School of Pharmacy and Biomolecular Sciences, RCSI University of Medicine and Health Sciences, D02 YN77 Dublin, Ireland.
Jiangsu Key Laboratory of Translational Research and Therapy for Neuro-Psychiatric-Disorders, Department of Pharmacology, College of Pharmaceutical Sciences, Soochow University, Suzhou 215123, China.
Biomolecules. 2024 Sep 20;14(9):1185. doi: 10.3390/biom14091185.
A wide array of biological abnormalities in psychotic illness appear to reflect non-cerebral involvement. This review first outlines the evidence for such a whole-body concept of schizophrenia pathobiology, focusing particularly on cardiovascular disease, metabolic syndrome and diabetes, immunity and inflammation, cancer, and the gut-brain axis. It then considers the roles of miRNAs in general and of miRNA-143 in particular as they relate to the epidemiology, pathobiology, and treatment of schizophrenia. This is followed by notable evidence that miRNA-143 is also implicated in each of these domains of cardiovascular disease, metabolic syndrome and diabetes, immunity and inflammation, cancer, and the gut-brain axis. Thus, miRNA-143 is an exemplar of what may be a class of molecules that play a role across the multiple domains of bodily dysfunction that appear to characterize a whole-body perspective of illness in schizophrenia. Importantly, the existence of such an exemplary molecule across these multiple domains implies a coordinated rather than stochastic basis. One candidate process would be a pleiotropic effect of genetic risk for schizophrenia across the whole body.
精神疾病中存在广泛的生物学异常,这些异常似乎反映了非中枢神经系统的参与。本综述首先概述了全身性精神分裂症病理生物学概念的证据,特别关注心血管疾病、代谢综合征和糖尿病、免疫和炎症、癌症以及肠道-大脑轴。然后,它考虑了 miRNAs 的一般作用以及 miRNA-143 的特别作用,因为它们与精神分裂症的流行病学、病理生物学和治疗有关。接下来,有显著证据表明,miRNA-143 也与心血管疾病、代谢综合征和糖尿病、免疫和炎症、癌症以及肠道-大脑轴的这些领域中的每一个领域有关。因此,miRNA-143 是一类分子的范例,这些分子可能在精神分裂症中全身性疾病观点所描述的多个身体功能障碍领域中发挥作用。重要的是,这样一个范例分子在这些多个领域中的存在意味着一种协调的而非随机的基础。一个候选过程可能是精神分裂症的遗传风险在整个身体中产生的多效性效应。