Literature DB >> 20049832

Heparin-based nanoparticles.

Melissa M Kemp1, Robert J Linhardt.   

Abstract

The combination of nanoparticles and biological molecules is of intense interest because of the synergistic properties offered by such newly synthesized composites. Heparin (HP), conjugated to nanomaterials, has recently been investigated for its chemical and biological properties. HP has a number of biological activities that can be enhanced when composited with nanoparticles. In addition, HP improves the biocompatibility of nanoparticles improving their performance in various biological applications. A variety of recent research combines HP and nanomaterials for a myriad of applications. HP has been conjugated to the surface of the nanoparticles, such as magnetic and metallic nanoparticles, or biodegradable and nondegradable synthetic polymers. HP has also been incorporated into the nanoparticles. There are numerous possibilities for material composites and chemistries that incorporate HP. This opens the door for novel applications ranging from improving anticoagulant activity, for anticancer and antitumor therapy, to tissue engineering and biosensors. This review examines the different possibilities of HP-based nanoparticle composites and their medicinal or biological applications. (c) 2009 John Wiley & Sons, Inc.

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Year:  2010        PMID: 20049832     DOI: 10.1002/wnan.68

Source DB:  PubMed          Journal:  Wiley Interdiscip Rev Nanomed Nanobiotechnol        ISSN: 1939-0041


  25 in total

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2.  Click-coated, heparinized, decellularized vascular grafts.

Authors:  Sashka Dimitrievska; Chao Cai; Amanda Weyers; Jenna L Balestrini; Tylee Lin; Sumati Sundaram; Go Hatachi; David A Spiegel; Themis R Kyriakides; Jianjun Miao; Guoyun Li; Laura E Niklason; Robert J Linhardt
Journal:  Acta Biomater       Date:  2014-11-20       Impact factor: 8.947

Review 3.  Biomolecular engineering for nanobio/bionanotechnology.

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Review 4.  Nanodrug delivery systems: a promising technology for detection, diagnosis, and treatment of cancer.

Authors:  Anish Babu; Amanda K Templeton; Anupama Munshi; Rajagopal Ramesh
Journal:  AAPS PharmSciTech       Date:  2014-02-19       Impact factor: 3.246

Review 5.  The role of heparins and nano-heparins as therapeutic tool in breast cancer.

Authors:  Nikos A Afratis; Konstantina Karamanou; Zoi Piperigkou; Demitrios H Vynios; Achilleas D Theocharis
Journal:  Glycoconj J       Date:  2016-10-24       Impact factor: 2.916

Review 6.  Application of polysaccharides for surface modification of nanomedicines.

Authors:  Kyung-Oh Doh; Yoon Yeo
Journal:  Ther Deliv       Date:  2012-12

Review 7.  Polysaccharide-based nanocomposites and their applications.

Authors:  Yingying Zheng; Jonathan Monty; Robert J Linhardt
Journal:  Carbohydr Res       Date:  2014-07-30       Impact factor: 2.104

8.  Heparin nanoparticles for β amyloid binding and mitigation of β amyloid associated cytotoxicity.

Authors:  Peng Wang; Hovig Kouyoumdjian; David C Zhu; Xuefei Huang
Journal:  Carbohydr Res       Date:  2014-08-02       Impact factor: 2.104

9.  A complementary strategy for enhancement of nanoparticle intracellular uptake.

Authors:  Yingjia Li; Ge Wen; Dongxiao Wang; Xia Zhang; Yaoyong Lu; Jianguo Wang; Lijuan Zhong; Hongbing Cai; Xingmei Zhang; Ying Wang
Journal:  Pharm Res       Date:  2014-02-21       Impact factor: 4.200

10.  Physicochemical characterization of ferumoxytol, heparin and protamine nanocomplexes for improved magnetic labeling of stem cells.

Authors:  L Henry Bryant; Saejeong J Kim; Matthew Hobson; Blerta Milo; Zsofia I Kovacs; Neekita Jikaria; Bobbi K Lewis; Maria A Aronova; Alioscka A Sousa; Guofeng Zhang; Richard D Leapman; Joseph A Frank
Journal:  Nanomedicine       Date:  2016-08-09       Impact factor: 5.307

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