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PROBING THE MECHANISM OF COMPLEMENT-INDEPENDENT BACTERICIDAL ANTIBODIES

PROBING THE MECHANISM OF COMPLEMENT-INDEPENDENT BACTERICIDAL ANTIBODIES
补体非依赖性杀菌抗体机制的探讨
批准号:
7954592
负责人:
Jorge L. Benach
金额:
$2.23万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-02-01 至 2010-01-31

项目摘要

项目成果

Jorge L. Benach的其他基金

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中文摘要
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英文摘要
This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the Center, which is not necessarily the institution for the investigator. ABSTRACT: We have previously shown that the bactericidal action of a complement-independent antibody against Borrelia resides in the antibody variable region through use of a single chain variable fragment (scFv) (LaRocca et al. 2007. J. Immunol. In Press). Our current work focuses on the mechanism of bactericidal action utilized by this type of complement-independent antibody. We know that these antibodies act directly at the outer membrane of Borrelia and have observed a protection of the outer membrane when the Borrelia are exposed to antibody in the presence of large sugars, such as dextran. We believe that this suggests that the outer membrane is destroyed due to osmotic lysis and pore formation. With smaller sugars we have observed partial protection of the outer membrane. In other words, smaller sugars initially protect the outer membrane from lysis but eventually lose this capacity for protection. We believe that this suggests that outer membrane pores are created and increase in size over time, similar to membrane disintegration mechanisms utilized by antimicrobial peptides. We have always observed membrane blebbing in response to these antibodies and believe that this is linked to pore formation and increasing pore size. We are interested in utilizing the RVBC facility to visualize outer membrane pores caused by the antibodies in the presence of dextran. Based on osmoprotection experiments, the pore size is estimated to be between 4.4 and 12 nm in diameter but can increase in size to the extent that a sugar of molecular diameter 28 nm is needed from osmoprotection.
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