Literature DB >> 24511327

A quantitative recipe for engineering protein polymer nanoparticles.

S Mohd Janib1, M Pastuszka1, S Aluri1, Z Folchman-Wagner1, P-Y Hsueh1, P Shi1, H Cui2, J A Mackay1.   

Abstract

Protein polymers can assemble switchable nanostructures with emerging applications as biomaterials and nanomedicines. For example, above a critical micelle temperature (CMT) some elastin-like polypeptide (ELP) diblock copolymers assemble spherical nanoparticles, which may modulate cellular internalization and in vivo biodistribution. To achieve engineering-level control over their properties, this report explores a comprehensive library of ELP monoblock and diblock polymers. For the first time, we report that a surprisingly high core molecular weight is required for stable nanoparticle formation; furthermore, nanoparticle size depends on polymer molecular weight. A mathematical model was developed to characterize four ELP monoblock libraries and to predict the phase behavior of corresponding diblock copolymers. The CMT was almost entirely dependent on the hydrophobic core ELP, while the bulk phase transition temperature (Tt,bulk ) depends predominantly on the hydrophilic block. Nanoparticle assembly was accompanied by a conversion in secondary structure of the hydrophobic block from random coil and beta-sheets to type-2 β turns. For the first time, this report enables the rational design of ELP protein polymer nanoparticles with physico-chemico properties that will be suitable for biological applications.

Entities:  

Keywords:  Elastin-like polypeptide; block copolymer; micelles; self-assembly

Year:  2014        PMID: 24511327      PMCID: PMC3916011          DOI: 10.1039/C3PY00537B

Source DB:  PubMed          Journal:  Polym Chem        ISSN: 1759-9954            Impact factor:   5.582


  50 in total

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2.  Mechanism for the phase transition of a genetically engineered elastin model peptide (VPGIG)40 in aqueous solution.

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3.  Production and purification of a recombinant elastomeric polypeptide, G-(VPGVG)19-VPGV, from Escherichia coli.

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7.  Drug targeting using thermally responsive polymers and local hyperthermia.

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Journal:  Biopolymers       Date:  2003-12       Impact factor: 2.505

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  31 in total

1.  Molecular Targeting of Immunosuppressants Using a Bifunctional Elastin-Like Polypeptide.

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Review 2.  Controlled release from recombinant polymers.

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Journal:  J Control Release       Date:  2014-06-21       Impact factor: 9.776

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5.  Lacritin-mediated regeneration of the corneal epithelia by protein polymer nanoparticles.

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Journal:  J Mater Chem B       Date:  2014-12-14       Impact factor: 6.331

6.  A thermo-responsive protein treatment for dry eyes.

Authors:  Wan Wang; Aarti Jashnani; Suhaas R Aluri; Joshua A Gustafson; Pang-Yu Hsueh; Frances Yarber; Robert L McKown; Gordon W Laurie; Sarah F Hamm-Alvarez; J Andrew MacKay
Journal:  J Control Release       Date:  2014-12-03       Impact factor: 9.776

7.  A novel elastin-like polypeptide drug carrier for cyclosporine A improves tear flow in a mouse model of Sjögren's syndrome.

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Review 8.  Elastin-like polypeptides: Therapeutic applications for an emerging class of nanomedicines.

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9.  Engineering the Architecture of Elastin-Like Polypeptides: From Unimers to Hierarchical Self-Assembly.

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Review 10.  Recent trends in protein and peptide-based biomaterials for advanced drug delivery.

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