Bioinformatics and Medical Informatics Research Center, San Diego State University, 92182, San Diego, CA, USA.
Department of Marine Biology, Faculty of Marine Science and Technology, University of Hormozgan, Bandar Abbas, Iran; Department of Biology, Faculty of Sciences, University of Hormozgan, Bandar Abbas, Iran.
Biomed Pharmacother. 2018 Jun;102:403-411. doi: 10.1016/j.biopha.2018.03.078. Epub 2018 Mar 22.
Estrogen is a pivotal enzyme for survival and health in both genders, though their quantum, tropism, tissue-specific distribution, and receptor affinity varies with different phases of life. Converted from androgen via aromatase enzyme, this hormone is indispensable to glucose homeostasis, immune robustness, bone health, cardiovascular health, fertility, and neural functions. However, estrogen is at the center of almost all human pathologies as well-infectious, autoimmune, metabolic to degenerative. Both hypo and hyper level of estrogen has been linked to chronic and acute diseases. While normal aging is supposed to lower its level, leading to tissue degeneration (bone, muscle, neural etc.), and metabolite imbalance (glucose, lipid etc.), the increment in inflammatory agents in day-to-day life are enhancing the estrogen (or estrogen mimic) level, fueling 'estrogen dominance'. The resultant excess estrogen is inducing an overexpression of estrogen receptors (ERα and ERβ), harming tissues, leading to autoimmune diseases, and neoplasms. The unprecedented escalation in the polycystic ovary syndrome, infertility, breast cancer, ovary cancer, and gynecomastia cases are indicating that this sensitive hormone is getting exacerbated. This critical review is an effort to analyze the dual, and opposing facets of estrogen, via understanding its crosstalk with other hormones, enzymes, metabolites, and drugs. Why estrogen level correction is no trivial task, and how it can be restored to normalcy by a disciplined lifestyle with wise dietary and selective chemical usage choices has been discussed. Overall, our current state of knowledge does not disclose the full picture of estrogen's pleiotropic importance. Hence, this review should be a resource for general public as well as researchers to work in that direction.
雌激素是两性生存和健康的关键酶,尽管其数量、亲向性、组织特异性分布和受体亲和力因生命的不同阶段而有所不同。这种激素通过芳香化酶酶从雄激素转化而来,对葡萄糖稳态、免疫健壮、骨骼健康、心血管健康、生育能力和神经功能至关重要。然而,雌激素几乎是所有人类疾病的中心——感染、自身免疫、代谢到退行性。雌激素水平过低和过高都与慢性和急性疾病有关。虽然正常衰老应该降低其水平,导致组织退化(骨骼、肌肉、神经等)和代谢物失衡(葡萄糖、脂质等),但日常生活中炎症因子的增加正在提高雌激素(或雌激素模拟物)水平,助长“雌激素优势”。由此产生的过量雌激素会过度表达雌激素受体(ERα 和 ERβ),损害组织,导致自身免疫性疾病和肿瘤。多囊卵巢综合征、不孕、乳腺癌、卵巢癌和男性乳房发育症病例的空前增加表明,这种敏感的激素正在加剧恶化。这篇批判性评论试图通过了解其与其他激素、酶、代谢物和药物的相互作用,分析雌激素的双重、对立方面。为什么雌激素水平的校正不是一件简单的任务,以及如何通过有纪律的生活方式、明智的饮食和选择性化学物质使用选择将其恢复正常,都进行了讨论。总的来说,我们目前的知识状况并没有揭示雌激素多效性重要性的全貌。因此,这篇综述应该是普通公众和研究人员朝着这个方向努力的资源。