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A better roadmap for designing novel bioactive glasses: effective approaches for the development of innovative revolutionary bioglasses for future biomedical applications

Vafa, Ehsan and Tayebi, Lobat and Abbasi, Milad and Azizli, Mohammad Javad and Bazargan-Lari, Reza and Talaiekhozani, Amirreza and Zareshahrabadi, Zahra and Vaez, Ahmad and Mohamad Amani, Ali and Kamyab, Hesam and Chelliapan, Shreeshivadasan (2023) A better roadmap for designing novel bioactive glasses: effective approaches for the development of innovative revolutionary bioglasses for future biomedical applications. Environmental Science and Pollution Research, 30 (55). pp. 116960-116983. ISSN 0944-1344

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Official URL: http://dx.doi.org/10.1007/s11356-022-24176-1

Abstract

The introduction of bioactive glasses (BGs) precipitated a paradigm shift in the medical industry and opened the path for the development of contemporary regenerative medicine driven by biomaterials. This composition can bond to live bone and can induce osteogenesis by the release of physiologically active ions. 45S5 BG products have been transplanted effectively into millions of patients around the world, primarily to repair bone and dental defects. Over the years, many other BG compositions have been introduced as innovative biomaterials for repairing soft tissue and delivering drugs. When research first started, many of the accomplishments that have been made today were unimaginable. It appears that the true capacity of BGs has not yet been realized. Because of this, research involving BGs is extremely fascinating. However, to be successful, it requires interdisciplinary cooperation between physicians, glass chemists, and bioengineers. The present paper gives a picture of the existing clinical uses of BGs and illustrates key difficulties deserving to be faced in the future. The challenges range from the potential for BGs to be used in a wide variety of applications. We have high hopes that this paper will be of use to both novice researchers, who are just beginning their journey into the world of BGs, as well as seasoned scientists, in that it will promote conversation regarding potential additional investigation and lead to the discovery of innovative medical applications for BGs.

Item Type:Article
Uncontrolled Keywords:Additives, Bioengineering, Bioglasses, Bone regeneration
Subjects:T Technology > T Technology (General)
Divisions:Razak School of Engineering and Advanced Technology
ID Code:106909
Deposited By: Widya Wahid
Deposited On:14 Aug 2024 04:34
Last Modified:14 Aug 2024 04:34

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