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Rapid endo‐lysosomal escape of poly(DL‐lactide‐ <i>co</i> glycolide) nanoparticles: implications for drug and gene delivery

The FASEB Journal · 2002 · Vol. 16(10) · pp. 1217–1226
Jayanth PanyamWenzhong ZhouSwayam PrabhaSanjeeb Kumar SahooVinod Labhasetwar

Abstract

The endo-lysosomal escape of drug carriers is crucial to enhancing the efficacy of their macromolecular payload, especially the payloads that are susceptible to lysosomal degradation. Current vectors that enable the endo-lysosomal escape of macromolecules such as DNA are limited by their toxicity and by their ability to carry only limited classes of therapeutic agents. In this paper, we report the rapid (<10 min) endo-lysosomal escape of biodegradable nanoparticles (NPs) formulated from the copolymers of poly(DL-lactide-co-glycolide) (PLGA). The mechanism of rapid escape is by selective reversal of the surface charge of NPs (from anionic to cationic) in the acidic endo-lysosomal compartment, which causes the NPs to interact with the endo-lysosomal membrane and escape into the cytosol. PLGA NPs are able to deliver a variety of therapeutic agents, including macromolecules such as DNA and low molecular weight drugs such as dexamethasone, intracellularly at a slow rate, which results in a sustained therapeutic effect. PLGA has a number of advantages over other polymers used in drug and gene delivery including biodegradability, biocompatibility, and approval for human use granted by the U.S. Food and Drug Administration. Hence PLGA is well suited for sustained intracellular delivery of macromolecules.

RNA Interference and Gene DeliveryAdvanced biosensing and bioanalysis techniquesAdvanced Drug Delivery SystemsPLGADrug deliveryChemistryDrugBiocompatibilityDrug carrierMacromoleculeGene deliveryLysosomeBiophysics

MeSH terms

Polylactic Acid-Polyglycolic Acid CopolymerBiological TransportCell DivisionCell LineCells, CulturedDelayed-Action PreparationsDexamethasoneDrug CarriersEndocytosisGrowth InhibitorsHumansKineticsLysosomesMaleModels, Biological

Funding

  • American Heart Association
  • National Institutes of Health
  • U.S. Army Medical Research Acquisition Activity
Citations
1,035
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35
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98%
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References
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Proceedings of the National Academy of Sciences · 1995 · 6,198 citations
Biodegradation and biocompatibility of PLA and PLGA microspheres
Advanced Drug Delivery Reviews · 1997 · 2,576 citations
Cell-penetrating peptides
Trends in Pharmacological Sciences · 2000 · 800 citations
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