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靶向细胞外DNABII蛋白或不可分型流感嗜血杆菌(NTHI)IV型菌毛的单克隆抗体协同作用,可破坏两属生物膜。

Monoclonal antibodies that target extracellular DNABII proteins or the type IV pilus of nontypeable (NTHI) worked additively to disrupt 2-genera biofilms.

作者信息

Jurcisek Joseph A, Hofer Llwyatt K, Goodman Steven D, Bakaletz Lauren O

机构信息

Center for Microbial Pathogenesis, Abigail Wexner Research Institute at Nationwide Children's Hospital, Columbus, OH, 43205, USA.

Department of Pediatrics, The Ohio State University College of Medicine, Columbus, OH, 43210, USA.

出版信息

Biofilm. 2022 Dec 5;4:100096. doi: 10.1016/j.bioflm.2022.100096. eCollection 2022 Dec.

Abstract

The biofilm state is the preferred lifestyle of bacteria in nature. Within a biofilm, the resident bacteria are protected from environmental stresses, antibiotics and other antimicrobials, including those due to multiple immune effectors of their host during conditions of disease. Thereby, biofilms contribute significantly to pathogenicity, recalcitrance to clearance and chronicity/recurrence of bacterial diseases, including diseases of the respiratory tract. In the absence of highly effective, biofilm-targeted therapeutics, antibiotics are commonly prescribed to attempt to treat these diseases, however, in light of the canonical resistance of biofilm-resident bacteria to antibiotic-mediated killing, this ineffectual practice often fails to resolve the diseased condition and contributes significantly to the global threat of rising antimicrobial resistance. Nontypeable is a common respiratory tract disease co-pathogen, often present in partnership with other airway pathogens. Herein we aspired to determine whether either of two monoclonal antibodies we developed, one specific for NTHI [directed against the majority subunit (PilA) of the type IV pilus (T4P) of NTHI] and the other able to act agnostically on all bacteria tested to date (directed against a structural protein of the biofilm matrix, a DNABII protein), were able to disrupt 2-genera biofilms wherein NTHI co-partnered with another respiratory tract pathogen. These monoclonals were tested singly as well as when within an antibody cocktail. The monoclonal directed against the NTHI antigen PilA was only effective on single species NTHI biofilms and not on single species biofilms formed by other unrelated species. However, when NTHI co-partnered with any of 5 respiratory tract pathogens tested here (, ), this exclusively NTHI-directed monoclonal was able to disrupt these 2-genera biofilms. Conversely, the monoclonal antibody directed against protective epitopes of a DNABII protein, significantly disrupted all single species and 2-genera biofilms, which reflected the universal presence of this structural protein in all tested biofilm matrices. However, greatest release of both pathogens from a 2-genera biofilm was uniformly achieved by incubation with a 1:1 cocktail of both monoclonals. These data support the use of an approach wherein patients with respiratory tract disease could be treated with a therapeutic monoclonal antibody cocktail to release NTHI and its common co-pathogens from the protective biofilm to be killed by either traditional antibiotics and/or host immune effectors.

摘要

生物膜状态是细菌在自然界中首选的生存方式。在生物膜内,定居细菌可免受环境压力、抗生素及其他抗菌物质的影响,包括在疾病状态下宿主的多种免疫效应物所产生的影响。因此,生物膜对致病性、清除顽固性以及细菌性疾病(包括呼吸道疾病)的慢性/复发有显著影响。在缺乏高效的、针对生物膜的治疗方法的情况下,通常会使用抗生素来试图治疗这些疾病,然而,鉴于生物膜内细菌对抗生素介导的杀伤具有典型抗性,这种无效的做法往往无法解决疾病状况,且对日益严重的抗菌药物耐药性这一全球威胁有显著影响。不可分型流感嗜血杆菌是一种常见的呼吸道疾病共病原体,常与其他气道病原体共同存在。在此,我们旨在确定我们研发的两种单克隆抗体中的任何一种,一种特异性针对不可分型流感嗜血杆菌[针对不可分型流感嗜血杆菌IV型菌毛(T4P)的主要亚基(PilA)],另一种能够对迄今为止测试的所有细菌无差别起作用(针对生物膜基质的一种结构蛋白,一种DNABII蛋白),是否能够破坏不可分型流感嗜血杆菌与另一种呼吸道病原体共同形成的双菌生物膜。这些单克隆抗体单独以及在抗体混合物中进行了测试。针对不可分型流感嗜血杆菌抗原PilA的单克隆抗体仅对单一物种的不可分型流感嗜血杆菌生物膜有效,而对其他不相关物种形成的单一物种生物膜无效。然而,当不可分型流感嗜血杆菌与这里测试的5种呼吸道病原体中的任何一种共同存在时(……),这种仅针对不可分型流感嗜血杆菌的单克隆抗体能够破坏这些双菌生物膜。相反,针对DNABII蛋白保护性表位的单克隆抗体显著破坏了所有单一物种和双菌生物膜,这反映了这种结构蛋白在所有测试生物膜基质中的普遍存在。然而,通过与两种单克隆抗体的1:1混合物孵育,能一致地实现两种病原体从双菌生物膜中最大程度的释放。这些数据支持采用一种方法,即呼吸道疾病患者可以用治疗性单克隆抗体混合物进行治疗,以将不可分型流感嗜血杆菌及其常见的共病原体从保护性生物膜中释放出来,从而被传统抗生素和/或宿主免疫效应物杀死。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f48b/9747592/573c366b3725/gr1.jpg

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