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靶向革兰氏阴性菌糖酵解与靶向宿主细胞炎症治疗脓毒性关节炎。

Concurrent targeting of glycolysis in bacteria and host cell inflammation in septic arthritis.

机构信息

Department of Orthopaedics and Rehabilitation, School of Medicine, Yale University, New Haven, CT, USA.

Department of Orthopedic Surgery, Mayo Clinic, Rochester, MN, USA.

出版信息

EMBO Mol Med. 2022 Dec 7;14(12):e15284. doi: 10.15252/emmm.202115284. Epub 2022 Nov 10.

Abstract

Intracellular infiltration of bacteria into host cells complicates medical and surgical treatment of bacterial joint infections. Unlike soft tissue infections, septic arthritis and infection-associated inflammation destroy cartilage that does not regenerate once damaged. Herein, we show that glycolytic pathways are shared by methicillin-resistant Staphylococcus aureus (MRSA) proliferation and host inflammatory machinery in septic arthritis. MRSA readily penetrates host cells and induces proinflammatory cascades that persist after conventional antibiotic treatment. The glycolysis-targeting drug dimethyl fumarate (DMF) showed both bacteriostatic and anti-inflammatory effects by hindering the proliferation of intracellular MRSA and dampening excessive intraarticular inflammation. Combinatorial treatment with DMF and vancomycin further reduced the proliferation and re-emergence of intracellular MRSA. Combinatorial adjuvant administration of DMF with antibiotics alleviated clinical symptoms of septic arthritis by suppressing bacterial burden and curbing inflammation to protect cartilage and bone. Our results provide mechanistic insight into the regulation of glycolysis in the context of infection and host inflammation toward development of a novel therapeutic paradigm to ameliorate joint bioburden and destruction in septic arthritis.

摘要

细菌向宿主细胞内浸润,使细菌性关节感染的医学和手术治疗变得复杂。与软组织感染不同,化脓性关节炎和感染相关的炎症会破坏软骨,一旦受损就无法再生。在此,我们表明,耐甲氧西林金黄色葡萄球菌(MRSA)增殖和化脓性关节炎中的宿主炎症机制共享糖酵解途径。MRSA 很容易穿透宿主细胞,并引发持续存在于常规抗生素治疗后的促炎级联反应。靶向糖酵解的药物富马酸二甲酯(DMF)通过抑制细胞内 MRSA 的增殖和抑制过度的关节内炎症,显示出抑菌和抗炎作用。DMF 与万古霉素联合治疗进一步减少了细胞内 MRSA 的增殖和再出现。DMF 与抗生素联合辅助给药,通过抑制细菌负荷和抑制炎症来保护软骨和骨骼,从而缓解化脓性关节炎的临床症状。我们的研究结果为感染和宿主炎症背景下糖酵解的调节提供了机制见解,为改善化脓性关节炎中的关节生物负荷和破坏提供了一种新的治疗范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4926/9728052/92ceffb3d092/EMMM-14-e15284-g009.jpg

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