Ultrasound-assisted green economic synthesis of hydroxyapatite nanoparticles using eggshell biowaste and study of mechanical and biological properties for orthopedic applications

Author:

Ingole Vijay H.12,Hany Hussein Kamal3,Kashale Anil A.1,Ghule Kalyani1,Vuherer Tomaž2,Kokol Vanja2,Chang Jia-Yaw4,Ling Yong-Chien5,Vinchurkar Aruna6,Dhakal Hom N.7,Ghule Anil V.18

Affiliation:

1. Department of Nanotechnology; Dr. Babasaheb Ambedkar Marathwada University; Aurangabad Maharashtra 431004 India

2. Faculty of Mechanical Engineering; University of Maribor; Maribor 2000 Slovenia

3. Stem Cell Institute and College of Veterinary Medicine; Gangwon National University; Chuncheon Gangwon 200-701 South Korea

4. Department of Chemical Engineering; National Taiwan University of Science and Technology; Taipei 10607 Taiwan

5. Department of Chemistry; National Tsing Hua University; Hsinchu 30013 Taiwan

6. Department of Biophysics; Government Institute of Science, Dr. Babasaheb Ambedkar Marathwada University; Aurangabad Maharashtra 431004 India

7. School of Engineering; University of Portsmouth; Hampshire PO1 3DJ United kingdom

8. Department of Chemistry; Shivaji University; Kolhapur Maharashtra 416004 India

Funder

UGC, New Delhi

CSIR, New Delhi

RGSTC, Mumbai, UGC-DAE-CSR, Indore

Ministry of Science and Technology

Publisher

Wiley

Subject

Metals and Alloys,Biomedical Engineering,Biomaterials,Ceramics and Composites

Reference51 articles.

1. Nanometre scale hydroxyapatite ceramics for bone tissue engineering;Poinern;Am J Biomed Eng,2013

2. Biomimetic nanostructured materials: Potential regulators for osteogenesis;Ngiam;Ann Acad Med Singapore,2011

3. Osteoinductive biomaterial geometries for bone regenerative engineering;Ozdemir;Curr Pharm Des,2013

4. A novel route for synthesis of nanocrystalline hydroxyapatite from eggshell waste;Krishna;J Mater Sci-Mater Med,2007

5. Hydroxyapatite-based materials: Synthesis and characterization;Rivera-Muñoz;Biomed Eng Front Challenges,2011

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