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Mount Sinai scientists identify three potent human antibodies against mpox, paving the way for new protective therapies

A team of researchers at Mount Sinai discovered three powerful monoclonal antibodies that target the viral protein A35 and block viral spread in laboratory tests. These antibodies also protected rodents from severe disease and fully prevented death, suggesting they could be promising drug candidates for mpox treatment.

SourceThe Mount Sinai Hospital / Mount Sinai School of Medicine·JournalCell·TypeObservational study·DateAug 26, 2025

Efficient development of drugs with fewer mice

Researchers at the University of Zurich have developed a technology to test 25 antibodies simultaneously in a single mouse, greatly reducing the number of laboratory animals required. The method uses protein fragments as barcodes for analysis, allowing for high-quality preclinical data on multiple antibody candidates.

SourceUniversity of Zurich·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMar 18, 2025

Leveraging artificial intelligence for vaccine development: A Ragon-MIT advancement in T cell epitope prediction

Researchers developed MUNIS, a deep learning tool that predicts CD8+ T cell epitopes with high accuracy, potentially accelerating vaccine development. The tool was validated using experimental data from influenza, HIV, and EBV, demonstrating its potential to streamline vaccine design.

SourceRagon Institute of MGH, MIT and Harvard·JournalNature Machine Intelligence·TypeComputational simulation/modeling·DateJan 28, 2025

Update: T cells may offer some protection in an H5N1 ‘spillover’ scenario

A new study by La Jolla Institute for Immunology researchers suggests that many people may already have immune cells on standby to combat the H5N1 virus. The study found similarities between H5N1 and seasonal influenza viruses, allowing scientists to predict cross-reactive T cell responses that could help decrease disease severity.

SourceLa Jolla Institute for Immunology·JournalmBio·TypeData/statistical analysis·DateJan 2, 2025

How protective antibodies get in malaria’s way

Researchers at Fred Hutchinson Cancer Center have made a breakthrough in understanding how protective antibodies can target malaria parasites. By analyzing the structure of these antibodies and their interaction with the parasite's protein, the team has identified a weak spot that could be targeted by vaccines to prevent severe disease.

SourceFred Hutchinson Cancer Center·JournalNature·TypeExperimental study·DateNov 20, 2024

Optimizing boosters: How COVID mRNA vaccines reshape immune memory after each dose

Researchers found that T cells can reshape their memory and maintain diversity against COVID-19 variants in response to successive mRNA vaccinations. The study revealed a shift among clonotypes, with a change from early responders to main responders after the second shot, suggesting a new dominant population of effector-memory T cells.

SourceTokyo University of Science·JournalCell Reports·TypeExperimental study·DateMar 8, 2024

How T cells combat tuberculosis

Researchers at La Jolla Institute for Immunology have identified 137 unique T cell epitopes targeted by the immune system in patients with active TB. These findings may lead to the development of new diagnostics and therapies for the disease, which affects over 1.3 million people worldwide.

SourceLa Jolla Institute for Immunology·JournalNature Communications·TypeExperimental study·DateFeb 6, 2024

T cells tackle new 'Pirola' SARS-CoV-2 variant

Researchers at La Jolla Institute for Immunology found that most T cells can still target epitopes on the new Pirola variant, suggesting people may be able to mount a response against it. The study's findings provide positive news in the fight against SARS-CoV-2, emphasizing the importance of vaccination with updated vaccines.

SourceLa Jolla Institute for Immunology·JournalCell Host & Microbe·TypeData/statistical analysis·DateDec 8, 2023

Family resemblance: How T cells could fight many coronaviruses at once

Researchers at La Jolla Institute for Immunology have found that T cells can recognize shared viral targets between multiple coronaviruses, including common cold coronaviruses and SARS-CoV-2. This cross-reactivity could be harnessed to develop vaccines that protect against multiple types of coronaviruses, including SARS-CoV-2.

SourceLa Jolla Institute for Immunology·JournalCell Reports Medicine·TypeExperimental study·DateJun 1, 2023

Researchers use ‘natural’ system to identify proteins most useful for developing an effective HIV vaccine

A Johns Hopkins Medicine-led team identified protein fragments that stimulate the immune system to recognize and attack HIV. The study's technique, called reductionist cell-free antigen processing, replicates the complex events in the human immune system, enabling the identification of immunodominant epitopes.

SourceJohns Hopkins Medicine·JournalJournal of Experimental Medicine·DateMay 30, 2023

Chinese Medical Journal article explores how bispecific antibodies could bring new hope to patients with lung cancer

Researchers from China explore the mechanisms of action and clinical data of bispecific antibodies, which have shown promise in increasing cytotoxicity against cancerous cells and enhancing immune response towards tumor clearance. Several bsAbs are being evaluated in phase I-III clinical trials for lung cancer treatment.

SourceCactus Communications·JournalChinese Medical Journal·DateMay 16, 2023

How antibody therapy impacts COVID vaccines

Research finds that individuals who received monoclonal antibodies before COVID vaccination exhibit a diverse antibody response, increasing the coverage provided by vaccines. This phenomenon, known as antibody feedback inhibition, is beneficial for diversifying immune responses to viruses.

SourceRockefeller University·JournalNature·DateDec 6, 2022

Finding the answers hidden in our antibodies

A new serological test, PepSeq, allows scientists to quickly test antibody binding against hundreds of thousands of protein targets, helping prepare for and respond to pandemics. The technology identifies specific antibodies that provide protection against infection, holding promise for developing effective vaccines and treatments.

SourceNorthern Arizona University·JournalNature Protocols·DateNov 30, 2022

Road signs for immune defense cells

A recent international study has shed light on the inner workings of the adaptive immune response, revealing how killer T cells recognize viral invaders using molecular road signs. The study highlights the crucial role of chaperones in ensuring the stability and longevity of these road signs, allowing for more effective detection and d...

SourceGoethe University Frankfurt·JournalNature Communications·TypeExperimental study·DateAug 15, 2022

Scientists identify what makes the Delta variant dangerous and explain the recent surge in COVID-19 infections

Researchers analyze delta variant's biophysical characteristics, revealing unique traits that evade neutralizing antibodies and contribute to severe symptoms. The study sheds light on why vaccinated individuals can still contract the virus and why delta variant hospitalizations are higher than other variants.

SourceUniversity of Colorado Anschutz Medical Campus·JournalJournal of Molecular Biology·DateJul 18, 2022

Gwangju Institute of Science and Technology researchers develop a tool for studying inflammatory diseases related to COVID-19

Researchers at Gwangju Institute of Science and Technology have developed a new bioinformatics pipeline, CRESSP, to investigate the mechanism underlying autoimmune diseases following SARS-CoV-2 infection. The tool identified potential epitopes responsible for COVID-related autoimmune diseases and predicted cross-reactive epitopes of di...

SourceGIST (Gwangju Institute of Science and Technology)·JournalBriefings in Bioinformatics·TypeComputational simulation/modeling·DateMay 16, 2022

SARS-CoV-2 protein targeted by immune cells also triggers response in bat Coronaviruses

Researchers at Johns Hopkins Medicine discovered a peptide on the SARS-CoV-2 spike protein that triggers an immune response in humans and is also recognized by cells of the immune system, suggesting potential for protection against future zoonotic outbreaks. The study supports the development of multivalent vaccines against a broad spe...

SourceJohns Hopkins Medicine·JournalJournal of Clinical Investigation·DateFeb 16, 2022

Long-term immune response to Sputnik-V COVID vaccine

A study published in International Journal of Molecular Sciences found that the Sputnik-V COVID vaccine elicits both robust antibody and T-cell responses. The research suggests that long-term immunity is possible, supporting the effectiveness of the vaccine against local virus variants.

SourceKazan Federal University·JournalInternational Journal of Molecular Sciences·TypeObservational study·DateOct 26, 2021

These fridge-free COVID-19 vaccines are grown in plants and bacteria

Researchers at the University of California - San Diego have developed COVID-19 vaccine candidates made from plant viruses and bacteriophages, which can be stored and shipped without refrigeration. These vaccines trigger high production of neutralizing antibodies in mice, offering a potential solution for global distribution efforts.

SourceUniversity of California - San Diego·JournalJournal of the American Chemical Society·TypeExperimental study·DateSep 7, 2021

HKUST's meta-analysis shows SARS-CoV-2 variants unlikely to affect T cell responses

A recent study by HKUST scientists analyzed data from over 850 recovered COVID-19 patients and found that most T cell epitopes targeted upon natural infection are unaffected by current SARS-CoV-2 variants. This suggests that T cell responses may be relatively robust, assuming vaccine responses mimic those of natural infection.

SourceHong Kong University of Science and Technology·JournalCell Reports Medicine·DateMay 26, 2021

Naturally occurring antibodies against prion proteins found in humans

Scientists have found that a small proportion of individuals possess high levels of antibodies targeting the normal PrP version of the prion protein. These antibodies may be beneficial in targeting pathological aggregates for degradation by phagocytic cells, potentially offering new tools for studying neurodegeneration. The discovery s...

SourceEMBO·JournalEMBO Molecular Medicine·DateAug 17, 2020