Maji Mithun, Ghosh Sneha, Didwania Nicky, Ali Nahid
Infectious Diseases and Immunology Division, CSIR-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Jadavpur, Kolkata 700032, India.
ACS Omega. 2024 Jun 25;9(27):29175-29185. doi: 10.1021/acsomega.3c07814. eCollection 2024 Jul 9.
Liposomes carrying differential charges have been extensively studied for their role in stimulating dendritic cells (DCs), major antigen-presenting cells, known to serve as a pivotal bridge between innate and adaptive immunity. However, the impact of the differentially charged liposomes on activating DCs remains to be understood. In this study, we have investigated the impact of 1,2-distearoyl--glycero-3-phosphocholine (DSPC)-based neutral, anionic, and cationic liposomes on the uptake, immunostimulation, and intracellular fate in mouse bone-marrow-derived DCs. We observed that liposomes could induce phenotypic maturation of DCs by inducing the expression of costimulatory molecules (CD40 and CD86) and production of cytokines tumor necrosis factor-α, interleukin-12,and nitric oxide. Interestingly, admixing monophosphoryl lipid A with charged liposomes further enhances the expression of the costimulatory molecules and production of cytokines, with preferential activation by positively charged liposomes. Fluorometric analysis using a pH-sensitive dye and flow-cytometry-based pathway inhibition assays revealed that cationic liposomes were taken up more efficiently by DCs through endocytosis and transported to neutral compartments for further processing, whereas anionic and neutral liposomes were inclined to accumulate in acidic compartments. These findings therefore endorse the use of cationic DSPC liposomes as a preferred option for vaccine delivery vehicles over neutral and negatively charged liposomes, particularly for the preferential activation of DCs.
携带不同电荷的脂质体因其在刺激树突状细胞(DCs)中的作用而受到广泛研究。树突状细胞是主要的抗原呈递细胞,已知在先天免疫和适应性免疫之间起关键桥梁作用。然而,不同电荷的脂质体对激活DCs的影响仍有待了解。在本研究中,我们研究了基于1,2-二硬脂酰-sn-甘油-3-磷酸胆碱(DSPC)的中性、阴离子和阳离子脂质体对小鼠骨髓来源的DCs的摄取、免疫刺激和细胞内命运的影响。我们观察到脂质体可通过诱导共刺激分子(CD40和CD86)的表达以及细胞因子肿瘤坏死因子-α、白细胞介素-12和一氧化氮的产生来诱导DCs的表型成熟。有趣的是,将单磷酰脂质A与带电脂质体混合可进一步增强共刺激分子的表达和细胞因子的产生,其中阳离子脂质体具有优先激活作用。使用pH敏感染料的荧光分析和基于流式细胞术的途径抑制试验表明,阳离子脂质体通过内吞作用被DCs更有效地摄取,并转运至中性区室进行进一步处理,而阴离子和中性脂质体则倾向于在酸性区室中积累。因此,这些发现支持使用阳离子DSPC脂质体作为疫苗递送载体的首选,优于中性和带负电荷的脂质体,特别是用于DCs的优先激活。