Literature DB >> 25286332

Biphasic influence of dexamethasone exposure on embryonic vertebrate skeleton development.

Xin Cheng1, Jian-Long Chen1, Zheng-Lai Ma1, Zhao-Long Zhang1, Shun Lv1, Dong-Mei Mai1, Jia-Jia Liu1, Manli Chuai2, Kenneth Ka Ho Lee3, Chao Wan3, Xuesong Yang4.   

Abstract

Dexamethasone (Dex) has anti-inflammatory and immunomodulatory properties against many conditions. There is a potential teratogenic risk, however, for pregnant women receiving Dex treatment. It has been claimed that Dex exposure during pregnancy could affect osteogenesis in the developing embryo, which still remains highly controversial. In this study, we employed chick embryos to investigate the effects of Dex exposure on skeletal development using combined in vivo and in vitro approach. First, we demonstrated that Dex (10(-8)-10(-6)μmol/egg) exposure resulted in a shortening of the developing long bones of chick embryos, and it accelerated the deposition of calcium salts. Secondly, histological analysis of chick embryo phalanxes exhibited Dex exposure inhibited the proliferation of chondrocytes, increased apoptosis of chondrocytes and osteocytes, and led to atypical arranged hypertrophic chondrocytes. The expression of genes related to skeletogenesis was also analyzed by semi-quantitative RT-PCR. The expression of ALP, Col1a2 and Col2a1 was decreased in the Dex treated phalanxes. A detectable increase was observed in Runx-2 and Mmp-13 expression. We next examined how Dex affected the different stages of skeletogenesis in vitro. Utilizing limb bud mesenchyme micromass cultures, we determined that Dex exposure exerted no effect on apoptosis but impaired chondrogenic cell proliferation. Interestingly, low dose of Dex moderately prompted nodule formation as revealed by alcian blue staining, but higher doses of Dex significantly inhibited similar chondrogenic differentiation. Dex exposure did not induce apoptosis when the chondrogenic precursors were still at the mesenchymal stage, however, cell viability was suppressed when the mesenchyme differentiated into chondrocytes. Alizarin red staining revealed that the capacity to form mineralized bone nodules was correspondingly enhanced as Dex concentrations increased. The mRNA level of Sox-9 was slightly increased in mesenchymal cell mass treated by low concentration of Dex. Mmp-13 expression was obviously up-regulated by Dex in both mesenchymal cells and primary chondrocyte cultures. And Col10a1 expression was also increased by Dex exposure in chondrocyte. In summary, we have revealed that different concentrations of Dex exposure during early gestation could exert a biphasic effect on vertebrate skeletal development.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Chick embryo; Chondrogenesis; Dexamethasone; Micromass culture; Osteogenesis

Mesh:

Substances:

Year:  2014        PMID: 25286332     DOI: 10.1016/j.taap.2014.09.014

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.219


  4 in total

1.  Activation of glucocorticoid receptors in Müller glia is protective to retinal neurons and suppresses microglial reactivity.

Authors:  Donika Gallina; Christopher Paul Zelinka; Colleen M Cebulla; Andy J Fischer
Journal:  Exp Neurol       Date:  2015-08-10       Impact factor: 5.330

2.  Role of dexamethasone in the long-term functional maturation of MSC-laden hyaluronic acid hydrogels for cartilage tissue engineering.

Authors:  Minwook Kim; Sean T Garrity; David R Steinberg; George R Dodge; Robert L Mauck
Journal:  J Orthop Res       Date:  2017-12-29       Impact factor: 3.494

3.  Mitogen-inducible gene-6 partly mediates the inhibitory effects of prenatal dexamethasone exposure on endochondral ossification in long bones of fetal rats.

Authors:  Xianrong Zhang; Yangfan Shang-Guan; Jing Ma; Hang Hu; Linlong Wang; Jacques Magdalou; Liaobin Chen; Hui Wang
Journal:  Br J Pharmacol       Date:  2016-06-02       Impact factor: 8.739

4.  Exposure to Excess Phenobarbital Negatively Influences the Osteogenesis of Chick Embryos.

Authors:  Yu Yan; Xin Cheng; Ren-Hao Yang; He Li; Jian-Long Chen; Zheng-Lai Ma; Guang Wang; Manli Chuai; Xuesong Yang
Journal:  Front Pharmacol       Date:  2016-09-30       Impact factor: 5.810

  4 in total

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