Results 171 to 180 of about 649,762 (351)
This study characterizes a camelid antibody (B10) with potent neutralizing activity against SARS‐CoV‐2 Wildtype and Omicron variants. Through binding assays, epitope mapping, pseudovirus neutralization, and AI‐driven modeling, the antibody is shown to target conserved RBD regions in a closed Spike conformation.
Katja Hanack +13 more
wiley +1 more source
An Assessment of Covid-19 Pandemic Impact on Indonesian Tourism Sector
Muhammad Eko Atmojo +1 more
openalex +2 more sources
A review of Cameroonian medicinal plants with potentials for the management of the COVID-19 pandemic [PDF]
Evariste Fongnzossie Fedoung +23 more
openalex +1 more source
Using the convolutional neural network model VDLIN, Co7 is identified as a promising therapeutic candidate. Co7 demonstrates distinct advantages over MCB by effectively balancing anti‐inflammatory and immune‐stimulatory functions, making it a potential novel approach for immune modulation.
Xuefei Guo +6 more
wiley +1 more source
This study presents an engineered human interferon‐lambda (hIFN‐λ) as an intranasal prophylactic against respiratory viruses. By combining AI‐guided backbone redesign and glycoengineering, the authors developed a thermostable, protease‐resistant, and scalable variant with improved mucosal penetration.
Jeongwon Yun +12 more
wiley +1 more source
Trajectories of adolescent perceived stress and symptoms of depression and anxiety during the COVID-19 pandemic [PDF]
Amanda W. G. van Loon +6 more
openalex +1 more source
By simply conjugating thrombin's active‐site inhibitor, dabigatran, with an exosite inhibitor, aptamer HD1, the resulting EXosite‐ACTive site (EXACT) inhibitors show two orders of magnitude higher potency and selectivity via synergistic binding, while maintaining the aptamer's antidote‐reversible trait, yielding a potential substitute for the animal ...
Haixiang Yu +11 more
wiley +1 more source
Single‐Cell Insights Into Macrophage Subtypes in Pulmonary Infections
This review highlights the dynamic plasticity of macrophages during pulmonary infections and proposes an integrative framework defining six functional subtypes: Inflam‐Ms, Hub‐Ms, Reg‐Ms, Prolif‐Ms, Memory‐Ms, and Senesc‐Ms. Single‐cell omics delineate their distinct roles in homeostasis and infection, refining our understanding of macrophage ...
Zhaoheng Lin +3 more
wiley +1 more source

