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  • Scalable method to produce biodegradable nanoparticles that rapidly penetrate human mucus.

Scalable method to produce biodegradable nanoparticles that rapidly penetrate human mucus.

Journal of controlled release : official journal of the Controlled Release Society (2013-06-12)
Qingguo Xu, Nicholas J Boylan, Shutian Cai, Bolong Miao, Himatkumar Patel, Justin Hanes
ABSTRACT

Mucus typically traps and rapidly removes foreign particles from the airways, gastrointestinal tract, nasopharynx, female reproductive tract and the surface of the eye. Nanoparticles capable of rapid penetration through mucus can potentially avoid rapid clearance, and open significant opportunities for controlled drug delivery at mucosal surfaces. Here, we report an industrially scalable emulsification method to produce biodegradable mucus-penetrating particles (MPP). The emulsification of diblock copolymers of poly(lactic-co-glycolic acid) and polyethylene glycol (PLGA-PEG) using low molecular weight (MW) emulsifiers forms dense brush PEG coatings on nanoparticles that allow rapid nanoparticle penetration through fresh undiluted human mucus. In comparison, conventional high MW emulsifiers, such as polyvinyl alcohol (PVA), interrupts the PEG coating on nanoparticles, resulting in their immobilization in mucus owing to adhesive interactions with mucus mesh elements. PLGA-PEG nanoparticles with a wide range of PEG MW (1, 2, 5, and 10 kDa), prepared by the emulsification method using low MW emulsifiers, all rapidly penetrated mucus. A range of drugs, from hydrophobic small molecules to hydrophilic large biologics, can be efficiently loaded into biodegradable MPP using the method described. This readily scalable method should facilitate the production of MPP products for mucosal drug delivery, as well as potentially longer-circulating particles following intravenous administration.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Mowiol® 20-98, Mw ~125,000
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Resomer® RG 504 H, Poly(D,L-lactide-co-glycolide), acid terminated, lactide:glycolide 50:50, Mw 38,000-54,000
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Poly(vinyl alcohol), SAJ first grade, degree of polymerization 500
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Poly(vinyl alcohol), average Mw 31,000-50,000, 87-89% hydrolyzed
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Poly(vinyl alcohol), Fully hydrolyzed
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Poly(vinyl alcohol), 87-90% hydrolyzed, average mol wt 30,000-70,000
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Mowiol® 4-88, Mw ~31,000
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Mowiol® 8-88, Mw ~67,000
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Mowiol® 4-98, Mw ~27,000
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Poly(vinyl alcohol), average Mw 13,000-23,000, 98% hydrolyzed
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Poly(vinyl alcohol), average Mw 130,000, 99+% hydrolyzed
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Mowiol® 10-98, Mw ~61,000
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Poly(vinyl alcohol), Mw 31,000-50,000, 98-99% hydrolyzed
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Poly(vinyl alcohol), average Mw 146,000-186,000, 87-89% hydrolyzed
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Poly(vinyl alcohol), Mw 85,000-124,000, 99+% hydrolyzed
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Poly(vinyl alcohol), Mw 89,000-98,000, 99+% hydrolyzed
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Poly(vinyl alcohol), Mw 150,000 (average), 99+% hydrolyzed
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Poly(vinyl alcohol), average Mw 85,000-124,000, 87-89% hydrolyzed
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Poly(vinyl alcohol), Mw 8,000-10,000, 80% hydrolyzed
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Poly(vinyl alcohol), Mw 13,000-23,000, 87-89% hydrolyzed
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Resomer® RG 505, Poly(D,L-lactide-co-glycolide), ester terminated, Mw 54,000-69,000
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Resomer® RG 502, Poly(D,L-Lactide-co-Glycolide), lactide:glycolide 50:50, ester terminated, Mw 7,000-17,000
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Resomer® RG 752 H, Poly(D,L-lactide-co-glycolide), acid terminated, lactide:glycolide 75:25, Mw 4,000-15,000
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Resomer® RG 653 H, Poly(D,L-lactide-co-glycolide), acid terminated, Mw 24,000-38,000
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Resomer® RG 502 H, Poly(D,L-lactide-co-glycolide), acid terminated, viscosity 0.16-0.24 dL/g 
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Resomer® RG 503 H, Poly(D,L-lactide-co-glycolide), acid terminated, lactide:glycolide 50:50, Mw 24,000-38,000
Pricing and availability is not currently available.
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Resomer® RG 756 S, Poly(D,L-lactide-co-glycolide), ester terminated, lactide:glycolide 75:25, Mw 76,000-115,000
Pricing and availability is not currently available.
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Poly(D,L-lactide-co-glycolide), lactide:glycolide (50:50), mol wt 30,000-60,000
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Poly(D,L-lactide-co-glycolide), lactide:glycolide (75:25), mol wt 66,000-107,000
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