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抗腹泻产肠毒素大肠杆菌高免牛初乳产品的生物活性免疫成分

Bioactive Immune Components of Anti-Diarrheagenic Enterotoxigenic Escherichia coli Hyperimmune Bovine Colostrum Products.

作者信息

Sears Khandra T, Tennant Sharon M, Reymann Mardi K, Simon Raphael, Konstantopoulos Nicky, Blackwelder William C, Barry Eileen M, Pasetti Marcela F

机构信息

Center for Vaccine Development, University of Maryland School of Medicine, Baltimore, Maryland, USA.

Department of Pediatrics, University of Maryland School of Medicine, Baltimore, Maryland, USA.

出版信息

Clin Vaccine Immunol. 2017 Aug 4;24(8). doi: 10.1128/CVI.00186-16. Print 2017 Aug.

Abstract

Diarrhea is a common illness among travelers to resource-limited countries, the most prevalent attributable agent being enterotoxigenic (ETEC). At this time, there are no vaccines licensed specifically for the prevention of ETEC-induced traveler's diarrhea (TD), and this has propelled investigation of alternative preventive methods. Colostrum, the first milk expressed after birthing, is rich in immunoglobulins and innate immune components for protection of newborns against infectious agents. Hyperimmune bovine colostrum (HBC) produced by immunization of cows during gestation (and containing high levels of specific antibodies) is a practical and effective prophylactic tool against gastrointestinal illnesses. A commercial HBC product, Travelan, is available for prevention of ETEC-induced diarrhea. Despite its demonstrated clinical efficacy, the underlying immune components and antimicrobial activity that contribute to protection remain undefined. We investigated innate and adaptive immune components of several commercial HBC products formulated to reduce the risk of ETEC-induced diarrhea, including Travelan and IMM-124E, a newer product that has broader gastrointestinal health benefits. The immune components measured included total and ETEC-specific IgG, total IgA, cytokines, growth factors, and lactoferrin. HBC products contained high levels of IgG specific for multiple ETEC antigens, including O-polysaccharide 78 and colonization factor antigen I (CFA/I) present in the administered vaccines. Antimicrobial activity was measured using novel functional assays. HBC greatly reduced ETEC motility in soft agar and exhibited bactericidal activity in the presence of complement. We have identified immune components and antimicrobial activity potentially involved in the prevention of ETEC infection by HBC .

摘要

腹泻是前往资源有限国家的旅行者中的常见疾病,最常见的致病原是产肠毒素大肠杆菌(ETEC)。目前,尚无专门用于预防ETEC引起的旅行者腹泻(TD)的许可疫苗,这推动了对替代预防方法的研究。初乳是分娩后分泌的第一口乳汁,富含免疫球蛋白和先天免疫成分,可保护新生儿免受感染。通过在妊娠期给母牛免疫产生的超免疫牛初乳(HBC)(含有高水平的特异性抗体)是预防胃肠道疾病的实用有效预防工具。一种商业HBC产品Travelan可用于预防ETEC引起的腹泻。尽管其临床疗效已得到证实,但其有助于保护作用的潜在免疫成分和抗菌活性仍不明确。我们研究了几种为降低ETEC引起腹泻风险而配制的商业HBC产品的先天和适应性免疫成分,包括Travelan和IMM-124E,后者是一种具有更广泛胃肠道健康益处的新产品。所测量的免疫成分包括总IgG和ETEC特异性IgG、总IgA、细胞因子、生长因子和乳铁蛋白。HBC产品含有高水平的针对多种ETEC抗原的IgG,包括所接种疫苗中存在的O-多糖78和定植因子抗原I(CFA/I)。使用新型功能测定法测量抗菌活性。HBC在软琼脂中大大降低了ETEC的运动性,并在补体存在下表现出杀菌活性。我们已经确定了可能参与HBC预防ETEC感染的免疫成分和抗菌活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55d6/5583472/9f93b0d75508/zcd9990955070001.jpg

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