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用于免疫防御创伤性脑损伤的疫苗。

Vaccines for immunological defense against traumatic brain injury.

作者信息

Lintecum Kelly, Thumsi Abhirami, Dunn Kara, Druschel Lindsey, Chimene Sierra, Prieto David Flores, Simmons Amberlyn, Mantri Shivani, Esrafili Arezoo, Swaminathan Srivatsan J, Trivedi Mytreyi, Manjre Shreya, Willingham Crystal, Kizeev Gabriele, Davila Alondra, Inamdar Sahil, Mangal Joslyn L, Suresh Abhirami P, Kasthuri Niveda M, Jaggarapu Madan Mohan Chandra Sekhar, Appel Nicole, Khodaei Taravat, Ng Nathan D, Sundem Alison, Pathak Sanmoy, Bjorklund George, Balmer Timothy, Newbern Jason, Capadona Jeffrey, Stabenfeldt Sarah E, Acharya Abhinav P

出版信息

bioRxiv. 2024 Dec 5:2024.12.02.626331. doi: 10.1101/2024.12.02.626331.

Abstract

UNLABELLED

Traumatic brain injury (TBI) and subsequent neurodegeneration is partially driven by chronic inflammation both locally and systemically. Yet, current clinical intervention strategies do not mitigate inflammation sequalae necessitating the development of innovative approaches to reduce inflammation and minimize deleterious effects of TBI. Herein, a subcutaneous formulation based on polymer of alpha-ketoglutarate (paKG) delivering glycolytic inhibitor PFK15 (PFKFB3 inhibitor, a rate limiting step in glycolysis), alpha-ketoglutarate (to fuel Krebs cycle) and peptide antigen from myelin proteolipid protein (PLP139-151) was utilized as the prophylactic immunosuppressive formulation in a mouse model of TBI. the paKG(PFK15+PLP) vaccine formulation stimulated proliferation of immunosuppressive regulatory T cells and induced generation of T helper-2 cells. When given subcutaneously in the periphery to two weeks prior to mice sustaining a TBI, the active vaccine formulation increased frequency of immunosuppressive macrophages and dendritic cells in the periphery and the brain at day 7 post- TBI and by 28 days post-TBI enhanced PLP-specific immunosuppressive cells infiltrated the brain. While immunohistology measurements of neuroinflammation were not altered 28 days post-TBI, the vaccine formulation improved motor function and enhanced autophagy mediated genes in a spatial manner in the brain. Overall, these data suggest that the TBI vaccine formulation successfully induced an anti-inflammatory profile and decreased TBI-associated inflammation.

TEASER

In this study, a vaccine formulation was generated to develop central nervous specific immunosuppressive responses for TBI.

摘要

未标记

创伤性脑损伤(TBI)及随后的神经退行性变部分由局部和全身的慢性炎症驱动。然而,目前的临床干预策略并不能减轻炎症后遗症,因此需要开发创新方法来减轻炎症并将TBI的有害影响降至最低。在此,基于α-酮戊二酸聚合物(paKG)的皮下制剂被用于递送糖酵解抑制剂PFK15(PFKFB3抑制剂,糖酵解的限速步骤)、α-酮戊二酸(为三羧酸循环提供燃料)和来自髓磷脂蛋白脂蛋白(PLP139 - 151)的肽抗原,作为TBI小鼠模型中的预防性免疫抑制制剂。paKG(PFK15 + PLP)疫苗制剂刺激了免疫抑制调节性T细胞的增殖并诱导了辅助性T2细胞的产生。在小鼠遭受TBI前两周外周皮下给予该制剂时,活性疫苗制剂在TBI后第7天增加了外周和大脑中免疫抑制性巨噬细胞和树突状细胞的频率,并且到TBI后28天增强了浸润到大脑中的PLP特异性免疫抑制细胞。虽然TBI后28天神经炎症的免疫组织学测量没有改变,但疫苗制剂改善了运动功能,并以空间方式增强了大脑中自噬介导的基因。总体而言,这些数据表明TBI疫苗制剂成功诱导了抗炎状态并减少了与TBI相关的炎症。

抢先看

在本研究中,生成了一种疫苗制剂以针对TBI产生中枢神经系统特异性免疫抑制反应。

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