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1.
Methods Mol Biol ; 2742: 37-45, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38165613

RESUMO

Bacterial outer membrane vesicles (OMVs) are spherical membrane constructs shed by gram-negative bacteria. OMVs produced by the Lyme disease pathogen Borrelia burgdorferi have been identified to contain such virulence factors as OspA, OspB, OspC, and genetic material. However, the function and possible pathogenicity of borrelial OMVs are still undetermined. Therefore, further research on borrelial OMVs is required, and for that a standard method for OMV purification is necessary. Here we describe a successful and reproducible purification of borrelial outer membrane vesicles using concentration, filtration, and ultracentrifugation steps.


Assuntos
Grupo Borrelia Burgdorferi , Borrelia burgdorferi , Doença de Lyme , Humanos , Antígenos de Bactérias/genética , Proteínas da Membrana Bacteriana Externa/genética , Doença de Lyme/microbiologia , Vacinas Bacterianas , Antígenos de Superfície/genética
2.
Methods Mol Biol ; 2742: 123-129, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38165620

RESUMO

Preparation of mammalian cells for a Borrelia burgdorferi infection can be cumbersome especially if investigating possible cell entry processes. The initial steps of infection or entry into cells by a pathogen often involve attachment to the cell surface and plasma membrane changes. To topologically investigate with great resolution and detail these interactions of the pathogen and the mammalian cell, helium ion microscopy (HIM) can be employed. Here we describe a protocol used to define a specific multiplicity of infection (MOI) of Borrelia burgdorferi on a human chondrosarcoma cell line (SW1353) so that fine detail structures on the mammalian cell can be observed and quantified by HIM.


Assuntos
Borrelia burgdorferi , Borrelia , Doença de Lyme , Animais , Humanos , Hélio , Microscopia , Mamíferos
3.
Microorganisms ; 10(2)2022 Jan 19.
Artigo em Inglês | MEDLINE | ID: mdl-35208666

RESUMO

Like many bacterial species, Borrelia burgdorferi, the pleomorphic bacterium that causes Lyme borreliosis, produces outer membrane vesicles (OMVs). Borrelial OMVs (BbOMVs) have been identified as containing virulence factors, such as outer surface proteins (Osps) A, B, and C, as well as DNA. However, the pathogenicity of BbOMVs in disease development is still unclear. In this study, we characterized purified BbOMVs by analyzing their size and immunolabeling for known antigenic markers: OspA, OspC, p39, and peptidoglycan. In addition, BbOMVs were cocultured with human non-immune cells for cytotoxicity analysis. The results demonstrated that, on average, the vesicles were small, ranging between 11 and 108 nm in diameter. In addition, both OspA and OspC, as well as Lyme arthritis markers p39 and peptidoglycan, were detected from BbOMVs. Furthermore, BbOMVs were cocultured with non-immune cells, which did not result in cell death. Combined, these results suggested that BbOMVs could participate in the induction of infection by functioning as a decoy for the host immune system. Furthermore, BbOMVs might serve as a means for persistent antigens to remain in the host for prolonged periods of time.

4.
Front Microbiol ; 12: 711291, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34712208

RESUMO

Lyme borreliosis is a multisystemic disease caused by the pleomorphic bacteria of the Borrelia burgdorferi sensu lato complex. The exact mechanisms for the infection to progress into a prolonged sequelae of the disease are currently unknown, although immune evasion and persistence of the bacteria in the host are thought to be major contributors. The current study investigated B. burgdorferi infection processes in two human cell lines, both non-immune and non-phagocytic, to further understand the mechanisms of infection of this bacterium. By utilizing light, confocal, helium ion, and transmission electron microscopy, borrelial infection of chondrosarcoma (SW1353) and dermal fibroblast (BJ) cells were examined from an early 30-min time point to a late 9-days post-infection. Host cell invasion, viability of both the host and B. burgdorferi, as well as, co-localization with lysosomes and the presence of different borrelial pleomorphic forms were analyzed. The results demonstrated differences of infection between the cell lines starting from early entry as B. burgdorferi invaded BJ cells in coiled forms with less pronounced host cell extensions, whereas in SW1353 cells, micropodial interactions with spirochetes were always seen. Moreover, infection of BJ cells increased in a dose dependent manner throughout the examined 9 days, while the percentage of infection, although dose dependent, decreased in SW1353 cells after reaching a peak at 48 h. Furthermore, blebs, round body and damaged B. burgdorferi forms, were mostly observed from the infected SW1353 cells, while spirochetes dominated in BJ cells. Both infected host cell lines grew and remained viable after 9 day post-infection. Although damaged forms were noticed in both cell lines, co-localization with lysosomes was low in both cell lines, especially in BJ cells. The invasion of non-phagocytic cells and the lack of cytopathic effects onto the host cells by B. burgdorferi indicated one mechanism of immune evasion for the bacteria. The differences in attachment, pleomorphic form expressions, and the lack of lysosomal involvement between the infected host cells likely explain the ability of a bacterium to adapt to different environments, as well as, a strategy for persistence inside a host.

5.
J Infect Dis ; 219(9): 1418-1429, 2019 04 16.
Artigo em Inglês | MEDLINE | ID: mdl-30346568

RESUMO

BACKGROUND: Viral infection is implicated in development of autoimmunity. Parvovirus B19 (B19V) nonstructural protein, NS1, a helicase, covalently modifies self double-stranded deoxyribonucleic acid (dsDNA) and induces apoptosis. This study tested whether resulting apoptotic bodies (ApoBods) containing virally modified dsDNA could induce autoimmunity in an animal model. METHODS: BALB/c mice were inoculated with (1) pristane-induced, (2) B19V NS1-induced, or (3) staurosporine-induced ApoBods. Serum was tested for dsDNA autoantibodies by Crithidia luciliae staining and enzyme-linked immunosorbent assay. Brain, heart, liver, and kidney pathology was examined. Deposition of self-antigens in glomeruli was examined by staining with antibodies to dsDNA, histones H1 and H4, and TATA-binding protein. RESULTS: The B19V NS1-induced ApoBod inoculation induced dsDNA autoantibodies in a dose-dependent fashion. Histopathological features of immune-mediated organ damage were evident in pristane-induced and NS1-induced ApoBod groups; severity scores were higher in these groups than in staurosporine-treated groups. Tissue damage was dependent on NS1-induced ApoBod dose. Nucleosomal antigens were deposited in target tissue from pristane-induced and NS1-induced ApoBod inoculated groups, but not in the staurosporine-induced ApoBod inoculated group. CONCLUSIONS: This study demonstrated proof of principle in an animal model that virally modified dsDNA in apoptotic bodies could break tolerance to self dsDNA and induce dsDNA autoantibodies and end-organ damage.


Assuntos
Anticorpos Antinucleares/sangue , DNA/imunologia , Vesículas Extracelulares/imunologia , Proteínas não Estruturais Virais/metabolismo , Animais , Anticorpos Antinucleares/metabolismo , Apoptose/efeitos dos fármacos , Autoimunidade , Encéfalo/patologia , Inibidores Enzimáticos/farmacologia , Feminino , Glomerulonefrite/imunologia , Glomerulonefrite/patologia , Imunossupressores/farmacologia , Glomérulos Renais/metabolismo , Glomérulos Renais/patologia , Fígado/patologia , Camundongos , Miocárdio/patologia , Parvovirus B19 Humano , Estaurosporina/farmacologia , Terpenos/farmacologia
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