4.7 Review

Guided Tissue and Bone Regeneration Membranes: A Review of Biomaterials and Techniques for Periodontal Treatments

Journal

POLYMERS
Volume 15, Issue 16, Pages -

Publisher

MDPI
DOI: 10.3390/polym15163355

Keywords

dental biomaterials; guided bone regeneration; guided tissue regeneration; tissue engineering; biocompatible polymers; membranes; scaffolds

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This comprehensive review provides an in-depth analysis of the use of biomaterials in guided tissue and bone regeneration in dental therapeutic interventions. The review explores different types of membranes and biomaterials used in guided bone regeneration procedures, as well as the manufacturing technologies for the scaffold. The significance of guided bone regeneration and the critical role of membranes in successful bone and tissue regeneration are emphasized.
This comprehensive review provides an in-depth analysis of the use of biomaterials in the processes of guided tissue and bone regeneration, and their indispensable role in dental therapeutic interventions. These interventions serve the critical function of restoring both structural integrity and functionality to the dentition that has been lost or damaged. The basis for this review is laid through the exploration of various relevant scientific databases such as Scopus, PubMed, Web of science and MEDLINE. From a meticulous selection, relevant literature was chosen. This review commences by examining the different types of membranes used in guided bone regeneration procedures and the spectrum of biomaterials employed in these operations. It then explores the manufacturing technologies for the scaffold, delving into their significant impact on tissue and bone regenerations. At the core of this review is the method of guided bone regeneration, which is a crucial technique for counteracting bone loss induced by tooth extraction or periodontal disease. The discussion advances by underscoring the latest innovations and strategies in the field of tissue regeneration. One key observation is the critical role that membranes play in guided reconstruction; they serve as a barrier, preventing the entry of non-ossifying cells, thereby promoting the successful growth and regeneration of bone and tissue. By reviewing the existing literature on biomaterials, membranes, and scaffold manufacturing technologies, this paper illustrates the vast potential for innovation and growth within the field of dental therapeutic interventions, particularly in guided tissue and bone regeneration.

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