Endocytosis of Nanomedicines
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Summary
This review classifies various mechanisms of endocytosis available to nanomedicines including phagocytosis and pinocytosis through clathrin-dependent and clathrin-independent pathways and describes the current experimental tools to study endocytosis of nanomedicines.
- Type
- review
- Published
- 2010-03-10
- Cited by
- 2,075
- References
- 117
- Access
- Open access
- OpenAlex
- https://openalex.org/W2003110090
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33849082
Keywords
Endocytosis, Pinocytosis, Nanomedicine, Biopharmaceutical, Clathrin
References
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- Mechanism for Amyloid Precursor-like Protein 2 Enhancement of Major Histocompatibility Complex Class I Molecule Degradation*
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- Temporally resolved interactions between antigen-stimulated IgE receptors and Lyn kinase on living cells
- Recycling of Golgi-resident Glycosyltransferases through the ER Reveals a Novel Pathway and Provides an Explanation for Nocodazole-induced Golgi Scattering
- Endothelial Caveolae Have the Molecular Transport Machinery for Vesicle Budding, Docking, and Fusion Including VAMP, NSF, SNAP, Annexins, and GTPases (*)
- Live dynamic imaging of caveolae pumping targeted antibody rapidly and specifically across endothelium in the lung
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- Nanomedicines for Back of the Eye Drug Delivery, Gene Delivery, and Imaging
- Cell surface receptor targeted biomimetic apatite nanocrystals for cancer therapy.
- Inhibition of hypoxia-induced proliferation of pulmonary arterial smooth muscle cells by a mTOR siRNA-loaded cyclodextrin nanovector.
- Enhancing endosomal escape for nanoparticle mediated siRNA delivery.
- Identification of multiple cellular uptake pathways of polystyrene nanoparticles and factors affecting the uptake: relevance for drug delivery systems.
- Targeting of gastrointestinal tract for amended delivery of protein/peptide therapeutics: strategies and industrial perspectives.
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- Intracellular transport of nanocarriers across the intestinal epithelium.
- Apo E-Functionalization of Solid Lipid Nanoparticles Enhances Brain Drug Delivery: Uptake Mechanism and Transport Pathways.
- Mathematical Modeling and Experimental Validation of Nanoemulsion-Based Drug Transport Across Cellular Barriers
- Mesoporous silica nanoparticles in injectable hydrogels: factors influencing cellular uptake and viability.
- Suppression of human arthritis synovial fibroblasts inflammation using dexamethasone-carbon nanotubes via increasing caveolin-dependent endocytosis and recovering mitochondrial membrane potential
- Dynamics of dual-fluorescent polymersomes with durable integrity in living cancer cells and zebrafish embryos.
- Smartly Engineered PEGylated Di-Block Nanopolymeric Micelles: Duo Delivery of Isoniazid and Rifampicin Against Mycobacterium tuberculosis
- Disparate effects of PEG or albumin based surface modification on the uptake of nano- and micro-particles.
- The pervasiveness of macropinocytosis in oncological malignancies
- In vitro treatment of congenital disorder of glycosylation type Ia using PLGA nanoparticles loaded with GDP‑Man.
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