Literature DB >> 28703122

Synergistic effect of electrical conductivity and biomolecules on human meniscal cell attachment, growth, and proliferation in poly-ε-caprolactone nanocomposite scaffolds.

J Gopinathan1, Mamatha M Pillai, K Santosh Sahanand, B K Dinakar Rai, R Selvakumar, Amitava Bhattacharyya.   

Abstract

Poly-ε-caprolactone (PCL)-based nanocomposite scaffolds with different concentrations of carbon nanofillers (carbon nanofibers (CNFs), nanographite, and exfoliated graphite) have been studied to investigate the effect of electrical conductivity and biomolecule supplementation for enhanced human meniscal cell attachment, growth, and proliferation. The incorporation of carbon nanofillers was found to improve the mechanical and electrical properties. CNF-based nanocomposite scaffolds showed the highest electrical conductivity with significant improvements in mechanical properties (more than 50% tensile strength increase than PCL with 10% (w/w) CNF). All nanocomposite scaffolds were subjected to cytotoxicity studies using primary meniscus cells. The nanocomposite scaffolds showing higher cell viability were selected and tested for meniscal cell attachment and proliferation assays such as total deoxyribonucleic acid content, extracellular matrix secretion, nuclear staining, and cell attachment studies using a scanning electron microscope. When an optimized combination of biomolecules is supplemented in the cell culture medium, a synergistic effect of the electrical conductivity and biomolecule combination is observed, especially in the case of highly conducting CNF (7.5% and 10% (w/w))-based nanocomposite scaffolds. Our findings suggest that electrically conductive scaffolds with optimized biomolecules in cell culture medium can potentially be used for successful human meniscal tissue engineering applications.

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Year:  2017        PMID: 28703122     DOI: 10.1088/1748-605X/aa7f7b

Source DB:  PubMed          Journal:  Biomed Mater        ISSN: 1748-6041            Impact factor:   3.715


  4 in total

Review 1.  Human Knee Meniscus Regeneration Strategies: a Review on Recent Advances.

Authors:  Mamatha M Pillai; J Gopinathan; R Selvakumar; Amitava Bhattacharyya
Journal:  Curr Osteoporos Rep       Date:  2018-06       Impact factor: 5.096

2.  [Research progress of scaffold materials for tissue engineered meniscus].

Authors:  Ziyan Feng; Yifei Fan; Jiusi Guo; Weili Fu
Journal:  Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi       Date:  2019-08-15

3.  Three-dimensional directional nerve guide conduits fabricated by dopamine-functionalized conductive carbon nanofibre-based nanocomposite ink printing.

Authors:  Shadi Houshyar; Mamatha M Pillai; Tanushree Saha; G Sathish-Kumar; Chaitali Dekiwadia; Satya Ranjan Sarker; R Sivasubramanian; Robert A Shanks; Amitava Bhattacharyya
Journal:  RSC Adv       Date:  2020-11-09       Impact factor: 4.036

Review 4.  Advanced Hydrogels With Nanoparticle Inclusion for Cartilage Tissue Engineering.

Authors:  Yunong Ao; En Zhang; Yangxi Liu; Liu Yang; Jun Li; Fuyou Wang
Journal:  Front Bioeng Biotechnol       Date:  2022-06-29
  4 in total

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