Results 211 to 220 of about 3,873,112 (365)
The site frequency spectrum of dispensable genes [PDF]
The differences between DNA-sequences within a population are the basis to infer the ancestral relationship of the individuals. Within the classical infinitely many sites model, it is possible to estimate the mutation rate based on the site frequency ...
Baumdicker, Franz
core
Porous silicon nanoparticles (PSiNPs) reprogram macrophage endocytosis of manganese@albumin‐based TLR4 nanoagonists, driving TRIF‐biased TLR4 signaling, eliciting robust proinflammatory responses, and potentiating macrophage‐mediated immunotherapeutic effects against NSCLC.
Xiaomei Zhang+9 more
wiley +1 more source
This study demonstrates that cholesterol in messenger RNA‐lipid nanoparticles (mRNA‐LNPs) can be completely replaced with an immunopotentiating lipid, i.e., a synthetic analogue of the C‐type lectin receptor agonist monomycoloyl glycerol (MMG‐1), without compromising physicochemical properties, in vivo transfection efficiency, and immunogenicity of the
Abhijeet G. Lokras+19 more
wiley +1 more source
CoreDetector: a flexible and efficient program for core-genome alignment of evolutionary diverse genomes. [PDF]
Fruzangohar M+3 more
europepmc +1 more source
An emerging phylogenetic core of Archaea: phylogenies of transcription and translation machineries converge following addition of new genome sequences [PDF]
Céline Brochier‐Armanet+2 more
openalex +1 more source
Recent Applications of Mesoporous Silica Nanoparticles in Gene Therapy
The review summarizes the synthesis of mesoporous silica nanoparticles (MSNs) with modifiable surface properties, functionalization strategies, mechanism of therapeutic payload release, and current applications in gene therapy, focusing on their capabilities in the targeted delivery of therapeutic nucleic acids, CRISPR‐Cas systems, and other genetic ...
Tamanna Binte Huq+4 more
wiley +1 more source
3D‐Printed Scaffolds Promote Enhanced Spinal Organoid Formation for Use in Spinal Cord Injury
3D‐printed organoid scaffolds with microscale channels are developed to enhance spinal cord injury recovery by guiding region‐specific spinal neural progenitor cells. These scaffolds promote axonal growth, cell maturation, and neuronal network formation.
Guebum Han+8 more
wiley +1 more source