Interaction of 2D nanomaterial with cellular barrier: Membrane attachment and intracellular trafficking
Advanced Drug Delivery Reviews, ISSN: 0169-409X, Vol: 204, Page: 115131
2024
- 10Citations
- 8Captures
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Example: if you select the 1-year option for an article published in 2019 and a metric category shows 90%, that means that the article or review is performing better than 90% of the other articles/reviews published in that journal in 2019. If you select the 3-year option for the same article published in 2019 and the metric category shows 90%, that means that the article or review is performing better than 90% of the other articles/reviews published in that journal in 2019, 2018 and 2017.
Citation Benchmarking is provided by Scopus and SciVal and is different from the metrics context provided by PlumX Metrics.
Metrics Details
- Citations10
- Citation Indexes10
- 10
- Captures8
- Readers8
Review Description
The cell membrane serves as a barrier against the free entry of foreign substances into the cell. Limited by factors such as solubility and targeting, it is difficult for some drugs to pass through the cell membrane barrier and exert the expected therapeutic effect. Two-dimensional nanomaterial (2D NM) has the advantages of high drug loading capacity, flexible modification, and multimodal combination therapy, making them a novel drug delivery vehicle for drug membrane attachment and intracellular transport. By modulating the surface properties of nanocarriers, it is capable of carrying drugs to break through the cell membrane barrier and achieve precise treatment. In this review, we review the classification of various common 2D NMs, the primary parameters affecting their adhesion to cell membranes, and the uptake mechanisms of intracellular transport. Furthermore, we discuss the therapeutic potential of 2D NMs for several major disorders. We anticipate this review will deepen researchers' understanding of the interaction of 2D NM drug carriers with cell membrane barriers, and provide insights for the subsequent development of novel intelligent nanomaterials capable of intracellular transport.
Bibliographic Details
http://www.sciencedirect.com/science/article/pii/S0169409X23004465; http://dx.doi.org/10.1016/j.addr.2023.115131; http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=85178106448&origin=inward; http://www.ncbi.nlm.nih.gov/pubmed/37977338; https://linkinghub.elsevier.com/retrieve/pii/S0169409X23004465; https://dx.doi.org/10.1016/j.addr.2023.115131
Elsevier BV
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