作为血吸虫病疫苗临床试验潜在读数的功能性酶分析。

IF 6.5 1区 医学 Q1 IMMUNOLOGY
Desalegn W Kifle, Mumtaz Y Balkhi, Yasuko Ono, Jenn Davis, Naoko Doi, Aryandra Arya, Jiho Kim, Aravindan Kalyanasundaram, Sourav Nandy, Njariharinjakamampionona Rakotozandrindrainy, Bart Staker, Justin Craig, Raphaël Rakotozandrindrainy, Birkneh T Tadesse, Florian Marks, Lisa Jackson, Darrick Carter, Sean A Gray, Afzal A Siddiqui
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引用次数: 0

摘要

目前估计有2亿人感染血吸虫病,另有8亿人居住在78个流行国家的高传播风险地区。在本报告中,我们描述了一种基于血吸虫病疫苗SchistoShield®的核心钙蛋白酶抗原(Sm-p80)的功能性酶分析。采用荧光合成底物对核心Sm-p80抗原(B7)的44 kDa可溶性变体进行酶活性评估。我们测量了sm -p80特异性抗体对B7酶活性的抑制作用,这些抗体来自啮齿类动物、非人灵长类动物和人类临床试验参与者的临床前试验。B7酶活性遵循Michaelis-Menten-like动力学行为。免疫小鼠、非人灵长类动物和人产生的sm -p80特异性抗体对B7活性的抑制具有统计学意义。这一定量血清学分析可能对评估非洲血吸虫盾®疫苗在人体试验中的有效性有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A functional enzymatic assay as potential readout for a clinical trial of a schistosomiasis vaccine.

An estimated 200 million people are currently infected with schistosomiasis and an additional 800 million reside in high transmission-risk areas in 78 endemic countries. In this report we describe a functional enzymatic assay based on the core calpain antigen (Sm-p80) of the schistosomiasis vaccine, SchistoShield®. A 44 kDa soluble variant of the core Sm-p80 antigen (B7), was assessed for its enzymatic activity using a fluorescent synthetic substrate. Inhibition of the B7 enzymatic activity by Sm-p80-specific antibodies obtained from pre-clinical trials in rodents, non-human primates as well as from participants of the human clinical trials was measured. The B7 enzyme activity followed a Michaelis-Menten-like kinetic behavior. Statistically significant inhibition of the B7 activity was observed by Sm-p80-specific antibodies produced by immunized mice, non-human primates and humans. This quantitative serological assay could be of value in assessing the effectiveness of the SchistoShield® vaccine in human trials in Africa.

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来源期刊
NPJ Vaccines
NPJ Vaccines Immunology and Microbiology-Immunology
CiteScore
11.90
自引率
4.30%
发文量
146
审稿时长
11 weeks
期刊介绍: Online-only and open access, npj Vaccines is dedicated to highlighting the most important scientific advances in vaccine research and development.
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