Literature DB >> 17154462

Processing and characterization of porous structures from chitosan and starch for tissue engineering scaffolds.

Javier Nakamatsu1, Fernando G Torres, Omar P Troncoso, Yuan Min-Lin, Aldo R Boccaccini.   

Abstract

Natural biodegradable polymers were processed by different techniques for the production of porous structures for tissue engineering scaffolds. Potato, corn, and sweet potato starches and chitosan, as well as blends of these, were characterized and used in the experiments. The techniques used to produce the porous structures included a novel solvent-exchange phase separation technique and the well-established thermally induced phase separation method. Characterization of the open pore structures was performed by measuring pore size distribution, density, and porosity of the samples. A wide range of pore structures ranging from 1 to 400 microm were obtained. The mechanisms of pore formation are discussed for starch and chitosan scaffolds. Pore morphology in starch scaffolds seemed to be determined by the initial freezing temperature/freezing rate, whereas in chitosan scaffolds the shape and size of pores may have been determined by the processing route used. The mechanical properties of the scaffolds were assessed by indentation tests, showing that the indentation collapse strength depends on the pore geometry and the material type. Bioactivity and degradation of the potential scaffolds were assessed by immersion in simulated body fluid.

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Year:  2006        PMID: 17154462     DOI: 10.1021/bm0605311

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


  8 in total

1.  Silk-PVA Hybrid Nanofibrous Scaffolds for Enhanced Primary Human Meniscal Cell Proliferation.

Authors:  Mamatha M Pillai; J Gopinathan; B Indumathi; Y R Manjoosha; K Santosh Sahanand; B K Dinakar Rai; R Selvakumar; Amitava Bhattacharyya
Journal:  J Membr Biol       Date:  2016-10-11       Impact factor: 1.843

Review 2.  Hydrogels in spinal cord injury repair strategies.

Authors:  Giuseppe Perale; Filippo Rossi; Erik Sundstrom; Sara Bacchiega; Maurizio Masi; Gianluigi Forloni; Pietro Veglianese
Journal:  ACS Chem Neurosci       Date:  2011-05-04       Impact factor: 4.418

3.  Preparation and Characterization of Dual-Modified Cassava Starch-Based Biodegradable Foams for Sustainable Packaging Applications.

Authors:  Sumedha M Amaraweera; Chamila Gunathilake; Oneesha H P Gunawardene; Rohan S Dassanayake; Nimasha M L Fernando; Drashana B Wanninayaka; Suranga M Rajapaksha; Asanga Manamperi; Mahinda Gangoda; Amanpreet Manchanda; Chakrawarthige A N Fernando; Asela K Kulatunga; Aruna Manipura
Journal:  ACS Omega       Date:  2022-06-01

4.  Characterization of thermoplastic polyurethane/polylactic acid (TPU/PLA) tissue engineering scaffolds fabricated by microcellular injection molding.

Authors:  Hao-Yang Mi; Max R Salick; Xin Jing; Brianna R Jacques; Wendy C Crone; Xiang-Fang Peng; Lih-Sheng Turng
Journal:  Mater Sci Eng C Mater Biol Appl       Date:  2013-08-02       Impact factor: 7.328

5.  Supercritical phase inversion of starch-poly(epsilon-caprolactone) for tissue engineering applications.

Authors:  Ana Rita C Duarte; João F Mano; Rui L Reis
Journal:  J Mater Sci Mater Med       Date:  2009-10-20       Impact factor: 3.896

6.  Influence of Pre-Freezing Temperature on the Corneal Endothelial Cytocompatibility and Cell Delivery Performance of Porous Hyaluronic Acid Hydrogel Carriers.

Authors:  Jui-Yang Lai
Journal:  Int J Mol Sci       Date:  2015-08-11       Impact factor: 5.923

7.  Preparation of Starch/Gelatin Blend Microparticles by a Water-in-Oil Emulsion Method for Controlled Release Drug Delivery.

Authors:  Theeraphol Phromsopha; Yodthong Baimark
Journal:  Int J Biomater       Date:  2014-04-29

8.  Fabrication of Porous Spherical Beads from Corn Starch by Using a 3D Food Printing System.

Authors:  Safoura Ahmadzadeh; Ali Ubeyitogullari
Journal:  Foods       Date:  2022-03-22
  8 in total

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