Knowledge Centre, WNS Global Services, Gurugram, India.
Haleon (Formerly GSK Consumer Healthcare), Route de L'Etraz 2, Case Postale 1279, 1260, Nyon 1, Switzerland.
Curr Rheumatol Rep. 2023 Dec;25(12):307-326. doi: 10.1007/s11926-023-01108-7. Epub 2023 Sep 1.
This narrative review article comprehensively explains the pathophysiology of osteoarthritis (OA) pain perception, how the gut microbiota is correlated with it, possible molecular pathways involved in probiotics-mediated OA pain reduction, limitations in the current research approaches, and future perspectives.
The initiation and progression of OA, including the development of chronic pain, is intricately associated with activation of the innate immune system and subsequent inflammatory responses. Trauma, lifestyle (e.g., obesity and metabolic disease), and chronic antibiotic treatment can disrupt commensal homeostasis of the human microbiome, thereby affecting intestinal integrity and promoting leakage of bacterial endotoxins and metabolites such as lipopolysaccharides (LPS) into circulation. Increased level of LPS is associated with knee osteophyte severity and joint pain. Both preclinical and clinical studies strongly suggest that probiotics may benefit patients with OA pain through positive gut microbiota modulation and attenuating low-grade inflammation via multiple pathways. Patent data also suggests increased interest in the development of new innovations that involve probiotic use for reducing OA and joint pain. Recent data suggest that probiotics are attracting more and more attention for OA pain management. The advancement of knowledge in this area may pave the way for developing different probiotic strains that can be used to support joint health, improve treatment outcomes in OA, and reduce the huge impact of the disease on healthcare systems worldwide.
本文全面阐述了骨关节炎(OA)疼痛感知的病理生理学,肠道微生物群与之相关的方式,益生菌介导 OA 疼痛减轻中涉及的可能分子途径,当前研究方法的局限性以及未来展望。
OA 的发生和进展,包括慢性疼痛的发展,与固有免疫系统的激活和随后的炎症反应密切相关。创伤、生活方式(如肥胖和代谢性疾病)和慢性抗生素治疗会破坏人体微生物组的共生平衡,从而影响肠道完整性并促进细菌内毒素和代谢物(如脂多糖[LPS])漏入循环。LPS 水平升高与膝关节骨赘严重程度和关节疼痛有关。临床前和临床研究均强烈表明,益生菌可能通过积极调节肠道微生物群和通过多种途径减轻低度炎症而有益于 OA 疼痛患者。专利数据还表明,人们对开发涉及益生菌使用以减轻 OA 和关节疼痛的新创新的兴趣日益增加。最近的数据表明,益生菌在 OA 疼痛管理方面越来越受到关注。该领域知识的进步可能为开发不同的益生菌菌株铺平道路,这些菌株可用于支持关节健康,改善 OA 治疗效果,并减轻该疾病对全球医疗保健系统的巨大影响。