9. Adenovirus Vector Induced Immune Responses Are Dependent upon Multi-Faceted Interactions with Proteins of Both the Alternative and Classical Complement Pathways In Vivo [PDF]
openalex +1 more source
The Rise of Mechanobiology for Advanced Cell Engineering and Manufacturing
With the growing demand for cell‐based therapies, efficient cellular engineering is crucial. This review calls for greater recognition of mechanobiology principles applied through advanced biomaterial designs, mechanical confinement, and highlights recent advances using micro/nanotechnologies to enhance cell manufacturing.
Huan Ting Ong+8 more
wiley +1 more source
Inhibition of the C1s Protease and the Classical Complement Pathway by 6-(4-Phenylpiperazin-1-yl)Pyridine-3-Carboximidamide and Chemical Analogs. [PDF]
Xu X+13 more
europepmc +1 more source
C1q, the recognition subcomponent of the classical pathway of complement, drives microglial activation [PDF]
Katrin Färber+6 more
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Designing the Next Generation of Biomaterials through Nanoengineering
Nanoengineering enables precise control over biomaterial interactions with living systems by tuning surface energy, defects, porosity, and crystallinity. This review highlights how these nanoscale design parameters drive advances in regenerative medicine, drug delivery, bioprinting, biosensing, and bioimaging, while outlining key translational ...
Ryan Davis Jr.+3 more
wiley +1 more source
Highly specific inhibition of C1q globular-head binding to human IgG: A novel approach to control and regulate the classical complement pathway using an engineered single chain antibody variable fragment [PDF]
Hee Hwang+3 more
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This review examines the critical role of neighboring active motifs in heterogeneous catalysts, emphasizing how their synergistic cooperativity can be rationally designed to modulate catalytic properties. The discussion centers on the modulation of electronic and geometric structures, categorizing the catalytic systems into metal‐acid (Brønsted/Lewis ...
Peng Yuan+2 more
wiley +1 more source
Toward Zero‐Excess Alkali Metal Batteries: Bridging Experimental and Computational Insights
This review explores zero‐excess alkali metal batteries, highlighting anode–electrolyte interfaces, metal nucleation, dendrite growth, and SEI formation while comparing Li, Na, and K metals. It critically examines electrolyte and separator roles, emphasizing substrate design, electrolyte modifications, interfacial engineering, and solid‐state ...
Pan He+6 more
wiley +1 more source