Engineering and Validation of a Peptide-Stabilized Poly(lactic-co- glycolic) Acid Nanoparticle for Targeted Delivery of a Vascular Disruptive Agent in Cancer Therapy
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作者:
Dragulska, Sylwia A.
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CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Dragulska, Sylwia A.
[1
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Poursharifi, Mina
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CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Roger Williams Univ, Dept Chem & Phys, Bristol, RI 02809 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Poursharifi, Mina
[1
,2
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Chen, Ying
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Icahn Sch Med Mt Sinai, Dept Genet & Genom Sci, New York, NY 10029 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Chen, Ying
[3
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Wlodarczyk, Marek T.
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CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Wlodarczyk, Marek T.
[1
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Santiago, Maxier Acosta
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CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Santiago, Maxier Acosta
[1
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Dottino, Peter
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机构:CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Dottino, Peter
Martignetti, John A.
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Icahn Sch Med Mt Sinai, Dept Genet & Genom Sci, New York, NY 10029 USA
Rudy Ruggles Res Inst, Danbury, CT 06810 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Martignetti, John A.
[3
,4
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Mieszawska, Aneta J.
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CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USACUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
Mieszawska, Aneta J.
[1
]
机构:
[1] CUNY, Brooklyn Coll, Dept Chem, Brooklyn, NY 11210 USA
[2] Roger Williams Univ, Dept Chem & Phys, Bristol, RI 02809 USA
[3] Icahn Sch Med Mt Sinai, Dept Genet & Genom Sci, New York, NY 10029 USA
Developing a biocompatible and biodegradable nanoparticle (NP) carrier that integrates drug-loading capability, active targeting, and imaging modality is extremely challenging. Herein, we report an NP with a core of poly(lactic-co- glycolic) acid (PLGA) chemically modified with the drug combretastatin A4 (CA4), a vascular disrupting agent (VDA) in clinical development for ovarian cancer (OvCA) therapy. The NP is stabilized with a short arginine-glycine-aspartic acid-phenylalanine x3 (RGDFFF) peptide via self-assembly of the peptide on the PLGA surface. Importantly, the use of our RGDFFF coating replaces the commonly used polyethylene glycol (PEG) polymer that itself often induces an unwanted immunogenic response. In addition, the RGD motif of the peptide is well-known to preferentially bind to alpha v beta 3 integrin that is implicated in tumor angiogenesis and is exploited as the NP's targeting component. The NP is enhanced with an optical imaging fluorophore label via chemical modification of the PLGA. The RGDFFF-CA4 NPs are synthesized using a nanoprecipitation method and are similar to 75 +/- 3.7 nm in diameter, where a peptide coating comprises a 2-3 nm outer layer. The NPs are serum stable for 72 h. In vitro studies using human umbilical cord vascular endothelial cells (HUVEC) confirmed the high uptake and biological activity of the RGDFFF-CA4 NP. NP uptake and viability reduction were demonstrated in OvCA cells grown in culture, and the NPs efficiently accumulated in tumors in a preclinical OvCA mouse model. The RGDFFF NP did not induce an inflammatory response when cultured with immune cells. Finally, the NP was efficiently taken up by patient-derived OvCA cells, suggesting a potential for future clinical applications.