Transgenic PDGF-BB sericin hydrogel potentiates bone regeneration of BMP9-stimulated mesenchymal stem cells through a crosstalk of the Smad-STAT pathways

Author:

Zhang Hui-Jie1,Li Fu-Shu23,Wang Feng4,Wang Han25,He Tong-Chuan6,Reid Russell R67,He Bai-Cheng12,Xia Qingyou4

Affiliation:

1. Key Laboratory of Biochemistry and Molecular Pharmacology of Chongqing, Chongqing Medical University , Chongqing 400016, China

2. Department of Pharmacology, School of Pharmacy, Chongqing Medical University , Chongqing 400016, China

3. Department of Pharmacy, Chongqing Emergency Medical Center, Chongqing University Central Hospital , Chongqing 400014, China

4. Biological Science Research Center, Chongqing Key Laboratory of Sericultural Science, Chongqing Engineering and Technology Research Center for Novel Silk Materials, Southwest University , Chongqing 400715, China

5. Department of Pharmacy, Panzhou People’s Hospital , Guizhou 553599, China

6. Molecular Oncology Laboratory, Department of Orthopaedic Surgery and Rehabilitation Medicine, The University of Chicago Medical Center , Chicago, IL 60637, USA

7. Laboratory of Craniofacial Biology and Development, Department of Surgery Section of Plastic Surgery, The University of Chicago Medical Center , Chicago, IL 60637, USA

Abstract

Abstract Silk as a natural biomaterial is considered as a promising bone substitute in tissue regeneration. Sericin and fibroin are the main components of silk and display unique features for their programmable mechanical properties, biocompatibility, biodegradability and morphological plasticity. It has been reported that sericin recombinant growth factors (GFs) can support cell proliferation and induce stem cell differentiation through cross-talk of signaling pathways during tissue regeneration. The transgenic technology allows the productions of bioactive heterologous GFs as fusion proteins with sericin, which are then fabricated into solid matrix or hydrogel format. Herein, using an injectable hydrogel derived from transgenic platelet-derived GF (PDGF)-BB silk sericin, we demonstrated that the PDGF-BB sericin hydrogel effectively augmented osteogenesis induced by bone morphogenetic protein (BMP9)-stimulated mesenchymal stem cells (MSCs) in vivo and in vitro, while inhibiting adipogenic differentiation. Further gene expression and protein–protein interactions studies demonstrated that BMP9 and PDGF-BB synergistically induced osteogenic differentiation through the cross-talk between Smad and Stat3 pathways in MSCs. Thus, our results provide a novel strategy to encapsulate osteogenic factors and osteoblastic progenitors in transgenic sericin-based hydrogel for robust bone tissue engineering.

Funder

National Natural Science Foundation of China

Chongqing Science and Technology Commission

State Key Laboratory of Silkworm Genome Biology

National Institutes of Health

Research Project Grant Program

Publisher

Oxford University Press (OUP)

Subject

Biomaterials

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