Literature DB >> 20109384

Tissue engineering technologies: just a quick note about transplantation of bioengineered donor trachea and augmentation cystoplasty by de novo engineered bladder tissue.

C Alberti1.   

Abstract

Tissue engineering technologies: just a quick note about transplantation of bioengineered donor trachea and augmentation cystoplasty by de novo engineered bladder tissue. C. Alberti Tissue engineering is a multidisciplinary scientific field that aims at manufacturing in vitro biological substitutes to enhance or replace failing human organs. Various types of biodegradable synthetic polymer (polyglycolic acid, PGA; polylactic acid, PLA; polylactic-coglycolic acid), naturally-derived (alginate, collagen), acellular tissue-made up (small intestinal submucosa, SIS; acellular bladder submucosa, ABS) and composite (PGA bound to collagen) materials have been used as scaffold for either "unseeded" (cell-free) or "seeded" (autologous cells seeded onto the matrix) tissue engineering strategies. The unseeded technique is directed at promoting the in vivo tissue regenerative process, unfortunately with certain limitations, whereas the "seeded technique" aims at creating in vitro functional replacement tissues or organs. Recently, a decellularized human dead donor trachea has been used as scaffold, that was then seeded, in vitro, by recipient epithelial cells and mesenchymal stem cell-derived chondrocytes, to obtain a bioengineered airway to replace recipient's failing left main bronchus. As far as clinical applications in Urology are concerned, a cell-based approach (PGA-collagen composite scaffold seeded with autologous cells) has been achieved to successfully carry-out an augmentation cystoplasty in subjects with end-stage neuropathic high pressure/poorly compliant bladder. The use of autologous cells, wherein a specimen of tissue is harvested by biopsy from the host, avoids the risk of rejection. Nevertheless, the use of adult organ-specific cells shows many limitations, such as difficulties in their harvesting (potential complications associated with invasive biopsies) and their low proliferative ability. Therefore, various populations of either embryonic or adult stem cells and progenitor cells have been studied as useful cell sources for the tissue engineering. Bioreactors are essential in such technologies, both providing chemo-physical cell culture dynamic conditions, that mimic the in vivo environment, and allowing the assessment of responses of biological substitutes to different biochemical signals and mechanical forces.

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Year:  2009        PMID: 20109384

Source DB:  PubMed          Journal:  G Chir        ISSN: 0391-9005


  6 in total

Review 1.  Whyever bladder tissue engineering clinical applications still remain unusual even though many intriguing technological advances have been reached?

Authors:  C Alberti
Journal:  G Chir       Date:  2016 Jan-Feb

Review 2.  Current trends in minimally invasive reconstructive urology.

Authors:  I Belibasakis; G Kolostoumpis; K Makrygiannaki
Journal:  J Robot Surg       Date:  2011-11-05

3.  Advanced Therapy Medicinal Products and Exemptions to the Regulation 1394/2007: How Confident Can We be? An Exploratory Analysis.

Authors:  Philippe Van Wilder
Journal:  Front Pharmacol       Date:  2012-02-14       Impact factor: 5.810

4.  Regeneration of Tracheal Tissue in Partial Defects Using Porcine Small Intestinal Submucosa.

Authors:  Nelson Bergonse Neto; Lianna Ferrari Jorge; Julio C Francisco; Bruna Olandoski Erbano; Barbara Evelin Gonçalves Barboza; Larissa Luvison Gomes da Silva; Marcia Olandoski; Katherine Athayde Teixeira de Carvalho; Luiz Felipe Pinho Moreira; Jose Rocha Faria Neto; Eltyeb Abdelwahid; Luiz Cesar Guarita-Souza
Journal:  Stem Cells Int       Date:  2018-02-26       Impact factor: 5.443

Review 5.  Regenerative medicine: Clinical applications and future perspectives.

Authors:  Federica Colombo; Gianluca Sampogna; Giovanni Cocozza; Salman Yousuf Guraya; Antonello Forgione
Journal:  J Microsc Ultrastruct       Date:  2016-05-24

6.  A novel scale-down cell culture and imaging design for the mechanistic insight of cell colonisation within porous substrate.

Authors:  C M Gabbott; Z X Zhou; G X Han; T Sun
Journal:  J Microsc       Date:  2017-03-15       Impact factor: 1.758

  6 in total

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