S. Pranav Adithya
SRM University
SonicationRegenerative medicineExfoliation jointBiocompatible materialDrug carrierBone cellNanotechnologyBiomineralizationChemistryMaterials scienceOsteoblastPolyvinyl alcoholGelatinChitosanStem cellBone regenerationBone tissue engineeringBioactive moleculesChemical engineeringTissue engineeringPolymerMagnesiumCell adhesionProtein adsorption
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#1R. Abhinandan (SRM University)H-Index: 2
#2S. Pranav Adithya (SRM University)H-Index: 1
Last. Nagarajan Selvamurugan (SRM University)H-Index: 59
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Abstract Boride, which belongs to the distinct category of ceramic materials, has attracted significant attention in tissue engineering applications. Magnesium diboride (MgB2) consists of a plane of magnesium atoms sandwiched between the layers of boron. Even though MgB2 showed its role in various applications, its effect on osteogenesis has not yet been investigated. In this study, we synthesized MgB2 nanosheets (MgB2NS), a new class of 2D-nanoscale structures, by the ultrasonication exfoliatio...
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Bone tissue engineering (BTE) is a transitional research field that focuses on material science and biology to construct novel biocomposites proficient in treating impaired bone. Bioactive molecules are unique therapeutic agents that have prompted rapid advances in the field of tissue engineering. Polymers of natural sources play a crucial role in the fabrication of biocompatible delivery systems that facilitate bioactive agents’ efficient delivery. Chitosan (CS) is known for its distinct pharma...
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Abstract Bone is a highly integrative and dynamic tissue of the human body that is regularly modeled and remodeled by bone cells such as osteoblasts and osteoclasts. When a fraction of a bone is damaged or deformed, stem cells and bone cells under the influence of several signaling pathways regulate bone regeneration at the particular locale, but in a dilatory manner. To overcome this problem, the field of bone tissue engineering (BTE) utilizes various bio-composite scaffolds that incorporate ce...
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