Advanced Biomatrix Designs for Regenerative Therapy of Periodontal Tissues

Author:

Kim J.H.12,Park C.H.12,Perez R.A.12,Lee H.Y.12,Jang J.H.3,Lee H.H.24,Wall I.B.15,Shi S.16,Kim H.W.124

Affiliation:

1. Department of Nanobiomedical Science & BK21 PLUS NBM Global Research Center for Regenerative Medicine, Dankook University, Cheonan 330-714, Republic of Korea

2. Institute of Tissue Regeneration Engineering (ITREN), Dankook University, Cheonan 330-714, Republic of Korea

3. Department of Biochemistry, Inha University School of Medicine, Incheon 400–712, Republic of Korea

4. Department of Biomaterials Science, College of Dentistry, Dankook University, Cheonan 330-714, Republic of Korea

5. Department of Biochemical Engineering, University College London, Torrington Place, London WC1E 7JE, United Kingdom

6. Center for Craniofacial Molecular Biology, Ostrow School of Dentistry, University of Southern California, Los Angeles, CA, USA

Abstract

Periodontitis is an inflammatory disease that causes loss of the tooth-supporting apparatus, including periodontal ligament, cementum, and alveolar bone. A broad range of treatment options is currently available to restore the structure and function of the periodontal tissues. A regenerative approach, among others, is now considered the most promising paradigm for this purpose, harnessing the unique properties of stem cells. How to make full use of the body’s innate regenerative capacity is thus a key issue. While stem cells and bioactive factors are essential components in the regenerative processes, matrices play pivotal roles in recapitulating stem cell functions and potentiating therapeutic actions of bioactive molecules. Moreover, the positions of appropriate bioactive matrices relative to the injury site may stimulate the innate regenerative stem cell populations, removing the need to deliver cells that have been manipulated outside of the body. In this topical review, we update views on advanced designs of biomatrices—including mimicking of the native extracellular matrix, providing mechanical stimulation, activating cell-driven matrices, and delivering bioactive factors in a controllable manner—which are ultimately useful for the regenerative therapy of periodontal tissues.

Publisher

SAGE Publications

Subject

General Dentistry

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