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Long-term (trophic) purinergic signalling: purinoceptors control cell proliferation, differentiation and death

机译:长期(营养性)嘌呤能信号传导:嘌呤受体控制细胞增殖,分化和死亡

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The purinergic signalling system, which uses purines and pyrimidines as chemical transmitters, and purinoceptors as effectors, is deeply rooted in evolution and development and is a pivotal factor in cell communication. The ATP and its derivatives function as a ‘danger signal’ in the most primitive forms of life. Purinoceptors are extraordinarily widely distributed in all cell types and tissues and they are involved in the regulation of an even more extraordinary number of biological processes. In addition to fast purinergic signalling in neurotransmission, neuromodulation and secretion, there is long-term (trophic) purinergic signalling involving cell proliferation, differentiation, motility and death in the development and regeneration of most systems of the body. In this article, we focus on the latter in the immune/defence system, in stratified epithelia in visceral organs and skin, embryological development, bone formation and resorption, as well as in cancer.. ? 2010 Macmillan Publishers Limited
机译:嘌呤能信号系统以嘌呤和嘧啶为化学递质,嘌呤受体为效应物,深深扎根于进化和发展,是细胞通讯的关键因素。 ATP及其衍生物在最原始的生命形式中起着“危险信号”的作用。嘌呤受体异常广泛地分布在所有细胞类型和组织中,并且它们参与调节甚至更多的生物过程。除了神经传递,神经调节和分泌中的快速嘌呤能信号传递外,在大多数人体系统的发育和再生中还存在长期(营养性)嘌呤能信号传递,涉及细胞增殖,分化,运动和死亡。在本文中,我们将重点放在免疫/防御系统,内脏器官和皮肤的分层上皮细胞,胚胎发育,骨形成和吸收以及癌症中的后者。 2010 Macmillan Publishers Limited

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