Results 201 to 210 of about 398,224 (286)
Biodegradable materials: Applications and advances of magnesium alloys in bone defects. [PDF]
Lu JS +5 more
europepmc +1 more source
A high‐throughput in vivo mRNA LNP screening platform is developed and employed to screen a large library of 122 mRNA LNPs in vivo for delivery to immune, stromal, and parenchymal cells, identifying promising LNP candidates. A novel small particle flow cytometry‐based protein adsorption analysis method is utilized to interrogate protein corona ...
Alex G. Hamilton +17 more
wiley +1 more source
Assessment of physicochemical alterations in 3D-printed biodegradable implants under biomimetic conditions for cranial defect repair. [PDF]
Lee E +7 more
europepmc +1 more source
Plastic Microbial Acclimation and Optimisation of Composting and Anaerobic Digestion Processes may Improve Degradation Times [PDF]
Boardman, C. P. +3 more
core
Ordered three‐dimensional anodic aluminum oxide (3D‐AAO) nanoarchitectures with longitudinal and transverse pores enable architecture‐driven metamaterials. The review maps fabrication advances, including hybrid pulse anodization, and shows how 3D‐AAO templates tailor properties across magnetism, energy, catalysis, and sensing.
Marisol Martín‐González
wiley +1 more source
Explainable random forest predictions of polyester biodegradability using high-throughput biodegradation data. [PDF]
Jacob PL +5 more
europepmc +1 more source
Helper and ionizable lipids play a crucial role in determining ApoE binding and subsequent liver tropism and LDLR‐mediated uptake. Ionizable lipids primarily govern the LDLR‐independent uptake pathway. This complementary interplay between lipid components ultimately governs LNP delivery performance and therapeutic efficacy in the liver.
Ashish Sarode +16 more
wiley +1 more source
Feasibility Study on Quantification of Biodegradable Polyester Microplastics Based on Intrinsic Fluorescence. [PDF]
Shi TC +11 more
europepmc +1 more source
Energy‐Efficient, Sustainable Cascade Glucose Electrooxidation into Glucaric Acid
This study presents a tandem system that efficiently converts glucose into glucaric acid while generating renewable electricity. By decoupling the oxidation process into two cascaded steps, the system achieves an overall 90% Faradaic efficiency and 80% conversion efficiency at ∼0.6 VRHE, significantly reducing energy consumption compared to traditional
Mingming He +15 more
wiley +1 more source

