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Padala V.g.k. Reddy - One of the best experts on this subject based on the ideXlab platform.

Vinoth Kumar Ponnusamy - One of the best experts on this subject based on the ideXlab platform.

  • green synthesis of biocompatible nanostructured hydroxyapatite from Cirrhinus mrigala fish scale a biowaste to biomaterial
    Ceramics International, 2019
    Co-Authors: Swamiappan Sathiskumar, Sekar Vanaraj, Devaraj Sabarinathan, Somasundaram Bharath, Ganesan Sivarasan, Subramanian Arulmani, Kathirvel Preethi, Vinoth Kumar Ponnusamy
    Abstract:

    Abstract In this study, we report a green approach to prepare biocompatible nanostructured hydroxyapatite (NHAp) crystalline powders from Cirrhinus mrigala fish scale wastes by a simple alkaline heat treatment process. The crystallinity and functional groups of the as-prepared material were confirmed using X-ray diffraction and fourier-transform infrared spectroscopy. The surface morphology was characterized using transmission electron microscopy. The formation of NHAp and Calcium/Phosphorus (Ca/P) molar ratio was confirmed using Energy-dispersive X-ray spectroscopy and Ca/P molar ratio was 1.67. The thermal stability of NHAp was examined by thermogravimetric analysis. Further, the biocompatibility of as-synthesized NHAp was examined towards the cell viability of MG-63 cells (human osteosarcoma cells) with various dosages. NHAp boosts up the growth of MG-63 cells which showed superior cell viability and ALP activity when compared with commercial HAp (CHAp). This result illustrates that NHAp synthesized from Cirrhinus mrigala fish scale biowaste showed excellent biocompatibility, and it can be a potential alternative biomaterial for various biomedical applications.

  • Green synthesis of biocompatible nanostructured hydroxyapatite from Cirrhinus mrigala fish scale – A biowaste to biomaterial
    Ceramics International, 2019
    Co-Authors: Swamiappan Sathiskumar, Sekar Vanaraj, Devaraj Sabarinathan, Somasundaram Bharath, Ganesan Sivarasan, Subramanian Arulmani, Kathirvel Preethi, Vinoth Kumar Ponnusamy
    Abstract:

    Abstract In this study, we report a green approach to prepare biocompatible nanostructured hydroxyapatite (NHAp) crystalline powders from Cirrhinus mrigala fish scale wastes by a simple alkaline heat treatment process. The crystallinity and functional groups of the as-prepared material were confirmed using X-ray diffraction and fourier-transform infrared spectroscopy. The surface morphology was characterized using transmission electron microscopy. The formation of NHAp and Calcium/Phosphorus (Ca/P) molar ratio was confirmed using Energy-dispersive X-ray spectroscopy and Ca/P molar ratio was 1.67. The thermal stability of NHAp was examined by thermogravimetric analysis. Further, the biocompatibility of as-synthesized NHAp was examined towards the cell viability of MG-63 cells (human osteosarcoma cells) with various dosages. NHAp boosts up the growth of MG-63 cells which showed superior cell viability and ALP activity when compared with commercial HAp (CHAp). This result illustrates that NHAp synthesized from Cirrhinus mrigala fish scale biowaste showed excellent biocompatibility, and it can be a potential alternative biomaterial for various biomedical applications.

Swamiappan Sathiskumar - One of the best experts on this subject based on the ideXlab platform.

  • green synthesis of biocompatible nanostructured hydroxyapatite from Cirrhinus mrigala fish scale a biowaste to biomaterial
    Ceramics International, 2019
    Co-Authors: Swamiappan Sathiskumar, Sekar Vanaraj, Devaraj Sabarinathan, Somasundaram Bharath, Ganesan Sivarasan, Subramanian Arulmani, Kathirvel Preethi, Vinoth Kumar Ponnusamy
    Abstract:

    Abstract In this study, we report a green approach to prepare biocompatible nanostructured hydroxyapatite (NHAp) crystalline powders from Cirrhinus mrigala fish scale wastes by a simple alkaline heat treatment process. The crystallinity and functional groups of the as-prepared material were confirmed using X-ray diffraction and fourier-transform infrared spectroscopy. The surface morphology was characterized using transmission electron microscopy. The formation of NHAp and Calcium/Phosphorus (Ca/P) molar ratio was confirmed using Energy-dispersive X-ray spectroscopy and Ca/P molar ratio was 1.67. The thermal stability of NHAp was examined by thermogravimetric analysis. Further, the biocompatibility of as-synthesized NHAp was examined towards the cell viability of MG-63 cells (human osteosarcoma cells) with various dosages. NHAp boosts up the growth of MG-63 cells which showed superior cell viability and ALP activity when compared with commercial HAp (CHAp). This result illustrates that NHAp synthesized from Cirrhinus mrigala fish scale biowaste showed excellent biocompatibility, and it can be a potential alternative biomaterial for various biomedical applications.

  • Green synthesis of biocompatible nanostructured hydroxyapatite from Cirrhinus mrigala fish scale – A biowaste to biomaterial
    Ceramics International, 2019
    Co-Authors: Swamiappan Sathiskumar, Sekar Vanaraj, Devaraj Sabarinathan, Somasundaram Bharath, Ganesan Sivarasan, Subramanian Arulmani, Kathirvel Preethi, Vinoth Kumar Ponnusamy
    Abstract:

    Abstract In this study, we report a green approach to prepare biocompatible nanostructured hydroxyapatite (NHAp) crystalline powders from Cirrhinus mrigala fish scale wastes by a simple alkaline heat treatment process. The crystallinity and functional groups of the as-prepared material were confirmed using X-ray diffraction and fourier-transform infrared spectroscopy. The surface morphology was characterized using transmission electron microscopy. The formation of NHAp and Calcium/Phosphorus (Ca/P) molar ratio was confirmed using Energy-dispersive X-ray spectroscopy and Ca/P molar ratio was 1.67. The thermal stability of NHAp was examined by thermogravimetric analysis. Further, the biocompatibility of as-synthesized NHAp was examined towards the cell viability of MG-63 cells (human osteosarcoma cells) with various dosages. NHAp boosts up the growth of MG-63 cells which showed superior cell viability and ALP activity when compared with commercial HAp (CHAp). This result illustrates that NHAp synthesized from Cirrhinus mrigala fish scale biowaste showed excellent biocompatibility, and it can be a potential alternative biomaterial for various biomedical applications.

Si-ming Zhang - One of the best experts on this subject based on the ideXlab platform.

N. Sarangi - One of the best experts on this subject based on the ideXlab platform.

  • Effect of Waterborne Zinc on Survival, Growth, and Feed Intake of Indian Major Carp, Cirrhinus mrigala (Hamilton)
    Water Air and Soil Pollution, 2009
    Co-Authors: Mausumi Mohanty, S Adhikari, P. Mohanty, N. Sarangi
    Abstract:

    The effect of waterborne zinc on survival, growth, and feed intake of Indian major carp, Cirrhinus mrigala (Hamilton), advanced fry was studied under laboratory condition. Survival rates of C. mrigala advanced fry (2.71 ± 0.49 g) after 30 days exposure to control (0.01), 0.03, 0.06, 0.10, and 0.15 mg/L zinc using the static renewal method in freshwater at pH 7.3 ± 0.2, temperature 26 ± 2°C, and total hardness 114 ± 16 mg/L as CaCO_3 were 100%. Growth of the fish exposed to 0.10 and 0.15 mg/L of zinc was significantly lower ( P   0.05) in fish growth between 0.03 and 0.06 mg/L zinc concentrations. Feed intake rates were significantly ( P  

  • role of waterborne copper on survival growth and feed intake of indian major carp Cirrhinus mrigala hamilton
    Bulletin of Environmental Contamination and Toxicology, 2009
    Co-Authors: Mausumi Mohanty, S Adhikari, P. Mohanty, N. Sarangi
    Abstract:

    The effect of copper on survival, growth and feed intake of Indian major carp, Cirrhinus mrigala (Hamilton) fry (0.92 ± 0.28 g) was studied for 60 days. Survival rates of the fish exposed to control (0.02), 0.10, 0.15 and 0.23 mg L−1 copper were 100%, 83 ± 3%, 58 ± 6%, and 50 ± 4%, respectively. Average daily growth was significantly (p < 0.05) lower at 0.15 and 0.23 mg L−1 of copper. There was almost no growth at 0.23 mg L−1 of copper. Feed intake rates reduced significantly (p < 0.05) at all the copper treatments. The copper accumulation in the fish increased with increasing concentrations of the metal.