Nanoformulations of core–shell type hydroxyapatite-coated gum acacia with enhanced bioactivity and controlled drug delivery for biomedical applications

Author:

Padmanabhan Varun Prasath123,Balakrishnan Subha123,Kulandaivelu Ravichandran123ORCID,T. S. N. Sankara Narayanan4567,Lakshmipathy Muthukrishnan89101112,Sagadevan Suresh13141516ORCID,Mohammad Faruq1718192021ORCID,Al-Lohedan Hamad A.1718192021,Paiman Suriati2223242516ORCID,Oh Won Chun26272829ORCID

Affiliation:

1. Department of Analytical Chemistry, University of Madras, Gundy Campus

2. Chennai-600025

3. India

4. Department of Dental Biomaterials and Institute of Biodegradable Materials

5. Chonbuk National University

6. Jeonju 561-756

7. South Korea

8. Leather Process Technology

9. Tannery Division

10. CSIR – Central Leather Research Institute (CLRI)

11. Adyar

12. Chennai

13. Nanotechnology & Catalysis Research Centre

14. University of Malaya

15. Kuala Lumpur 50603

16. Malaysia

17. Surfactants Research Chair

18. Department of Chemistry

19. College of Science

20. King Saud University

21. Riyadh 11451

22. Department of Physics

23. Faculty of Science

24. Universiti Putra Malaysia

25. 43400, Serdang

26. Department of Advanced Materials Science and Engineering

27. Hanseo University

28. Seosan-si

29. Korea

Abstract

In this work, nanospherical hydroxyapatite (HAP) was prepared that has combined properties of controlled drug delivery, biocompatibility, and antibacterial activity to have applications in the biomedical sector.

Funder

Council of Scientific and Industrial Research, India

King Saud University

Publisher

Royal Society of Chemistry (RSC)

Subject

Materials Chemistry,General Chemistry,Catalysis

Reference59 articles.

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