Spontaneous Osteogenic Differentiation of Human Mesenchymal Stem Cells by Tuna-Bone-Derived Hydroxyapatite Composites with Green Tea Polyphenol-Reduced Graphene Oxide

Author:

Kang Moon Sung1,Park Rowoon1,Jo Hyo Jung1,Shin Yong Cheol2ORCID,Kim Chang-Seok13ORCID,Hyon Suong-Hyu4,Hong Suck Won13ORCID,Oh Junghwan567ORCID,Han Dong-Wook18ORCID

Affiliation:

1. Department of Cogno-Mechatronics Engineering, College of Nanoscience and Nanotechnology, Pusan National University, Busan 46241, Republic of Korea

2. Department of Inflammation and Immunity, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, USA

3. Engineering Research Center for Color-Modulated Extra-Sensory Perception Technology, Pusan National University, Busan 46241, Republic of Korea

4. BMG Inc., Kyoto 601-8023, Japan

5. Industry 4.0 Convergence Bionics Engineering, Pukyong National University, Busan 48513, Republic of Korea

6. Department of Biomedical Engineering, Pukyong National University, Busan 48513, Republic of Korea

7. Ohlabs Corporation, Busan 48513, Republic of Korea

8. BIO-IT Fusion Technology Research Institute, Pusan National University, Busan 46241, Republic of Korea

Abstract

In recent years, bone tissue engineering (BTE) has made significant progress in promoting the direct and functional connection between bone and graft, including osseointegration and osteoconduction, to facilitate the healing of damaged bone tissues. Herein, we introduce a new, environmentally friendly, and cost-effective method for synthesizing reduced graphene oxide (rGO) and hydroxyapatite (HAp). The method uses epigallocatechin-3-O-gallate (EGCG) as a reducing agent to synthesize rGO (E-rGO), and HAp powder is obtained from Atlantic bluefin tuna (Thunnus thynnus). The physicochemical analysis indicated that the E-rGO/HAp composites had exceptional properties for use as BTE scaffolds, as well as high purity. Moreover, we discovered that E-rGO/HAp composites facilitated not only the proliferation, but also early and late osteogenic differentiation of human mesenchymal stem cells (hMSCs). Our work suggests that E-rGO/HAp composites may play a significant role in promoting the spontaneous osteogenic differentiation of hMSCs, and we envision that E-rGO/HAp composites could serve as promising candidates for BTE scaffolds, stem-cell differentiation stimulators, and implantable device components because of their biocompatible and bioactive properties. Overall, we suggest a new approach for developing cost-effective and environmentally friendly E-rGO/HAp composite materials for BTE application.

Funder

National Research Foundation of Korea

Korea Evaluation Institute of Industrial Technology

Publisher

MDPI AG

Subject

General Medicine

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