Yong Seok-Beom, Ha Minki, Cho Sungchan
Center for Gene & Cell Therapy, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Chungcheongbuk-do 28116, Republic of Korea.
College of Pharmacy, Chungbuk National Univeristy, Cheongju 28160, Republic of Korea.
ACS Biomater Sci Eng. 2025 Jul 14;11(7):4254-4265. doi: 10.1021/acsbiomaterials.5c00738. Epub 2025 Jun 9.
Recently, mRNA/lipid nanoparticle (LNP)-based vaccines have been successfully applied to prevent infectious diseases, and several types of neoantigen-encoding mRNA cancer vaccines are currently under clinical trials. While mRNA vaccines effectively induce adaptive immune responses to antigens, mRNA vaccine-induced immunity is shortly maintained, and the longevity of the immune memory, especially improving the CD8 T cell memory potential, could be even more important. Previously, microbiome metabolites have shown T cell memory potential-augmenting effects via regulating the immunometabolism. Herein, we develop microbiome metabolite-incorporated LNPs (mmi-LNPs) and evaluate their potential to enhance T cell memory responses following mRNA vaccination. In various ionizable LNP formulations, mmi-LNPs elicited more stem cell-like memory T cells (T-SCMs) and augmented central and effector memory T cell responses, which indicates the general applicability of mmi-LNPs. Notably, butyrate-incorporated mmi-LNP exhibited the strongest effects. In conclusion, we suggest microbiome metabolite-incorporated LNP as a next-generation delivery vehicle for mRNA vaccines.
最近,基于信使核糖核酸/脂质纳米颗粒(mRNA/LNP)的疫苗已成功应用于预防传染病,目前几种编码新抗原的mRNA癌症疫苗正在进行临床试验。虽然mRNA疫苗能有效诱导对抗原的适应性免疫反应,但mRNA疫苗诱导的免疫维持时间较短,而免疫记忆的持久性,尤其是提高CD8 T细胞记忆潜能,可能更为重要。此前,微生物群代谢产物已显示出通过调节免疫代谢增强T细胞记忆潜能的作用。在此,我们开发了包含微生物群代谢产物的脂质纳米颗粒(mmi-LNP),并评估其在mRNA疫苗接种后增强T细胞记忆反应的潜力。在各种可电离的LNP配方中,mmi-LNP诱导产生了更多的干细胞样记忆T细胞(T-SCM),并增强了中枢和效应记忆T细胞反应,这表明mmi-LNP具有普遍适用性。值得注意的是,掺入丁酸盐的mmi-LNP表现出最强的效果。总之,我们建议将包含微生物群代谢产物的LNP作为mRNA疫苗的下一代递送载体。