Cellular and molecular mechanisms linking viral infection, immune dysregulation, and the cascade of fibrotic remodeling that culminates in long-term organ dysfunction. Submissions before 30 September will receive a significant discount on the fee: https://t.co/rlqMIqCR3T.
In a Public Health Emergency, rapid access to data is critical. The living evidence map for the Bundibugyo virus (BDBV) provides an open, systematic resource to streamline global immunology research and accelerate vaccine development
https://t.co/k0SHcwf7xM
Viral infections drive lasting structural and functional changes across organs. We welcome basic, translational, and clinical research exploring virus-induced fibrosis and tissue remodeling, with a focus on mechanisms linked to chronic organ dysfunction.
https://t.co/A0REec3H6S
Data for vaccine benefit in children
"Since 1974, vaccination has averted 154 million deaths, including 146 million among children younger than 5 years of whom 101 million were infants younger than 1 year."
https://t.co/hsv0N1Ays5
The most striking benefit was for vaccination vs measles (Figure)
The childhood vaccine distortions today by executive order will further add to the marked increase in US measles cases, currently the highest in 35 years.
New deadline for manuscript submissions!!! Advances in Novel Anti-Inflammatory Approaches for Lung Fibrosis https://t.co/jVKlTnl3er #mdpiijms a través de @IJMS_MDPI
Viral Infections as Triggers of Organ Fibrosis and Chronic Tissue Remodeling.
All confirmed contributors who submit before the end of August will receive a 55% discount on their publishing fee. https://t.co/rlqMIqCR3T
New evidence strengthens the EBV–MS connection. CD4+ T cells in multiple sclerosis mainly target EBV viral particles, and these responses decline after B-cell depletion therapy. Targeting EBV-specific immunity may open new therapeutic avenues for MS. https://t.co/sM2gBG5sX5
@GeroScienceAGE@victuare It was a real pleasure working with two brilliant young researchers from our institute, Dr. Ignacio Mazzitelli (@naachi512) and Patricio Jarmoluk (@Pato_Jarmo_). Their dedication and enthusiasm made this collaboration especially rewarding. @inbirsar
RSV can infect the human nasal epithelium via the basolateral route and shows distinct subgroup infectivity and basal cell tropism | Journal of Virology https://t.co/n43ejZnMgq