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A historic perspective on the current progress in elucidation of the biologic significance of non-neuronal acetylcholine

机译:关于阐明非神经元乙酰胆碱生物学意义阐明的目前进展的历史观点

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The "5th International Symposium on Non-neuronal Acetylcholine: from bench to bedside" was held on September 27-29, 2019 in Hyatt Regency, Long Beach, CA, USA. Approximately 50 scientists from 11 countries over 6 continents participated in this meeting. The major topics included an overall biologic significance of non-neuronal acetylcholine (ACh) and the roles of the non-neuronal cholinergic systems in mucocutaneous, respiratory, digestive, immunologic, endocrine, cardiovascular, musculoskeletal and kidney diseases, and cancer. This meeting facilitated continued work to advance the fundamental science and translational aspects of the interdisciplinary studies on non-neuronal ACh. The progress made has opened a new chapter in the field of cholinergic pharmacology, and advanced our knowledge beyond regulation of individual cell- and tissue-types, defining a new paradigm of selective pharmacological regulation of vital function of practically all types of non-neuronal cells. It is now clear that the autocrine and paracrine control of non-neuronal cells by non-neuronal ACh is implemented through synergistic, additive, and reciprocal effects triggered by two different cholinergic receptor classes. Each biologic effect of ACh is determined by a unique combination of cholinergic receptors subtype expressed at each stage of cell development and differentiation. The plasticity of the non-neuronal cholinergic system helps adjust homeostasis to new environmental conditions.
机译:2019年9月27日至29日在美国凯悦酒店举行了“来自非神经元乙酰胆碱的第五届非神经元乙酰胆碱研讨会:从长椅上到床头馆”。来自11个国家的大约50个来自6个大陆的科学家参加了这次会议。主要话题包括非神经元乙酰胆碱(ACH)的整体生物学意义,以及非神经元胆碱能系统在粘膜外,呼吸,消化,免疫学,内分泌,心血管,肌肉骨骼和肾病和癌症中的作用。这次会议促进了继续努力推进非神经元酸度跨学科研究的基本科学和翻译方面。在胆碱能药理学领域开辟了新的一篇新篇章,并推动了我们的知识,超越了单个细胞和组织类型的调节,定义了几乎所有类型的非神经元细胞的重要函数的选择性药理调节的新范式。现在清楚的是,通过由两种不同的胆碱能受体类引发的协同,添加剂和往复效果来实现非神经元患者对非神经元细胞的自分泌和旁静脉控制。 ACH的每个生物学效果是通过在细胞发育和分化的每个阶段表达的胆碱能受体亚型的独特组合来确定。非神经元胆碱能系统的可塑性有助于调整稳态对新的环境条件。

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