Silva João Guilherme Lino da, Gonçalves Ana Alice Maia, Oliveira Liliam Teixeira, Garcia Giani Martins, Batista Maurício Azevedo, Mendonça Ludmila Zanandreis de, Viana Kelvinson Fernandes, Sant'Ana Rita de Cássia Oliveira, Melo Júnior Otoni Alves de Oliveira, Silveira-Lemos Denise, Dutra Walderez Ornelas, Martins-Filho Olindo Assis, Galdino Alexsandro Sobreira, de Moura Sandra Aparecida Lima, Mosqueira Vanessa Carla Furtado, Giunchetti Rodolfo Cordeiro
Laboratory of Biology of Cell Interactions, Department of Morphology, Federal University of Minas Gerais (UFMG), Belo Horizonte 31270-901, Brazil.
Nucleus for Research in Biological Sciences (NUPEB), Federal University of Ouro Preto, Ouro Preto 35400-000, Brazil.
Vaccines (Basel). 2023 Jul 31;11(8):1309. doi: 10.3390/vaccines11081309.
Recent studies suggest that the association of antigens in microparticles increases the anti- vaccine immunogenicity. This study aims to investigate the in situ effect of the adjuvant performance consisting of chitosan-coated poly(,-lactic) acid submicrometric particles (SMP) and analyze the inflammatory profile and toxicity. Two formulations were selected, SMP, containing poly(,-lactide) (PLA) 1% / and chitosan 1% /; and SMP, containing PLA 5% / and chitosan 5% /. After a single dose of the unloaded SMP or SMP in mice, the SMPs promoted cell recruitment without tissue damage. In addition, besides the myeloperoxidase (MPO) activity having demonstrated similar results among the analyzed groups, a progressive reduction in the levels of N-acetyl--glucosaminidase (NAG) until 72 h was observed for SMPs. While IL-6 levels were similar among all the analyzed groups along the kinetics, only the SMPs groups had detectable levels of TNF-α. Additionally, the antigen was encapsulated in SMPs (SMPAg and SMPAg), and mice were vaccinated with three doses. The immunogenicity analysis by flow cytometry demonstrated a reduction in NK (CD3CD49) cells in all the SMPs groups, in addition to impairment in the T cells subsets (CD3CD4) and CD3CD8) and B cells (CD19) of the SMP group. The resulting data demonstrate that the chitosan-coated SMP formulations stimulate the early events of an innate immune response, suggesting their ability to increase the immunogenicity of co-administered antigens.
近期研究表明,微粒中抗原的结合可增强抗疫苗免疫原性。本研究旨在调查由壳聚糖包被的聚(L-乳酸)亚微米颗粒(SMP)组成的佐剂性能的原位效应,并分析炎症特征和毒性。选择了两种制剂,SMP,含有1%/的聚(L-丙交酯)(PLA)和1%/的壳聚糖;以及SMP,含有5%/的PLA和5%/的壳聚糖。在小鼠单次注射未负载的SMP或SMP后,SMP促进了细胞募集且无组织损伤。此外,除了在分析组中髓过氧化物酶(MPO)活性显示出相似结果外,观察到SMP在72小时内N-乙酰-β-氨基葡萄糖苷酶(NAG)水平逐渐降低。虽然在整个动力学过程中所有分析组的IL-6水平相似,但只有SMP组有可检测到的TNF-α水平。此外,将抗原封装在SMP中(SMPAg和SMPAg),并对小鼠进行三剂疫苗接种。通过流式细胞术进行的免疫原性分析表明,所有SMP组中自然杀伤(CD3-CD49)细胞减少,此外SMP组的T细胞亚群(CD3+CD4+)、CD3+CD8+)和B细胞(CD19+)也受到损害。所得数据表明,壳聚糖包被的SMP制剂刺激了先天免疫反应的早期事件,表明它们有能力增强共同给药抗原的免疫原性。