A team of scientists from the University of Vermont and France has discovered the tiny protein SMIM1, which causes the rare 'Vel-negative' blood type. This breakthrough allows for fast DNA-based tests to identify Vel-negative individuals, enabling them to receive life-saving transusions.
Researchers at the Weizmann Institute of Science created a two-dimensional cell-like system on a glass chip, enabling precise observation of gene expression and protein behavior. The system allows for the simultaneous production and trapping of multiple proteins, revealing a spectrum of protein activities.
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Researchers found that B cells improve antibody molecules through a process of somatic hypermutation, increasing selection pressure on their own products. This mechanism could accelerate vaccination methods by producing optimal antibodies earlier.
Researchers found that even routine hits can impact the blood-brain barrier and lead to an immune response. The study suggests a possible vaccine or drug therapy to prevent head trauma, offering new insights into concussions and their long-term consequences.
Pediatric kidney transplant recipients with antibodies are more likely to experience kidney injury and rejection. Steroids do not prevent this antibody-mediated injury, but monitoring recipients for antibodies and customizing immunosuppressive treatments can help.
A team led by Dr. Marie-Josée Hébert discovered a new class of antibodies - anti-LG3 - which can trigger severe rejection episodes and high organ loss rates in kidney transplant patients. This breakthrough holds promise for developing new therapies to prevent or limit organ rejection.
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Researchers at Duke University Medical Center identified a defect in bladder immune memory that hampers a timely attack against bacterial infections. The study found that mast cells produce an immune-suppressing molecule, leading to a lack of antibody response and stifling immune memory.
Researchers propose using two EGFR-blocking antibodies to treat triple-negative breast cancer, which lacks common receptors for hormone-based treatments. In a study, combining two antibodies proved effective in preventing tumor growth and spread in mice.
Researchers discovered a specific B lymphocyte marker that indicates the onset of cGVHD, a devastating syndrome where the patient's tissues are attacked by transplanted immune cells. This easily measured marker could help guide new therapies to mitigate or prevent cGVHD, which affects half of all bone marrow transplant procedures.
Researchers at Helmholtz Centre for Infection Research discovered that antibodies are essential for dendritic cell maturation, a process critical to the immune response against pathogens. The study highlights the complex interplay between innate and acquired immunity, showing how antibodies facilitate communication between immune cells.
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A new study from Ohio State University found a strong link between latent herpes virus reactivation and heart disease, particularly in patients who have suffered a heart attack. The researchers detected elevated levels of inflammatory proteins and antibodies to the EBV-encoded viral protein dUTPase in these patients.
Researchers found that loneliness is associated with elevated latent herpes virus reactivation and increased inflammation-related proteins in response to acute stress. Lonelier individuals also produced more proinflammatory cytokines, such as interleukin-6 and tumor necrosis factor-alpha, which can contribute to various health conditions.
Researchers at NIH and OHSU found that an experimental Ebola vaccine elicits antibodies that protect nonhuman primates from Ebola virus infection. The study's results showed that antibodies induced by the vaccine appeared to be critical to protecting the animals, while immune cells had a minimal role.
A study has provided new clues for designing a more effective HIV vaccine by analyzing the structure of antibody-virus complexes produced in vaccine recipients. The researchers found that antibodies targeting specific regions of the virus are associated with decreased transmission of HIV.
Researchers develop small peptide that blocks antibody recognition of desmogleins, improving cell-cell adhesion and preventing skin blistering in mice. The peptide could serve as a potential treatment option for pemphigus vulgaris, a life-threatening autoimmune skin disease.
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Researchers at Scripps Research Institute have devised an inexpensive and sensitive method to mark and select cells. The technique utilizes the tight binding of two proteins that are cheaply obtainable but not found in human or other mammalian cells, enabling efficient cell sorting with minimal unwanted side effects.
Researchers found that infant gerbils nursed by females given separate vaccines developed antibodies for both illnesses, demonstrating the potential purpose of allosuckling. The study provides a framework for further studying allosuckling in the wild using traceable antibodies.
The study found a significant increase in the risk of developing eBL in young children with a distinct pattern of antibody responses to several different recombinant Pf malaria antigens. Antibodies to SE36, a vaccine candidate protein, were associated with a decreased risk of eBL.
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Researchers developed a plaque-specific antibody that clears existing β-amyloid deposits in Alzheimer's disease mice, promoting potential treatment development. The study suggests that targeting insoluble amyloid beta is critical for plaque removal without microhemorrhage side effects.
Researchers at Rensselaer Polytechnic Institute have created novel antibodies that can prevent the formation of toxic protein particles linked to diseases such as Alzheimer's and Parkinson's. These antibodies bind to 10 proteins per molecule, making them more potent inhibitors than conventional antibodies.
Scientists at Karolinska Institutet have found that IGF-1 blockers are only partially effective because they stimulate the MEK channel, allowing cancer cells to survive. Researchers propose a combination therapy using MEK inhibitors and IGF-1 blockers to overcome this issue
Intravenous immune globulin (IVIG) therapy provides anti-inflammatory and immunomodulatory benefits through its diverse antibody content, benefiting patients with autoimmune diseases and potentially expanding to Alzheimer's treatment options.
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A new study reveals that even low levels of preformed donor-specific antibodies can nearly double the risk of antibody-mediated rejection and increase kidney failure by 76%. This finding could help clinicians provide better donor-recipient matches and tailor immunosuppressive therapy.
A new approach to HIV vaccine development is underway, aiming to induce protective antibodies without increasing HIV-specific T helper cells. The project, funded by the Bill & Melinda Gates Foundation, seeks to build on earlier studies showing that certain antibodies can protect against HIV infection.
A team of scientists at Stanford University and the University of Bern have discovered a mechanism for destroying key allergy-inducing complexes using a new inhibitor called DARPin E2-79. This discovery could lead to rapid and potent interventions for acute allergic reactions, including anaphylactic shock.
A team of researchers confirms ancient protein preservation in dinosaur bone cells using antibodies that target specific proteins found in vertebrate bone cells. This finding further solidifies the case for preservation of cells and possibly DNA in ancient remains.
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Mosquitoes use alternative splicing to combine immunoglobulin domains into pathogen-binding proteins, increasing diversity and specificity. This mechanism could lead to new ways to prevent spread of mosquito-borne illnesses like malaria.
Research published in The FASEB Journal found that changes in gravity during animal development affect antibody production and white blood cell regeneration. This could have significant implications for understanding human diseases such as cancer and diabetes.
Duke researchers add anti-cancer agent bortezomib to treatment regimen for Pompe disease, improving outcomes for three infants with severe form of the disorder. The addition reverses established immune response and reduces antibodies, leading to dramatic clinical improvements.
Researchers have identified a new therapy that appears to stop inflammation in the eye nerves and spinal cord for patients with neuromyelitis optica (NMO), a debilitating central nervous system disorder. The treatment, eculizumab, was given to patients with severe symptoms, resulting in 12 symptom-free periods and two mild attacks.
Researchers found a new class of antibody in camelids that can cross the blood-brain barrier, diffusing into brain tissue to reach specific targets. This breakthrough may lead to enhanced imaging and improved drug delivery for people with brain diseases like Alzheimer's.
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A new viral outbreak in Africa has been linked to the Bas-Congo virus, a previously unknown microbe that causes deadly acute hemorrhagic fever. Genetic analysis reveals the virus is distinct from other rhabdoviruses, including those causing rabies.
Scripps Research scientists have devised a powerful new technique to discover and expand the power of large numbers of antibodies, immune system proteins that detect and destroy invaders. The method rapidly identifies antibodies with useful biological activity, enabling the creation of unusual antibodies with desired effects.
Researchers developed a mass spectrometry protein assay called PRISM that matches the sensitivity and accuracy of clinical antibody-based tests. The technique can identify proteins from blood with high accuracy and speed up development of diagnostic tests and treatments.
Researchers developed transgenic P. falciparum to study human antibody response to surface proteins. They found that antibodies targeting PfEMP1 mediate human immunity to malaria, with reduced risk of symptoms.
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Researchers will explore ways to induce protective IgA human antibodies by vaccines to prevent HIV-1 infection, and produce recombinant IgAs to be tested as therapies.
CSIRO will produce a large quantity of antibodies specific to rotavirus strains used in developing vaccines, aiding the project's goal of increasing access and effectiveness of existing commercial vaccines worldwide. The production facility will supply antibodies for five years, supporting the development of new, affordable rotavirus v...
Researchers at UNC School of Medicine used injections of non-depleting antibodies to rapidly reverse the onset of Type I diabetes in mice. The treatment maintained disease remission indefinitely without harming the immune system, with some animals remaining free of diabetes after over 400 days.
A study by Hospital for Special Surgery researchers has demonstrated that women with a specific type of antibody are at risk for adverse pregnancy outcomes. The study found that antiphospholipid antibodies (aPLs), particularly lupus anticoagulant, increase the risk of complications such as fetal death, preterm delivery, and preeclampsia.
A large-scale study of over 45,000 Danish women found a predictive association between Toxoplasma gondii infection and later attempted suicides. The risk was highest for violent attempts, with infected women being one and a half times more likely to attempt suicide.
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An international team of scientists found that asymmetric division of antibody-producing B cells speeds up the body's immune defenses by creating optimized antibodies. This process, called the 'recycling hypothesis,' allows the immune system to produce highly effective antibodies against specific pathogens.
Researchers develop new antibodies that bind to MUC1 protein on cancer cells, depositing toxins directly into diseased cells. This method has shown higher efficacy than existing treatments and may be available for more cancer varieties in the future.
A study by Queen's University researcher Troy Murphy found female birds with more colourful bills have higher antibody levels, indicating greater strength and ability to fight off invaders. The colour of a female bird's bill is strongly correlated with immunoglobulin antibodies, a component of the immune system in birds.
Researchers at CNIO have discovered a new target for developing anti-angiogenic and anti-tumoral therapies. The protein ephrinB2 was found to play a crucial role in angiogenesis and lymphoangiogenesis, processes that promote tumour growth and metastasis.
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Researchers found that T-bet and RORα proteins enforce specific classes of memory B cells, which can produce antibodies against various infections. This discovery opens the way for developing vaccines that induce long-term immunity towards desired antibody classes.
GW researchers are evaluating innovative methods to assess the immune response to vaccines with a novel Toll-like Receptor (TLR)-4 agonist adjuvant. They will use new antibody profiling techniques to determine the quality of the humoral immune response in humans.
Immunosignaturing uses random sequence arrays of peptides to trawl for antibodies to disease, producing a machine-readable image of immune activity that can be used to diagnose a broad range of ailments. The technique has been tested as a diagnostic for over 20 diseases and shows good correlation between serum and plasma samples.
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Researchers at Scripps Research Institute have developed an injectable solution that protects mice from cocaine overdose, demonstrating the therapeutic potential of a human antibody against cocaine. The treatment shows promise in reducing mortality rates and signs of overdose in both preliminary tests.
Researcher Timpka investigates how different age groups are affected by the flu, with seasonal epidemics striking hardest in children and elderly. The study also explores theories on why this is the case, including the impact of early-life infections on immunity.
Researchers are investigating ways to improve horse vaccinations to defend foals against pathogens at an early age. Preliminary data suggests that vaccinating foals as young as 3 months old may increase protection against environmental pathogens.
Researchers identified a rare immune cell's role in antibody production and 'memory' of infectious agents, crucial for vaccine development and potential treatment of immune disorders. T follicular helper cells can remember past infections, enabling rapid responses to future attacks.
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BIDMC researchers create novel antibodies that distinguish between healthy and disease-causing tau isoforms, raising the possibility of an immunization strategy for early-stage Alzheimer's diagnosis and treatment. The findings also suggest that targeting only the disease-causing isoform could prevent or slow disease progression.
A Stanford study shows a single antibody can shrink human tumors in mice by blocking a protein flag on cancer cells. The treatment achieved dramatic responses in various types of cancers, including breast, ovarian, colon, bladder, and prostate cancers.
A vaccine targeting Campylobacter in chickens could drastically reduce food-borne illness cases, saving the UK economy millions annually. The leading cause of food-borne illness, responsible for 30% of cases in the UK, is found in the gut of many animals, including chickens.
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A new diagnostic criteria for Pediatric Acute-onset Neuropsychiatric Syndrome (PANS) has been proposed, expanding on existing criteria for Pediatric Autoimmune Neuropsychiatric Disorder Associated with Streptococcus (PANDAS). A clinical trial testing an immune-based treatment is currently underway, aiming to provide appropriate care fo...
Researchers at University College London have discovered specific antibodies that block the toxic effect of Amyloid-ß on synapses, raising hopes for a treatment to combat early cognitive decline. The findings suggest targeting the secreted protein Dkk1 could offer an effective treatment to protect synapses.
A new study challenges the long-held theory that antibodies are essential for antiviral immunity. Researchers found that mice infected with the vesicular stomatitis virus (VSV) could survive even without producing antibodies, as their B cells produced a chemical that maintained innate immune cells called macrophages.
A new microfluidic device can isolate target cells much faster than existing devices, using a soft membrane with nanoscale pores to guide fluid and bring cells in contact with antibodies. This technology could be used for point-of-care diagnostics and personalized medicine applications, such as cancer diagnosis.
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A team of researchers from the University of Rochester Medical Center has developed a vaccine that can prevent MRSA infection of orthopaedic implants. The antibody targets a component of the cell wall, preventing normal bacterial cell division and formation of sequestrum, a hallmark of osteomyelitis.
Researchers have developed a new technology using bacteria naturally found in tsetse flies to release nanobodies against trypanosomes, the parasites that cause sleeping sickness. The nanobodies can bind to the parasite's surface and potentially block or destroy its development.