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Journal Article
D. Kuehbeck, Ghosh, M., Gupta, S. Sen, and Diaz, D. Diaz, Investigation of C-C bond formation mediated by bombyx mori silk fibroin materials, ACS Sustainable Chemistry & Engineering, vol. 2, no. 6, pp. 1510-1517, 2014.
P. Dubey, Kumar, S., Ravindranathan, S., Vasudevan, S., Aswal, V. K., Rajamohanan, P. R., Nisal, A., and Prabhune, A., pH dependent sophorolipid assemblies and their influence on gelation of silk fibroin protein, Materials Chemistry and Physics, vol. 203, pp. 9-16, 2018.
N. A. Parekh, V. Deshpande, R., Shukla, S. G., and Nisal, A. A., Silk fibroin 3D microparticle scaffolds with bioactive ceramics: chemical, mechanical, and osteoregenerative characteristics, Advanced Engineering Materials, vol. 22, no. 12, p. 2000458, 2020.
R. Deshpande, Shukla, S., Sayyad, R., Salunke, S., Nisal, A., and Venugopalan, P., Silk fibroin and ceramic scaffolds: comparative in vitro studies for bone regeneration, Bioengineering & Translational Medicine, p. e10221, 2021.
E. Joseph, Kane, K., Parekh, N., Nisal, A., and V. Janorkar, A., Silk fibroin and recombinant elastin blend nano-coatings for implantable medical devices, Materials Today Communications, vol. 33, p. 104875, 2022.
R. Deshpande, Shukla, S., Kale, A., Deshmukh, N., Nisal, A., and Venugopalan, P., Silk fibroin microparticle scaffold for use in bone void filling: safety and efficacy studies, ACS Biomaterials Science & Engineering, vol. 8, no. 3, pp. 1226-1238, 2022.