Literature DB >> 34331001

The capacity of differentiation of stromal vascular fraction cells into beige adipocytes is markedly reduced in subjects with overweight/obesity and insulin resistance: effect of genistein.

Leonardo A Rodriguez-López1, Ivan Torre-Villalvazo1, Gabriela Aleman-Escondrillas1, Adriana Flores-López1, Martha Guevara-Cruz1, Mónica Sánchez-Tapia1, Erik A Torre-Anaya1, Valentín Martínez-López2, Sarai Vasquez-Reyes1, Gonzalo M Torres-Villalobos3, Yazmín Macotela4, Nimbe Torres1, Armando R Tovar5.   

Abstract

BACKGROUND: Dietary bioactive compounds have been demonstrated to produce several health benefits. Genistein, an isoflavone of soy protein, and resveratrol, a polyphenol from grapes, have been shown to improve insulin sensitivity and to stimulate white adipose tissue (WAT) browning, leading to increased energy expenditure. However, it has not been demonstrated in humans whether genistein or resveratrol have the capacity to stimulate the differentiation of stromal vascular fraction (SVF) cells from white fat into beige adipocytes. SUBJECTS/
METHODS: With this aim, we assessed whether stromal vascular fraction cells obtained from biopsies of the subdermal fat depots of subjects with normal body weight (NW) or from subjects with overweight/obesity with (OIR) or without (OIS) insulin resistance were able to differentiate into the beige adipose tissue lineage in vitro, by exposing the cells to genistein, resveratrol, or the combination of both.
RESULTS: The results showed that SVF cells obtained from NW or OIS subjects were able to differentiate into beige adipocytes according to an increased expression of beige biomarkers including UCP1, PDRM-16, PGC1α, CIDEA, and SHOX2 upon exposure to genistein. However, SVF cells from OIR subjects were unable to differentiate into beige adipocytes with any of the inducers. Exposure to resveratrol or the combination of resveratrol/genistein did not significantly stimulate the expression of browning markers in any of the groups studied. We found that the non-responsiveness of the SVF from subjects with obesity and insulin resistance to any of the inducers was associated with an increase in the expression of endoplasmic reticulum stress markers.
CONCLUSION: Consumption of genistein may stimulate WAT browning mainly in NW or OIS subjects. Thus, obesity associated with insulin resistance may be considered as a condition that prevents some beneficial effects of some dietary bioactive compounds.
© 2021. The Author(s), under exclusive licence to Springer Nature Limited.

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Year:  2021        PMID: 34331001     DOI: 10.1038/s41366-021-00921-3

Source DB:  PubMed          Journal:  Int J Obes (Lond)        ISSN: 0307-0565            Impact factor:   5.095


  55 in total

Review 1.  Adaptive thermogenesis in adipocytes: is beige the new brown?

Authors:  Jun Wu; Paul Cohen; Bruce M Spiegelman
Journal:  Genes Dev       Date:  2013-02-01       Impact factor: 11.361

2.  The browning of white adipose tissue: some burning issues.

Authors:  Jan Nedergaard; Barbara Cannon
Journal:  Cell Metab       Date:  2014-08-07       Impact factor: 27.287

3.  The emergence of cold-induced brown adipocytes in mouse white fat depots is determined predominantly by white to brown adipocyte transdifferentiation.

Authors:  G Barbatelli; I Murano; L Madsen; Q Hao; M Jimenez; K Kristiansen; J P Giacobino; R De Matteis; S Cinti
Journal:  Am J Physiol Endocrinol Metab       Date:  2010-03-30       Impact factor: 4.310

Review 4.  Control of brown and beige fat development.

Authors:  Wenshan Wang; Patrick Seale
Journal:  Nat Rev Mol Cell Biol       Date:  2016-08-24       Impact factor: 94.444

Review 5.  The impact of obesity on quality of life.

Authors:  Valerie H Taylor; Mary Forhan; Simone N Vigod; Roger S McIntyre; Katherine M Morrison
Journal:  Best Pract Res Clin Endocrinol Metab       Date:  2013-05-10       Impact factor: 4.690

Review 6.  Understanding the Biology of Thermogenic Fat: Is Browning A New Approach to the Treatment of Obesity?

Authors:  Ariana Vargas-Castillo; Rebeca Fuentes-Romero; Leonardo A Rodriguez-Lopez; Nimbe Torres; Armando R Tovar
Journal:  Arch Med Res       Date:  2017-07       Impact factor: 2.235

7.  White adipose tissue contributes to UCP1-independent thermogenesis.

Authors:  J G Granneman; M Burnazi; Z Zhu; L A Schwamb
Journal:  Am J Physiol Endocrinol Metab       Date:  2003-09-03       Impact factor: 4.310

8.  UCP1-independent signaling involving SERCA2b-mediated calcium cycling regulates beige fat thermogenesis and systemic glucose homeostasis.

Authors:  Kenji Ikeda; Qianqian Kang; Takeshi Yoneshiro; Joao Paulo Camporez; Hiroko Maki; Mayu Homma; Kosaku Shinoda; Yong Chen; Xiaodan Lu; Pema Maretich; Kazuki Tajima; Kolapo M Ajuwon; Tomoyoshi Soga; Shingo Kajimura
Journal:  Nat Med       Date:  2017-11-13       Impact factor: 53.440

9.  Distinct signaling and transcriptional pathways regulate peri-weaning development and cold-induced recruitment of beige adipocytes.

Authors:  Yixuan Wu; Melissa A Kinnebrew; Vassily I Kutyavin; Ajay Chawla
Journal:  Proc Natl Acad Sci U S A       Date:  2020-03-05       Impact factor: 11.205

Review 10.  Thematic review series: adipocyte biology. Adipose tissue function and plasticity orchestrate nutritional adaptation.

Authors:  Jaswinder K Sethi; Antonio J Vidal-Puig
Journal:  J Lipid Res       Date:  2007-03-20       Impact factor: 5.922

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