光神经免疫内分泌学:紫外线如何调节身体、大脑和免疫系统。
Photo-neuro-immuno-endocrinology: How the ultraviolet radiation regulates the body, brain, and immune system.
机构信息
Departments of Genetics, the University of Alabama at Birmingham, Birmingham, AL 35294.
Department of Biomedical Informatics and Data Science, the University of Alabama at Birmingham, Birmingham, AL 35294.
出版信息
Proc Natl Acad Sci U S A. 2024 Apr 2;121(14):e2308374121. doi: 10.1073/pnas.2308374121. Epub 2024 Mar 15.
Ultraviolet radiation (UVR) is primarily recognized for its detrimental effects such as cancerogenesis, skin aging, eye damage, and autoimmune disorders. With exception of ultraviolet B (UVB) requirement in the production of vitamin D3, the positive role of UVR in modulation of homeostasis is underappreciated. Skin exposure to UVR triggers local responses secondary to the induction of chemical, hormonal, immune, and neural signals that are defined by the chromophores and extent of UVR penetration into skin compartments. These responses are not random and are coordinated by the cutaneous neuro-immuno-endocrine system, which counteracts the action of external stressors and accommodates local homeostasis to the changing environment. The UVR induces electrical, chemical, and biological signals to be sent to the brain, endocrine and immune systems, as well as other central organs, which in concert regulate body homeostasis. To achieve its central homeostatic goal, the UVR-induced signals are precisely computed locally with transmission through nerves or humoral signals release into the circulation to activate and/or modulate coordinating central centers or organs. Such modulatory effects will be dependent on UVA and UVB wavelengths. This leads to immunosuppression, the activation of brain and endocrine coordinating centers, and the modification of different organ functions. Therefore, it is imperative to understand the underlying mechanisms of UVR electromagnetic energy penetration deep into the body, with its impact on the brain and internal organs. Photo-neuro-immuno-endocrinology can offer novel therapeutic approaches in addiction and mood disorders; autoimmune, neurodegenerative, and chronic pain-generating disorders; or pathologies involving endocrine, cardiovascular, gastrointestinal, or reproductive systems.
紫外线辐射(UVR)主要因其致癌作用、皮肤老化、眼睛损伤和自身免疫性疾病等有害影响而被人们所熟知。除了紫外线 B(UVB)在维生素 D3 生成中的作用外,UVR 对体内平衡调节的积极作用尚未得到充分认识。皮肤暴露于 UVR 会引发局部反应,这是由于化学、激素、免疫和神经信号的诱导所致,这些信号由发色团和 UVR 穿透皮肤的程度决定。这些反应不是随机的,而是由皮肤神经免疫内分泌系统协调的,该系统可以对抗外部应激源的作用,并使局部内环境适应不断变化的环境。UVR 会引发电、化学和生物信号,这些信号被发送到大脑、内分泌和免疫系统以及其他中央器官,从而协同调节身体内环境。为了实现其中心内环境平衡的目标,UVR 诱导的信号会在局部进行精确计算,并通过神经或体液信号传递到循环中,以激活和/或调节协调的中央中枢或器官。这种调节作用将取决于 UVA 和 UVB 波长。这会导致免疫抑制、大脑和内分泌协调中枢的激活以及不同器官功能的改变。因此,了解 UVR 电磁能穿透人体深处的潜在机制及其对大脑和内脏器官的影响至关重要。光神经免疫内分泌学可以为成瘾和情绪障碍、自身免疫性、神经退行性和慢性疼痛产生障碍或涉及内分泌、心血管、胃肠道或生殖系统的病理学提供新的治疗方法。