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1.
Cell Rep Med ; 5(9): 101702, 2024 Sep 17.
Artigo em Inglês | MEDLINE | ID: mdl-39216479

RESUMO

The development of broadly neutralizing antibody (bnAb)-based therapeutic HIV-1 vaccines and cure concepts depends on monitoring bnAb plasma activity in people with HIV (PWH) on suppressive antiretroviral therapy (ART). To enable this, analytical strategies must be defined to reliably distinguish antibody-based neutralization from drug inhibition. Here, we explore strategies that either utilize drug-resistant viruses or remove drugs from plasma. We develop ART-DEX (ART dissociation and size exclusion), an approach which quantitatively separates drugs from plasma proteins following pH-triggered release allowing accurate definition of antibody-based neutralization. We demonstrate that ART-DEX, alone or combined with ART-resistant viruses, provides a highly effective and scalable means of assessing antibody neutralization during ART. Implementation of ART-DEX in standard neutralization protocols should be considered to enhance the analytical capabilities of studies evaluating bnAb therapeutics and therapeutic vaccines, furthering the development of advanced ART and HIV-1 cure strategies.


Assuntos
Vacinas contra a AIDS , Anticorpos Neutralizantes , Anticorpos Anti-HIV , Infecções por HIV , HIV-1 , Humanos , HIV-1/imunologia , HIV-1/efeitos dos fármacos , Infecções por HIV/tratamento farmacológico , Infecções por HIV/imunologia , Infecções por HIV/virologia , Infecções por HIV/sangue , Anticorpos Anti-HIV/imunologia , Anticorpos Anti-HIV/sangue , Anticorpos Neutralizantes/imunologia , Anticorpos Neutralizantes/sangue , Vacinas contra a AIDS/imunologia , Vacinas contra a AIDS/uso terapêutico , Antirretrovirais/uso terapêutico , Fármacos Anti-HIV/uso terapêutico , Fármacos Anti-HIV/farmacologia , Anticorpos Amplamente Neutralizantes/imunologia , Anticorpos Amplamente Neutralizantes/uso terapêutico , Testes de Neutralização/métodos
2.
ACS Synth Biol ; 13(8): 2376-2390, 2024 Aug 16.
Artigo em Inglês | MEDLINE | ID: mdl-39115381

RESUMO

Inflammatory bowel disease (IBD) is characterized by chronic intestinal inflammation with no cure and limited treatment options that often have systemic side effects. In this study, we developed a target-specific system to potentially treat IBD by engineering the probiotic bacterium Escherichia coli Nissle 1917 (EcN). Our modular system comprises three components: a transcription factor-based sensor (NorR) capable of detecting the inflammation biomarker nitric oxide (NO), a type 1 hemolysin secretion system, and a therapeutic cargo consisting of a library of humanized anti-TNFα nanobodies. Despite a reduction in sensitivity, our system demonstrated a concentration-dependent response to NO, successfully secreting functional nanobodies with binding affinities comparable to the commonly used drug Adalimumab, as confirmed by enzyme-linked immunosorbent assay and in vitro assays. This newly validated nanobody library expands EcN therapeutic capabilities. The adopted secretion system, also characterized for the first time in EcN, can be further adapted as a platform for screening and purifying proteins of interest. Additionally, we provided a mathematical framework to assess critical parameters in engineering probiotic systems, including the production and diffusion of relevant molecules, bacterial colonization rates, and particle interactions. This integrated approach expands the synthetic biology toolbox for EcN-based therapies, providing novel parts, circuits, and a model for tunable responses at inflammatory hotspots.


Assuntos
Escherichia coli , Doenças Inflamatórias Intestinais , Probióticos , Escherichia coli/genética , Escherichia coli/metabolismo , Humanos , Doenças Inflamatórias Intestinais/terapia , Óxido Nítrico/metabolismo , Fator de Necrose Tumoral alfa/metabolismo , Anticorpos de Domínio Único/genética , Adalimumab/genética , Inflamação/metabolismo
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