THE REGULATION OF PINOCYTOSIS IN MOUSE MACROPHAGES [PDF]
Zanvil A. Cohn, Eileen E. Parks
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Engineering the Future of Restorative Clinical Peripheral Nerve Surgery
What if damaged nerves could regenerate more effectively? This review unveils cutting‐edge strategies to restore nerve function, from biomaterial scaffolds and bioactive molecules to living engineered tissues. By accelerating axonal regrowth, preserving Schwann cells, and enhancing connectivity, these approaches are reshaping nerve repair—offering new ...
Justin C. Burrell+5 more
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Induced pluripotent stem cell-derived mesenchymal stem cells (iMSCs) inhibit M1 macrophage polarization and reduce alveolar bone loss associated with periodontitis. [PDF]
Chen L+10 more
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Macrophage Function in Infectious Disease with Inbred Rabbits [PDF]
Max B. Lurie, Arthur M. Dannenberg
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A) SLM generates biomimetic bone scaffolds with consistent porosity but varying TPMS‐Gyroid unit cell designs (TG15, TG20, TG25, TG30). B) By enhancing the expression of ITGB1, TPMS‐Gyroid scaffolds can facilitate osteogenic differentiation in BMSCs and promote M2 polarization in macrophages.
Jing Wang+9 more
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Macrophage-derived exosomes in cancer: a double-edged sword with therapeutic potential. [PDF]
Liu L+14 more
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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
The YAP/TEAD4 transcriptional complex in intestinal macrophages promotes M2 polarization and alleviates DSS-induced colitis via the regulation of C/EBPβ. [PDF]
Wang S+5 more
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Growth of Mycobacterium lepraemurium in Cultures of Mouse Peritoneal Macrophages [PDF]
Y. T. Chang, R N Andersen, Z. Vaituzis
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