Literature DB >> 18247565

Synthesis and conformational evaluation of a novel gene delivery vector for human mesenchymal stem cells.

Anita Saraf1, Michael C Hacker, Balaji Sitharaman, K Jane Grande-Allen, Michael A Barry, Antonios G Mikos.   

Abstract

We have synthesized a novel gene delivery vector by covalently combining branched polyethylenimine (bPEI) and hyaluronic acid (HA) with the aim of improving transfection of bPEI into human mesenchymal stem cells (hMSCs) while maintaining cell viability. Because of the opposite charges on bPEI and HA, the bPEI-HA vector forms a zwitterionic polymer capable of inter- and intramolecular interactions. We have characterized the hydrodynamic radius of bPEI-HA and bPEI-HA/DNA complexes at ambient and physiological temperatures, as well as at a range of salt concentrations using light scattering, and investigated the effect of the size of transfecting complexes on gene delivery. We found that by increasing the salt concentration from 150 to 1000 mM of NaCl, the mean hydrodynamic radius (R(h)) of bPEI-HA increases from 2.0 +/- 1.1 to 366.0 +/- 149.0 nm. However, increasing the salt concentration decreases the mean R(h) of bPEI-HA/DNA complexes from 595.0 +/- 44.6 to 106.0 +/- 19.2 nm at 25 degrees C and from 767.0 +/- 137.2 to 74.0 +/- 23.0 nm at 37 degrees C. hMSCs transfected with smaller complexes showed a significant increase in transfection from 3.8 +/- 1.5% to 19.1 +/- 4.4%. Similarly, bPEI-HA performed significantly better than bPEI in terms of cell viability (86.0 +/- 6.7% with bPEI-HA versus 7.0 +/- 2.8% with bPEI, 24 h post exposure at the highest concentration of 500 mg/mL) and maximum transfection efficiencies (12.0 +/- 4.2% with bPEI/DNA complexes and 33.6 +/- 13.9% with bPEI-HA/DNA complexes). Thus, modifying bPEI by covalent conjugation with HA improves its performance as a gene delivery vector in hMSCs. This presents a promising approach to altering hMSCs for tissue engineering and other applications.

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Year:  2008        PMID: 18247565     DOI: 10.1021/bm701146f

Source DB:  PubMed          Journal:  Biomacromolecules        ISSN: 1525-7797            Impact factor:   6.988


  16 in total

1.  Environmental parameters influence non-viral transfection of human mesenchymal stem cells for tissue engineering applications.

Authors:  William J King; Nicholas A Kouris; Siyoung Choi; Brenda M Ogle; William L Murphy
Journal:  Cell Tissue Res       Date:  2012-01-26       Impact factor: 5.249

2.  Controlled release of anti-inflammatory siRNA from biodegradable polymeric microparticles intended for intra-articular delivery to the temporomandibular joint.

Authors:  Paschalia M Mountziaris; David C Sing; Sue Anne Chew; Stephanie N Tzouanas; E Dennis Lehman; F Kurtis Kasper; Antonios G Mikos
Journal:  Pharm Res       Date:  2010-12-24       Impact factor: 4.200

3.  Osteochondral tissue regeneration through polymeric delivery of DNA encoding for the SOX trio and RUNX2.

Authors:  Clark J Needham; Sarita R Shah; Rebecca L Dahlin; Lucas A Kinard; Johnny Lam; Brendan M Watson; Steven Lu; F Kurtis Kasper; Antonios G Mikos
Journal:  Acta Biomater       Date:  2014-05-20       Impact factor: 8.947

Review 4.  Building bridges: leveraging interdisciplinary collaborations in the development of biomaterials to meet clinical needs.

Authors:  Eliza L S Fong; Brendan M Watson; F Kurtis Kasper; Antonios G Mikos
Journal:  Adv Mater       Date:  2012-07-23       Impact factor: 30.849

5.  Modulation of polyplex release from biodegradable microparticles through poly(ethylenimine) modification and varying loading concentration.

Authors:  Clark J Needham; Sarita R Shah; Paschalia M Mountziaris; F Kurtis Kasper; Antonios G Mikos
Journal:  Pharm Res       Date:  2013-07-25       Impact factor: 4.200

6.  Altering amine basicities in biodegradable branched polycationic polymers for nonviral gene delivery.

Authors:  Sue Anne Chew; Michael C Hacker; Anita Saraf; Robert M Raphael; F Kurtis Kasper; Antonios G Mikos
Journal:  Biomacromolecules       Date:  2010-03-08       Impact factor: 6.988

7.  Engineering a polymeric gene delivery vector based on poly(ethylenimine) and hyaluronic acid.

Authors:  Clark J Needham; Austin K Williams; Sue Anne Chew; F Kurtis Kasper; Antonios G Mikos
Journal:  Biomacromolecules       Date:  2012-04-11       Impact factor: 6.988

8.  Regulated non-viral gene delivery from coaxial electrospun fiber mesh scaffolds.

Authors:  Anita Saraf; L Scott Baggett; Robert M Raphael; F Kurtis Kasper; Antonios G Mikos
Journal:  J Control Release       Date:  2009-12-16       Impact factor: 9.776

9.  2007 AIChE Alpha Chi Sigma Award: From Material to Tissue: Biomaterial Development, Scaffold Fabrication, and Tissue Engineering.

Authors:  James D Kretlow; Antonios G Mikos
Journal:  AIChE J       Date:  2008-10-29       Impact factor: 3.993

10.  A simple and efficient method for transfecting mouse embryonic stem cells using polyethylenimine.

Authors:  Colleen M Bartman; Jennifer Egelston; Xiaojun Ren; Raibatak Das; Christopher J Phiel
Journal:  Exp Cell Res       Date:  2014-08-04       Impact factor: 3.905

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