Literature DB >> 18078986

Efficient intracellular delivery of functional proteins using cationic polymer core/shell nanoparticles.

Ashlynn L Z Lee1, Yong Wang, Wen-Hui Ye, Ho Sup Yoon, Sui Yung Chan, Yi-Yan Yang.   

Abstract

Cationic core/shell nanoparticles self-assembled from biodegradable, cationic and amphiphilic copolymer poly{N-methyldietheneamine sebacate)-co-[(cholesteryl oxocarbonylamido ethyl) methyl bis(ethylene) ammonium bromide] sebacate}, P(MDS-co-CES), were fabricated and employed to deliver lectin A-chain, an anticancer glycoprotein. Lectin A-chain was efficiently bound onto the surfaces of the nanoparticles at high mass ratios of nanoparticles to lectin A-chain. The nanoparticle/lectin A-chain complexes had an average size of approximately 150 nm with zeta potential of about +30 mV at the mass ratio of 50 or above while the BioPorter/lectin A-chain complexes had a larger particle size and relatively lower zeta potential (150 nm vs. 455 nm; +30 mV vs. +20 mV). Therefore, the cellular uptake of nanoparticle/lectin A-chain complexes was much greater than that of BioPorter/lectin A-chain complexes. The results obtained from cytotoxicity tests show that lectin A-chain delivered by the nanoparticles was significantly more toxic against MDA-MB-231, HeLa, HepG2 and 4T1 cell lines when compared to BioPorter, and IC50 of lectin A-chain delivered by the nanoparticles was 0.2, 0.5, 10 and 50 mg/l, respectively, while that of lectin A-chain delivered by BioPorter was higher than 100 mg/l in all cell lines tested. These nano-sized particles may provide an efficient approach for intracellular delivery of biologically active proteins.

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Year:  2008        PMID: 18078986     DOI: 10.1016/j.biomaterials.2007.11.021

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  10 in total

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Review 4.  Nanoparticle PEGylation for imaging and therapy.

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5.  Cationic polyfluorenes for intracellular delivery of proteins.

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7.  Reactive Self-Assembly of Polymers and Proteins to Reversibly Silence a Killer Protein.

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8.  Polycation-telodendrimer nanocomplexes for intracellular protein delivery.

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Journal:  Colloids Surf B Biointerfaces       Date:  2017-12-12       Impact factor: 5.268

9.  Utilizing Inverse Emulsion Polymerization To Generate Responsive Nanogels for Cytosolic Protein Delivery.

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10.  Quantitative analysis of receptor-mediated uptake and pro-apoptotic activity of mistletoe lectin-1 by high content imaging.

Authors:  N Beztsinna; M B C de Matos; J Walther; C Heyder; E Hildebrandt; G Leneweit; E Mastrobattista; R J Kok
Journal:  Sci Rep       Date:  2018-02-09       Impact factor: 4.379

  10 in total

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