Advances of Textiles in Tissue Engineering Scaffolds
191
Thus various textile structures can be synergistically used to meet the requirement
of the host tissue.
The current global market for tissue engineering and regeneration is accounted to
be around $24.7 billion in 2018. The market is very promising and predictions state
that the expected growth rate (CAGR) is predicted up to 34.8%with the market size
of $109.9 billion by 2023. This chapter give in detail idea about the advancement of
the textile industry in this field and from the market size it can be stated affirmatively
that the textile technology will have the highest share in tissue engineering scaffold.
The variation required in relation to the specific requirement of the damaged tissue
makes the challenge of this field exciting and the research arena to highest magnitude
of multi-disciplinary activity.
Though the medicine in our age has advanced to the stage of recovering lost
crucial functions of body, the challenge of the medicine is like the vast sky and the
understanding all the requirement related to specific process, design and application
is yet not complete in itself. Imbibing textile technology is giving advantages in terms
of regulatory measures, toxicity and safety profiles of these materials which are in all
sense human friendly thus aiding in the development. The performance profiles such
as degradation, interaction behaviour of cell materials are areas which need vigorous
research. Performance characteristics are pushing research and development in the
design of new materials to meet specific performance criteria in tissue engineering
[75, 78].
References
1. Goldade VA (2017) Antimicrobial fibers for textile clothing and medicine: current state. Impact
factor. Int Sci J Theor Appl Sci
2. Grand View Research, Medical textiles market size, share & trends analysis report by
fabric (non-woven, knitted, woven), by Application And Segment Forecasts 2019–2025
(2019), Report ID: 978-1-68038-830-5, Grand View Research, Inc, Apr 2019
3. Mohammed AJ (2018) Comment A call to action: improving women’s, children’s, and
adolescents’ health in the Muslim world. Lancet 6736(18):1–2
4. Gupta BS (1998) Medical textile structures: an overview, medical plastics and biomaterials
magazine
5. Chinta SK, Veena KV (2013) Impact of textiles in medical field. Int J Latest Trends Eng Technol
2:142–145
6. Gajanand E, Soni LK, Dixit VK (2014) Biodegradable polymers: a smart strategy for today’s
crucial needs. Crititcal Rev Pharm Sci 3:1
7. Madiwale P, Rachana S, Adivarekar R (July–Aug 2014) Tissue engineering scaffolds—an
introduction (Chap. 1). J Textile Assoc 136–137
8. Loh QL, Choong C (2013) Three-dimensional scaffolds for tissue engineering applications:
role of porosity and pore size. Tissue Eng Part B Rev 19(6):485–502
9. Porta GD, Reverchon E, Maffulli N (2017) Biomaterials and supercritical fluid technologies:
which perspectives to fabricate artificial extracellular matrix? Curr Pharm Design 23(27):3759–
3771
10. Madiwale P, Rachana S, Adivarekar R (2014) Tissue engineering scaffold - an introduction
(Chap. 1). J Text Assoc 136–137
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