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The heart as an endocrine organ

机译:心脏作为内分泌器官

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The concept of the heart as an endocrine organ arises from the observation that the atrial cardiomyocytes in the mammalian heart display a phenotype that is partly that of endocrine cells. Investigations carried out between 1971 and 1983 characterised, by virtue of its natriuretic properties, a polypeptide referred to atrial natriuretic factor (ANF). Another polypeptide isolated from brain in 1988, brain natriuretic peptide (BNP), was subsequently characterised as a second hormone produced by the mammalian heart atria. These peptides were associated with the maintenance of extracellular fluid volume and blood pressure. Later work demonstrated a plethora of other properties for ANF and BNP, now designated cardiac natriuretic peptides (cNPs). In addition to the cNPs, other polypeptide hormones are expressed in the heart that likely act upon the myocardium in a paracrine or autocrine fashion. These include the C-type natriuretic peptide, adrenomedullin, proadrenomedullin N-terminal peptide and endothelin-1. Expression and secretion of ANF and BNP are increased in various cardiovascular pathologies and their levels in blood are used in the diagnosis and prognosis of cardiovascular disease. In addition, therapeutic uses for these peptides or related substances have been found. In all, the discovery of the endocrine heart provided a shift from the classical functional paradigm of the heart that regarded this organ solely as a blood pump to one that regards this organ as self-regulating its workload humorally and that also influences the function of several other organs that control cardiovascular function.
机译:心脏作为内分泌器官的概念源自观察到的是,哺乳动物心脏中的心房心肌细胞表现出部分内分泌细胞的表型。 1971年至1983年间进行的研究,由于其利尿钠的特性,其特征是被称为心房利钠因子(ANF)的多肽。 1988年从大脑中分离出的另一种多肽,脑钠肽(BNP),随后被表征为哺乳动物心脏心房产生的第二种激素。这些肽与维持细胞外液量和血压有关。后来的工作证明了ANF和BNP的其他许多特性,现在被称为心脏利钠肽(cNPs)。除cNPs外,其他多肽激素在心脏中表达,可能以旁分泌或自分泌的方式作用于心肌。这些包括C型利钠肽,肾上腺髓质素,肾上腺髓质素N端肽和内皮素-1。在各种心血管疾病中,ANF和BNP的表达和分泌均增加,其在血液中的水平可用于心血管疾病的诊断和预后。另外,已经发现这些肽或相关物质的治疗用途。总而言之,内分泌心脏的发现提供了一种从经典的心脏功能范式转变的经典功能范式,该范式仅将器官视为血液泵,而将器官视为幽默地自我调节其工作量,并且也影响了几种器官的功能。其他控制心血管功能的器官。

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