Browsing by Subject Bacterial activity

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  • Novel-poly--methyl-methacrylate--grafted-guar-gum-miner_2018_Journal-of-Scie.pdf.jpg
  • Article


  • Authors: Priya, G.; Vijayakumari, N.; Sangeetha, R. (2018)

  • A poly (methyl methacrylate) grafted guar gum/mineral substituted hydroxyapatite (PMMA-GG/M-HA) nanocomposite is reported to show enhanced physico-chemical and bio-chemical properties. This nanocomposite offers a possible bone cell integration around it with augmenting fresh bone develop-ment, thus declining the risk of cartilages' structural collapse. In this study, the as-fabricated nano-composite was characterized by using physicochemical strategies. The cell-material boundary of the nanocomposite was observedin vitro with human osteoblast cells, and the cell replication was tested. The nanocomposite promoted the bone cell adhesion and proliferation, improved the mechanical strengt...

Browsing by Subject Bacterial activity

Jump to: 0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
or enter first few letters:  
Showing results 1 to 1 of 1
  • Novel-poly--methyl-methacrylate--grafted-guar-gum-miner_2018_Journal-of-Scie.pdf.jpg
  • Article


  • Authors: Priya, G.; Vijayakumari, N.; Sangeetha, R. (2018)

  • A poly (methyl methacrylate) grafted guar gum/mineral substituted hydroxyapatite (PMMA-GG/M-HA) nanocomposite is reported to show enhanced physico-chemical and bio-chemical properties. This nanocomposite offers a possible bone cell integration around it with augmenting fresh bone develop-ment, thus declining the risk of cartilages' structural collapse. In this study, the as-fabricated nano-composite was characterized by using physicochemical strategies. The cell-material boundary of the nanocomposite was observedin vitro with human osteoblast cells, and the cell replication was tested. The nanocomposite promoted the bone cell adhesion and proliferation, improved the mechanical strengt...