Department of Life Sciences, Ben-Gurion University of the Negev, Be'er Sheva, Israel.
Division of Rheumatology, Inflammation, and Immunity, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, USA.
Curr Top Microbiol Immunol. 2023;441:1-19. doi: 10.1007/978-3-031-35139-6_1.
Women have a stronger immune response and a higher frequency of most autoimmune diseases than men. While much of the difference between men and women is due to the effect of gonadal hormones, genetic differences play a major role in the difference between the immune response and disease frequencies in women and men. Here, we focus on the immune differences between the sexes that are not downstream of the gonadal hormones. These differences include the gene content of the sex chromosomes, the inactivation of chromosome X in women, the consequences of non-random X inactivation and escape from inactivation, and the states that are uniquely met by the immune system of women-pregnancy, birth, and breast feeding. While these female-specific states are temporary and involve gonadal hormonal changes, they may leave a long-lasting footprint on the health of women, for example, by fetal cells that remain in the mother's body for decades. We also briefly discuss the immune phenotype of congenital sex chromosomal aberrations and experimental models that enable hormonal and the non-hormonal effects of the sex chromosomes to be disentangled. The increasing human life expectancy lengthens the period during which gonadal hormones levels are reduced in both sexes. A better understanding of the non-hormonal effects of sex chromosomes thus becomes more important for improving the life quality during that period.
女性的免疫反应比男性更强,大多数自身免疫性疾病的发病率也比男性更高。虽然男性和女性之间的许多差异是由于性腺激素的作用所致,但遗传差异在女性和男性的免疫反应和疾病频率差异中起着主要作用。在这里,我们重点关注性腺激素下游之外的性别免疫差异。这些差异包括性染色体的基因含量、女性 X 染色体的失活、非随机 X 染色体失活和逃避失活的后果,以及女性特有的免疫系统所面临的状态——怀孕、分娩和哺乳。虽然这些女性特有的状态是暂时的,并且涉及性腺激素变化,但它们可能会对女性的健康留下持久的影响,例如,胎儿细胞会在母亲体内存在数十年。我们还简要讨论了先天性性染色体异常的免疫表型和实验模型,这些模型能够分离出性染色体的激素和非激素效应。人类预期寿命的延长延长了两性性腺激素水平降低的时期。因此,更好地了解性染色体的非激素效应对于改善该时期的生活质量变得更加重要。