scientists use 3d printing method to produce nanocomposite scaffolds
Last Updated : GMT 06:49:16
Arab Today, arab today
Arab Today, arab today
Last Updated : GMT 06:49:16
Arab Today, arab today

Scientists use 3D printing method to produce nanocomposite scaffolds

Arab Today, arab today

Arab Today, arab today Scientists use 3D printing method to produce nanocomposite scaffolds

Tehran - FNA

Iranian researchers from Sharif University of Technology in association with their colleagues from Max Planck Institute, Germany, produced nanocomposite scaffolds for tissue engineering with controlled pores by using indirect three-dimensional printing method. Cells are naturally surrounded by extracellular matrix (ECM). The matrix supports and guides cellular behavior and its vital functions, including migration, adhesion, proliferation, and differentiation with the help of chemical and physical signals. Therefore, the designing of internal pores and controlling external dimensions of the scaffold with controlled structure is one of the most important effective parameters on the performance of tissue engineering scaffolds used in the treatment of bone damages to guide cellular behavior in interaction with ECM. In this research, nanocomposite scaffolds with controlled pore structure were produced through indirect three-dimensional printing method. The pores contained various nanoparticles such as titanium dioxide and bioactive glass in micrometric and nanometric size. Growth kinetics of bone tissue was investigated on the product through in-vitro tests. To this end, the sacrificial cast was made with three dimensional structures and its surface was coated with paraffin. Results of the research showed that the effective interface of particles and cells increase as nanoparticles are added to the polymeric bed due to the high tendency of nanoparticles to accumulate in the surface. Moreover, the nanoparticles affect cell adhesion, proliferation, and differentiation by creating nanotopography, increasing the coarseness and surface roughness. Results of the research have been published in Journal of Biomedical Materials Research A, vol. 101, issue 10, October 2013, pp. 2796-2806.

arabstoday
arabstoday

Name *

E-mail *

Comment Title*

Comment *

: Characters Left

Mandatory *

Terms of use

Publishing Terms: Not to offend the author, or to persons or sanctities or attacking religions or divine self. And stay away from sectarian and racial incitement and insults.

I agree with the Terms of Use

Security Code*

scientists use 3d printing method to produce nanocomposite scaffolds scientists use 3d printing method to produce nanocomposite scaffolds

 



Name *

E-mail *

Comment Title*

Comment *

: Characters Left

Mandatory *

Terms of use

Publishing Terms: Not to offend the author, or to persons or sanctities or attacking religions or divine self. And stay away from sectarian and racial incitement and insults.

I agree with the Terms of Use

Security Code*

scientists use 3d printing method to produce nanocomposite scaffolds scientists use 3d printing method to produce nanocomposite scaffolds

 



GMT 18:05 2018 Friday ,07 September

Outstanding orphan, needy family's students awarded

GMT 23:58 2017 Monday ,25 December

Kuwaiti Premier receives Saudi Royal Court advisor

GMT 22:17 2016 Thursday ,16 June

Black box recovered from EgyptAir crash site

GMT 05:27 2017 Saturday ,11 November

IMF urges Argentina to step up pace of economic reforms

GMT 08:24 2017 Thursday ,24 August

Chad closes Qatari embassy in Ndjamena

GMT 14:50 2017 Monday ,25 September

Japan's Abe triggers snap election amid N.Korea crisis

GMT 05:49 2017 Thursday ,24 August

Mugabe says not going anywhere, not dying

GMT 14:17 2017 Saturday ,25 March

Bahrain-US cultural cooperation discussed
Arab Today, arab today
 
 Arab Today Facebook,arab today facebook  Arab Today Twitter,arab today twitter Arab Today Rss,arab today rss  Arab Today Youtube,arab today youtube  Arab Today Youtube,arab today youtube

Maintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2021 ©

Maintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2021 ©

arabstoday arabstoday arabstoday arabstoday
arabstoday arabstoday arabstoday
arabstoday
بناية النخيل - رأس النبع _ خلف السفارة الفرنسية _بيروت - لبنان
arabstoday, Arabstoday, Arabstoday