out to create porous structure. The PLGA hydrogel scaffold possessed a significant swollen hydrophilic network to weaken cell -scaffold adhesion but drive ASCs to aggregate to form spheroids. Increase of seeding cell density was proved to result in the increase of spheroid size, upregulating angiogenic genes (VEGF and FGF-2) expression by enhancing the hypoxia-induced paracrine secretion. Also, the adipogenic differentiation of ASCs was achieved in spheroids in vitro. Moreover, the in vivo vascularized adipose tissue regeneration was evaluated in the dorsum of nude mice. After 12 weeks post -implantation, the significant angiogenesis was found in both adipogenic induced and non -induced engineered tissue. In adipogenic induced group, the clear ring -like morphology, the large vacuole in the middle of the cell and the Oil red 0 staining demonstrated adipose tissue formation. Statement of Significance Vascularization is of great importance to adipose tissue regeneration. Adipose derived stem cell (ASC) spheroids possessed not only the high efficiency of vascularization, but also the improved differentiation ability. Several research works have illustrated the advantage of ASC spheroids in vascularization. However, in adipose regeneration, ASC spheroid was rarely used. Even so, it is reasonable to believe that ASC spheroids hold a great promise in vascularized adipose tissue engineering. Thus in the present study, we introduced a method to create lots of ASC spheroids that acted as lots of individual adipogenesis and angiogenesis units inside of a porous hydrogel scaffold. Then, the scaffold carrying ASC spheroids was implanted subcutaneously in nude mice to preliminarily evaluate the adipose tissue generation and blood vessel formation. (c) 2017 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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