Search bioRxivSearch

Biology subjects

Brandao, P. E.

Publications and source records attributed to Brandao, P. E..

2 recordsLinked to original sources

Resource optimization in COVID-19 diagnosis

AbtsractThe emergence and rapid dissemination worldwide of a novel Coronavirus (SARS-CoV-2) results in decrease of swabs availability for clinical samples collection, as well as, reagents for RT-qPCR diagnostic kits considered a confirmatory test for COVID-19 infection. This scenario, showed the requirement of improve de diagnostic capacity, so the aim of this study were to verify the possibility of reducing the reaction volume of RT-qPCR and to test cotton swabs as alternative for sample collection. RT-qPCR volumes and RNA sample concentration were optimized without affecting the sensitivity of assays, using both probe-based and intercalation dyes methods. Although rayon swabs showed better performance, cotton swabs could be used as alternative type for clinical sample collection. COVID-19 laboratory diagnosis is important to isolate and restrict the dissemination of virus, so seek for alternatives to decrease the coast of assays improve the control of disease.

molecular biology

Intracerebral transfection of anti-rabies virus antibodies is an effective therapy for rabies

Rabies is a zoonotic neurological disease with 100% lethality. Some of the rare human patients who survived after multiple drug treatment have inherited severe sequelae. The objective of this study was to investigate the action of the transfection of antibodies against rabies in the central nervous system of mice as target therapy for rabies.\n\nAuthor summaryThe present study showed that after 48 h of RABV inoculation, mice injected by the intracerebral route with anti-RABV F(ab)2 complexed with Bioporter(R) Protein Delivery Reagent (Genlantis) as a transfection agent, showing a morbidity/mortality rate of 30% with a minimum incubation period of seven days, while in the control group a significantly higher (p<0.0198) 90% morbidity/mortality was reached in thirteen days after a maximum 5-day incubation period, suggesting that the transfection of anti-RABV antibodies into the brain might prevent or delay RABV dissemination in an early stage of rabies infection. For the first time, a single compound was able to inhibit replication of the virus in the nervous system with high efficiency. This result can provide important results for the planning of protocols to prevent the fatal outcome of the disease in advanced stages. New studies focusing on the optimization of intracellular antibody delivery may be one of the main bases for more effective anti-rabies therapy.

molecular biology