首页> 外文期刊>Journal of Developmental Biology and Tissue Engineering >Exogenous NGF favors initiation of lizard tail regeneration while EGF and TGF- truncate regenerative growth and commit to precociousmuscle and cartilage differentiation
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Exogenous NGF favors initiation of lizard tail regeneration while EGF and TGF- truncate regenerative growth and commit to precociousmuscle and cartilage differentiation

机译:外源性NGF有利于蜥蜴尾巴再生的开始,而EGF和TGF-截短再生生长并致力于早熟肌肉和软骨的分化

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Since growth factors exert control over various cellular events during development and as information in this regard on regenerative growth are scant, the present study has evaluated the effect of exogenous in loco administration of EGF, TGF-β and NGF during the first few days post-autotomy on the course of tail regeneration in Hemidactylus flaviviridis. Further evaluated is the efficacy of NGF to rectify the retardatory influence of hypothyroidism on regeneration. This study reveals that, EGF and TGF-β inhibit tail regeneration while, NGF stimulates it. Histologically, the EGF treated lizards showed greater collagen formation and precocious epithelial and myogenic differentiation. TGF-β had inhibitory influence on dedifferentiation while favoring preponderant chondrogenic differentiation. Overall, the present study on the differential effects of growth factors on various aspects of cell proliferation and differentiation, suggest the need for various growth factors on a precisely synchronized temporal and spatial order for a normal regenerative growth.
机译:由于生长因子对发育过程中的各种细胞事件具有控制作用,并且关于再生生长的信息很少,因此,本研究评估了外源性因子在机体后EGF,TGF-β和NGF局部给药中的作用。黄皮尾虫尾巴再生过程中的解剖学。进一步评估了NGF纠正甲状腺功能减退对再生的延迟影响的功效。这项研究表明,EGF和TGF-β抑制尾巴再生,而NGF刺激尾巴再生。从组织学上讲,经EGF处理的蜥蜴显示出更大的胶原蛋白形成以及早熟的上皮和成肌分化。 TGF-β对去分化具有抑制作用,同时有利于成软骨的分化。总体而言,目前有关生长因子对细胞增殖和分化各个方面的差异影响的研究表明,对于正常再生生长而言,在精确同步的时间和空间顺序上需要各种生长因子。

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