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An intracrine view of sex steroids, immunity, and metabolic regulation

机译:性类固醇,免疫力和代谢调节的内分泌视图

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Background Over the past two decades, parallel recognition has grown of the importance of both sex steroids and immune activity in metabolic regulation. More recently, these discrete areas have been integrated in studies examining the metabolic effects of sex steroid immunomodulation. Implicit in these studies has been a traditional, endocrine model of sex steroid delivery from the gonads to target cells, including immune cells. Thus, research to date has focused on the metabolic effects of sex steroid receptor signaling in immune cells. This endocrine model, however, overlooks the extensive capacity of immune cells to generate and metabolize sex steroids, enabling the production of sex steroids for intracrine signaling – that is, sex steroid production for signaling within the cell of origin. Intracrine function allows highly cell-autonomous regulation of sex steroid exposure, and sex steroid secretion by immune cells could confer paracrine signaling effects in neighboring cells within metabolic tissues. In this review, immune cell intracrinology will denote sex steroid production within immune cells for either intracrine or paracrine signaling. This intracrine capacity of immune cells has been well established, and prior work has supported its importance in autoimmune disorders, trauma, and cancer. The potential relevance of immune cell intracrine function to the regulation of energy balance, body weight, body composition, and insulin sensitivity has yet to be explored. Scope of review The following review will detail findings to date regarding the steroidogenic and steroid metabolizing capacity of immune cells, the regulation of immune cell intracrine function, and the biological effects of immune-derived sex steroids, including the clinical relevance of immune cell intracrinology in fields other than metabolism. These findings will serve as the basis for a proposed model of immune cell intracrinology constituting a new frontier in metabolism research. Major conclusions The development of highly sensitive mass spectrometric methods for sex steroid measurement and quantitation of metabolic flux now allows unprecedented ability to interrogate sex steroid production, metabolism and secretion by immune cells. Immune cell intracrinology could reveal key mechanisms underlying immune cell-mediated metabolic regulation.
机译:背景技术在过去的二十年中,人们逐渐认识到,在代谢调节中性类固醇和免疫活性的重要性。最近,这些离散区域已整合到研究性类固醇免疫调节的代谢作用的研究中。这些研究隐含着一种传统的内分泌模型,将性类固醇从性腺传递到靶细胞,包括免疫细胞。因此,迄今为止的研究集中在性类固醇受体信号转导在免疫细胞中的代谢作用。但是,这种内分泌模型忽略了免疫细胞产生和代谢性类固醇的广泛能力,从而使性类固醇的产生可用于内分泌信号传递,即在源细胞内产生性类固醇的信号传递。内分泌功能可以高度自主地调节性类固醇的暴露,免疫细胞分泌性类固醇可以在代谢组织内的相邻细胞中赋予旁分泌信号传导作用。在这篇综述中,免疫细胞内分泌学将表示内分泌或旁分泌信号传导的免疫细胞内性类固醇的产生。免疫细胞的这种内分泌能力已经得到充分确立,并且先前的工作支持了它在自身免疫性疾病,创伤和癌症中的重要性。免疫细胞内分泌功能与调节能量平衡,体重,身体组成和胰岛素敏感性之间的潜在相关性尚待探索。审查范围以下审查将详细探讨迄今为止有关免疫细胞的类固醇生成和类固醇代谢能力,免疫细胞内分泌功能的调节以及免疫衍生性类固醇的生物学作用,包括免疫细胞内分泌学的临床相关性。新陈代谢以外的其他领域。这些发现将为免疫细胞内分泌模型的建立奠定基础,该模型构成了新陈代谢研究的新领域。主要结论现在,用于类固醇测量和代谢通量定量的高灵敏度质谱方法的发展,使人们能够空前地询问免疫细胞对性类固醇的产生,代谢和分泌的能力。免疫细胞内分泌学可以揭示免疫细胞介导的代谢调控的关键机制。

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