By Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim

ISBN-10: 3319097547

ISBN-13: 9783319097541

ISBN-10: 3319097555

ISBN-13: 9783319097558

This ebook addresses very important biomaterials that are favourite to manufacture scaffolds and it describes significant protocols hired in scaffold fabrication. Tissue engineering or regenerative medication goals at restoring ex-novo tissues and organs whose performance has been compromised on account of ailments or irritating occasions. The cutting edge suggestion underlying tissue engineering is using autologous cells, received from a biopsy of the sufferer. Cells are seeded on a porous scaffold which has the position of helping and guiding cells in the direction of the improvement of tissue-like constructions in addition to delivering a platform for the supply below managed of progress issue liberate, and so on. The profitable manufacture of scaffolds for tissue engineering functions is important. during this booklet, those biomaterials are mentioned. The ebook additionally covers illustrated examples, constitution and homes of scaffolds, mobile interactions and drug delivery.

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Extra resources for Composite Synthetic Scaffolds for Tissue Engineering and Regenerative Medicine

Sample text

Zhang et al. (2005) has examined the effect of adding ions to PVA/water solution to increase the solution conductivity. They had added sodium chloride (NaCl) with increasing concentration to the PVA/water solution. In the result, the mean fiber diameter decreases. Hence, by increasing the concentration of NaCl ion increased the net charge density. It will then increase the electrical force of the jet. 1). 4 In Vitro Degradation of Scaffolds Study of the hydrolytic degradation mechanism and rate is crucial factors for the application in biomedical and pharmaceutical applications.

Lim, C. (2005). Tensile testing of a single ultrafine polymeric fiber. Biomaterials, 26, 1453–1456. Taylor, G. (1969). Electrically driven jets. Proceedings of the Royal Society of London, Series A: Mathematical and Physical Sciences, 313, 453–475. , & Nuber, G. (1995). A novel method to fabricate bioabsorbable scaffolds. Polymer, 36, 837–842. , & Branford-White, C. (2009). Electrospun nanofiber-based drug delivery systems. Health (1949-4998), 1, 67–75. , & Sheng, J. (2005). Study on morphology of electrospun poly (vinyl alcohol) mats.

Reneker, D. , & Chun, I. (1996). Nanometre diameter fibres of polymer, produced by electrospinning. Nanotechnology, 7, 216–223. , Ismail, A. , & Nouparvar, H. (2013). Effects of chitosan alkali pretreatment on the preparation of electrospun PCL/chitosan blend nanofibrous scaffolds for tissue engineering application. Journal of Nanomaterials, 2013, 6. Sahoo, N. , Jung, Y. , & Cho, J. W. (2007). Electroactive shape memory effect of polyurethane composites filled with carbon nanotubes and conducting polymer.

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Composite Synthetic Scaffolds for Tissue Engineering and Regenerative Medicine by Naznin Sultana, Mohd Izzat Hassan, Mim Mim Lim


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