4.6 Article

A comparison of acyl-moieties for noncovalent functionalization of PLGA and PEG-PLGA nanoparticles with a cell-penetrating peptide

期刊

RSC ADVANCES
卷 11, 期 57, 页码 36116-36124

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d1ra05871a

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资金

  1. Brazilian research funding agency CAPES (Coordenacao de Aperfeicoamento Pessoal de Nivel Superior) [13173/13-8]
  2. Netherlands Organization for Scientific Research (NWO) domain-Applied and Engineering Sciences [13844]

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Efficient intracellular drug delivery in nanomedicine relies heavily on inducing cellular uptake, which can be achieved through conjugation of nanoparticles with cell-penetrating peptides. Functionalizing nanoparticles with a lactoferrin-derived cell-penetrating peptide, particularly through palmitoylation, enhances cellular uptake and stability, making it a promising strategy for drug delivery.
Efficient intracellular drug delivery in nanomedicine strongly depends on ways to induce cellular uptake. Conjugation of nanoparticles (NPs) with cell-penetrating peptides (CPPs) is a known means to induce uptake via endocytosis. Here, we functionalized NPs consisting of either poly(d,l-lactide-co-glycolide) (PLGA) or polyethene glycol (PEG)-PLGA block-copolymer with a lactoferrin-derived cell-penetrating peptide (hLF). To enhance the association between the peptide and the polymer NPs, we tested a range of acyl moieties for N-terminal acylation of the peptide as a means to promote noncovalent interactions. Acyl moieties differed in chain length and number of acyl chains. Peptide-functionalized NPs were characterized for nanoparticle size, overall net charge, storage stability, and intracellular uptake. Coating particles with a palmitoylated hLF resulted in minimal precipitation after storage at -20C and homogeneous particle size (<200 nm). Palmitoyl-hLF coated NPs showed enhanced delivery in different cells in comparison to NPs lacking functionalization. Moreover, in comparison to acetyl-hLF, palmitoyl-hLF was also suited for coating and enhancing the cellular uptake of PEG-PLGA NPs.

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