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Serotonin as a homeostatic regulator of lactation

机译:血清素作为泌乳稳态调节剂

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Serotonin (5-HT), a neurotransmitter produced in mammary epithelial cells (MECs), acts via autocrine paracrine mechanisms on MECs to regulate milk secretion in a variety of species. Recent studies in dairy cows reported that 5-HT ligands affect milk yield and composition. We determined the mRNA expression of bovine 5-HT receptor (5-HTR) subtypes in bovine mammary tissue (BMT) and cultured bovine MECs. We then used pharmacologic agents to evaluate functional activities of 5-HTR subtypes. The mRNAs for five receptor isoforms (5-HTR1B, 5-HTR2A, 5-HTR2B, 5-HTR4, and 5-HTR7) were identified by conventional reverse transcription PCR, real-time PCR, and in situ hybridization in BMT. In addition to luminal MEC expression, 5-HTR4 was expressed in myoepithelium, and 5-HTR1B, HTR2A, and HTR2B were expressed in small mammary blood vessels. Studies to date report that there are multiple 5-HTR isoforms in mammary tissue of rodents, humans, and cattle. Inhibition of the 5-HT reuptake transporter with selective 5-HT reuptake inhibitors (SSRIs) disrupted tight junctions and decreased milk protein mRNA expression in mouse, human, and bovine mammary cells. Selective 5-HT reuptake inhibitors act to increase the cellular exposure to 5-HT by preventing reuptake of 5-HT by the cell and eventual degradation. Increasing 5-HT concentration in milk via inhibiting its reuptake (SSRI), or by increasing the precursor for 5-HT synthesis 5-hydroxytryptophan, accelerated decline in milk synthesis at dry-off. We conclude that the 5-HT system in mammary tissue acts as a homeostatic regulator of lactation
机译:血清素(5-HT)是在乳腺上皮细胞(MEC)中产生的一种神经递质,它通过自分泌旁分泌机制作用于MEC,以调节多种物种的乳汁分泌。奶牛的最新研究报告说,5-HT配体会影响牛奶的产量和组成。我们确定了牛乳腺组织(BMT)和培养的牛MEC中牛5-HT受体(5-HTR)亚型的mRNA表达。然后,我们使用药理学药物来评估5-HTR亚型的功能活性。通过常规逆转录PCR,实时PCR和原位杂交在BMT中鉴定了五个受体亚型(5-HTR1B,5-HTR2A,5-HTR2B,5-HTR4和5-HTR7)的mRNA。除管腔MEC表达外,在肌上皮中还表达了5-HTR4,在乳腺小血管中还表达了5-HTR1B,HTR2A和HTR2B。迄今为止的研究报告说,啮齿动物,人类和牛的乳腺组织中存在多种5-HTR亚型。用选择性5-HT再摄取抑制剂(SSRI)抑制5-HT再摄取转运蛋白可破坏小鼠,人类和牛乳腺细胞中的紧密连接并降低牛奶蛋白mRNA表达。选择性5-HT再摄取抑制剂通过阻止细胞对5-HT的再摄取和最终降解来增加细胞对5-HT的暴露。通过抑制牛奶的再摄取(SSRI)或通过增加5-HT合成的5-羟色氨酸的前体来增加牛奶中的5-HT浓度,可以加速牛奶在干燥时的合成下降。我们得出的结论是,乳腺组织中的5-HT系统起着泌乳稳态调节器的作用

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