Arenas Jesús, van Dijken Harry, Kuipers Betsy, Hamstra Hendrik Jan, Tommassen Jan, van der Ley Peter
Department of Microbiology, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.
Clin Vaccine Immunol. 2010 Apr;17(4):487-95. doi: 10.1128/CVI.00423-09. Epub 2010 Jan 27.
Wild-type lipopolysaccharide (LPS) of Neisseria meningitidis normally contains six acyl chains. Penta-acylated LPS forms were generated through inactivation of the lpxL1 gene or through the expression of the Bordetella bronchiseptica pagL gene in N. meningitidis. The resulting LPS species, designated LpxL1 LPS and PagL LPS, respectively, display reduced endotoxic activity compared to wild-type LPS. Here, we determined the adjuvant potential of PagL LPS by comparison with the broadly used LpxL1 LPS. We also investigated the potential benefit for adjuvanticity of coincorporating these LPS species, together with the meningococcal opacity-associated protein OpaJ as a model antigen, in a liposomal delivery system. PagL LPS showed a higher endotoxic activity than LpxL1 LPS, and their incorporation into liposomes significantly reduced their endotoxic activity as determined by measuring the induction of interleukin-6 (IL-6) production in a murine macrophage cell line. To determine the adjuvant effect, BALB/c mice were immunized with OpaJ-containing liposomes and either free LPS or LPS coincorporated into the proteoliposomes. OpaJ-containing liposomes adjuvanted with AlPO(4) or not adjuvanted at all were included as control groups. In the appropriate dose, PagL LPS showed a superior adjuvant effect compared with LpxL1 LPS, and for both LPS types, free LPS showed a higher adjuvant effect than when coincorporated into the liposomes, as evidenced by higher titers of IgG2a and IgG2b antibodies against OpaJ(+) meningococci and higher bactericidal titers. In conclusion, PagL LPS is a better adjuvant than LpxL1 LPS, but coincorporation of either LPS into proteoliposomes did not improve their adjuvant activity.
脑膜炎奈瑟菌的野生型脂多糖(LPS)通常含有六条酰基链。通过使lpxL1基因失活或在脑膜炎奈瑟菌中表达支气管败血博德特氏菌pagL基因,可产生五酰化LPS形式。所产生的LPS种类分别命名为LpxL1 LPS和PagL LPS,与野生型LPS相比,其内毒素活性降低。在此,我们通过与广泛使用的LpxL1 LPS进行比较,确定了PagL LPS的佐剂潜力。我们还研究了在脂质体递送系统中,将这些LPS种类与作为模型抗原的脑膜炎球菌不透明相关蛋白OpaJ共同掺入对佐剂活性的潜在益处。PagL LPS显示出比LpxL1 LPS更高的内毒素活性,通过测量小鼠巨噬细胞系中白细胞介素-6(IL-6)产生的诱导来确定,将它们掺入脂质体中可显著降低其内毒素活性。为了确定佐剂效果,用含OpaJ的脂质体以及游离LPS或掺入蛋白脂质体中的LPS免疫BALB/c小鼠。含OpaJ的脂质体用磷酸铝佐剂或根本不用佐剂作为对照组。在适当剂量下,与LpxL1 LPS相比,PagL LPS显示出更好的佐剂效果,对于两种LPS类型,游离LPS显示出比掺入脂质体时更高的佐剂效果,这通过针对OpaJ(+)脑膜炎球菌的IgG2a和IgG2b抗体的更高滴度以及更高的杀菌滴度得以证明。总之,PagL LPS是比LpxL1 LPS更好的佐剂,但将任何一种LPS掺入蛋白脂质体中都不会提高它们的佐剂活性。