Bcl-2 modified adipose-derived stem cells improve the retention of fat graft.

IF 3.5 4区 生物学 Q2 ENDOCRINOLOGY & METABOLISM Adipocyte Pub Date : 2022-12-01 DOI:10.1080/21623945.2022.2107195
Ziwei Cui, Qian Tan
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Abstract

In cell-assisted lipotransfer, adipose-derived stem cells play a crucial role in enhancing fat graft retention. In vitro, human adipose-derived stem cells were modified with Bcl-2 gene. In vivo, aspirated fat was mixed with the Bcl-2-modified adipose-derived stem cells and then transplanted subcutaneously into nude mice. The retention of fat graft was evaluated. The surviving Bcl-2-modified adipose-derived stem cells were tracked after transplantation. Capillary density was quantified after transplantation. Transplantation with Bcl-2-modified adipose-derived stem cells enhanced fat graft retention by 49% and 114% at 6 weeks compared with the Fat + vector-modified adipose-derived stem cell group and Fat-only group, respectively. Transplants from the Fat + Bcl-2-modified adipose-derived stem cell group had significantly more intact adipocytes and lower levels of fat necrosis and fibrosis at 6 weeks. The survival of Bcl-2-modified adipose-derived stem cells increased by 33% at 3 weeks and 54% at 6 weeks, respectively, compared with vector-modified adipose-derived stem cells. The capillary density was 24% higher in Fat + Bcl-2-modified adipose-derived stem cell group than in Fat + vector-modified adipose-derived stem cell group or 60% higher than in Fat-only group at 3 weeks.

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Bcl-2修饰的脂肪源性干细胞可改善脂肪移植物的保留。
在细胞辅助脂肪移植中,脂肪来源的干细胞在增强脂肪移植保留方面起着至关重要的作用。体外用Bcl-2基因修饰人脂肪源性干细胞。在体内,将抽吸脂肪与bcl -2修饰的脂肪源性干细胞混合,然后皮下移植到裸鼠体内。评估移植脂肪的保留。移植后对存活的bcl -2修饰的脂肪来源干细胞进行追踪。移植后定量测定毛细血管密度。与脂肪+载体修饰的脂肪来源干细胞组和仅脂肪组相比,bcl -2修饰的脂肪来源干细胞移植在6周时分别提高了49%和114%的脂肪移植保留率。脂肪+ bcl -2修饰脂肪源性干细胞组的移植在6周时具有更多完整的脂肪细胞和更低水平的脂肪坏死和纤维化。与载体修饰的脂肪来源干细胞相比,bcl -2修饰的脂肪来源干细胞在3周和6周的存活率分别提高了33%和54%。3周时,脂肪+ bcl -2修饰脂肪干细胞组的毛细血管密度比脂肪+载体修饰脂肪干细胞组高24%,比仅脂肪组高60%。
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来源期刊
Adipocyte
Adipocyte Medicine-Histology
CiteScore
6.50
自引率
3.00%
发文量
46
审稿时长
32 weeks
期刊介绍: Adipocyte recognizes that the adipose tissue is the largest endocrine organ in the body, and explores the link between dysfunctional adipose tissue and the growing number of chronic diseases including diabetes, hypertension, cardiovascular disease and cancer. Historically, the primary function of the adipose tissue was limited to energy storage and thermoregulation. However, a plethora of research over the past 3 decades has recognized the dynamic role of the adipose tissue and its contribution to a variety of physiological processes including reproduction, angiogenesis, apoptosis, inflammation, blood pressure, coagulation, fibrinolysis, immunity and general metabolic homeostasis. The field of Adipose Tissue research has grown tremendously, and Adipocyte is the first international peer-reviewed journal of its kind providing a multi-disciplinary forum for research focusing exclusively on all aspects of adipose tissue physiology and pathophysiology. Adipocyte accepts high-profile submissions in basic, translational and clinical research.
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