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源自Pgm和pPCP1菌株的活菌制剂的保护作用及安全性评估

Protection and Safety Evaluation of Live Constructions Derived from the Pgm and pPCP1 Strain.

作者信息

Wang Xiuran, Singh Amit K, Sun Wei

机构信息

Department of Immunology and Microbial Disease, Albany Medical College, Albany, NY 12208, USA.

出版信息

Vaccines (Basel). 2020 Feb 21;8(1):95. doi: 10.3390/vaccines8010095.

Abstract

Based on a live attenuated KIM10(pCD1Ap) strain (Pgm, pPCP1), we attempted to engineer its lipid A species to achieve improvement of immunogenicity and safety. A mutant strain designated as YPS19(pCD1Ap), mainly synthesizing the hexa-acylated lipid A, and another mutant strain designated as YPS20(pCD1Ap), synthesizing 1-dephosphalated hexa-acylated lipid A (detoxified lipid A), presented relatively low virulence in comparison to KIM10(pCD1Ap) by intramuscular (i.m.) or subcutaneous (s.c.) administration. The i.m. administration with either the KIM10(pCD1Ap) or YPS19(pCD1Ap) strain afforded significant protection against bubonic and pneumonic plague compared to the s.c. administration, while administration with completely attenuated YPS20(pCD1Ap) strain failed to afford significant protection. Antibody analysis showed that i.m. administration induced balanced Th1 and Th2 responses but s.c. administration stimulated Th2-biased responses. Safety evaluation showed that YPS19(pCD1Ap) was relatively safer than its parent KIM10(pCD1Ap) in Hfe mice manifesting iron overload in tissues, which also did not impair its protection. Therefore, the immune activity of hexa-acylated lipid A can be harnessed for rationally designing bacteria-derived vaccines.

摘要

基于减毒活KIM10(pCD1Ap)菌株(Pgm、pPCP1),我们试图改造其脂多糖A成分,以提高免疫原性和安全性。一种命名为YPS19(pCD1Ap)的突变菌株主要合成六酰化脂多糖A,另一种命名为YPS20(pCD1Ap)的突变菌株合成1-去磷酸化六酰化脂多糖A(解毒脂多糖A),与KIM10(pCD1Ap)相比,通过肌肉注射(i.m.)或皮下注射(s.c.)给药时,它们的毒力相对较低。与皮下注射相比,肌肉注射KIM10(pCD1Ap)或YPS19(pCD1Ap)菌株可提供针对腺鼠疫和肺鼠疫的显著保护,而完全减毒的YPS20(pCD1Ap)菌株给药则未能提供显著保护。抗体分析表明,肌肉注射诱导了平衡的Th1和Th2反应,但皮下注射刺激了以Th2为主的反应。安全性评估表明,YPS19(pCD1Ap)在表现出组织铁过载的Hfe小鼠中比其亲本KIM10(pCD1Ap)相对更安全,这也不影响其保护作用。因此,六酰化脂多糖A的免疫活性可用于合理设计细菌衍生疫苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45a1/7157699/0b811c1aefae/vaccines-08-00095-g001.jpg

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