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利什曼原虫 CpG DNA 纳米囊泡:一种针对内脏利什曼病的有前途的预防性方法。

Leishmanial CpG DNA nanovesicles: A propitious prophylactic approach against visceral leishmaniasis.

机构信息

Department of Biosciences, Integral University, Kursi Road, Lucknow, Uttar Pradesh 226026, India.

Division of Parasitology, CSIR-Central Drug Research Institute, CSIR-Central Drug Research Institute, B.S. 10/1, Sector-10, Jankipuram Extension, Lucknow, Uttar Pradesh 226031, India.

出版信息

Int Immunopharmacol. 2021 Jan;90:107181. doi: 10.1016/j.intimp.2020.107181. Epub 2020 Nov 25.

DOI:10.1016/j.intimp.2020.107181
PMID:33249044
Abstract

Unmethylated CpG motifs with phosphothioate backbone trigger TLR9 to elicit innate immune response characterized by the production of Th1 cytokines. The use of CpG DNA as an adjuvant has established its role in potentiating the humoral and cell mediated vaccine specific immune response. However, none of the synthetic oligodeoxynucleotides (ODNs) know and used till date are associated with the parasite itself. Our group identified a novel CG rich sequence of 14 base pairs from Leishmania donovani genome (Ld CpG ODN) and established it as a TLR9 agonist. The present study was designed to ascertain the adjuvanticity of Ld CpG ODN with soluble leishmanial antigen in experimental model of L. donovani. During the study Schizophyllan (SPG), a fungal polymer was used for encapsulating Ld CpG ODN for efficient endosomal delivery. The synthesized nanovehicles were of nearly 100 nm and localized within endosomes as confirmed by confocal microscopy. Immunization studies displayed the superior ability of synthesized nanovehicles co-administered with parasite antigen in augmenting innate immune response in comparison to ODN, nanoparticles or soluble antigen alone. The response included generation of ROS, NO and iNOS expression followed by proinflammatory cytokine milieu with reduced parasitic load within liver, spleen and bone marrow. These immune-tailored particles in combination with parasitic antigens elicited significant generation of cell mediated response owing to the presence of high levels of CD8 T-cells and lymphocyte proliferation. Moreover, vaccination regime with synthesized adjuvant also activated humoral immunity by escalating the levels of IgG2 followed by reduced levels of anti-leishmanial IgG and IgG1 antibodies. The findings support the efficacy of Ld CpG ODN as a potential adjuvant against visceral leishmaniasis.

摘要

未甲基化的 CpG 基序带有硫代磷酸酯骨架,可触发 TLR9 引发先天免疫反应,其特征是产生 Th1 细胞因子。CpG DNA 作为佐剂的使用确立了其增强体液和细胞介导的疫苗特异性免疫反应的作用。然而,到目前为止,使用的所有合成寡脱氧核苷酸(ODN)都与寄生虫本身无关。我们的研究小组从利什曼原虫基因组中鉴定出一个新的 14 个碱基对的 CG 丰富序列(Ld CpG ODN),并将其确立为 TLR9 激动剂。本研究旨在确定 Ld CpG ODN 与可溶性利什曼原虫抗原在利什曼原虫实验模型中的佐剂活性。在研究中,使用真菌聚合物 Schizophyllan (SPG) 包封 Ld CpG ODN 以实现有效的内体递送。合成的纳米载体的粒径接近 100nm,并通过共聚焦显微镜证实定位于内体中。免疫研究显示,与 ODN、纳米颗粒或可溶性抗原单独使用相比,合成的纳米载体与寄生虫抗原共同给药具有增强先天免疫反应的卓越能力。该反应包括生成 ROS、NO 和 iNOS 表达,随后是促炎细胞因子环境,导致肝脏、脾脏和骨髓中的寄生虫载量减少。这些免疫定制的颗粒与寄生虫抗原结合,由于高水平的 CD8 T 细胞和淋巴细胞增殖,引起显著的细胞介导的反应。此外,合成佐剂的疫苗接种方案还通过增加 IgG2 的水平并降低抗利什曼原虫 IgG 和 IgG1 抗体的水平来激活体液免疫。这些发现支持 Ld CpG ODN 作为一种有效的内脏利什曼病潜在佐剂的功效。

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