Synthesis, characterization and biocompatibility evaluation of hydroxyapatite - gelatin polyLactic acid ternary nanocomposite

Publish Year: 1395
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_NAMJ-3-2_005

تاریخ نمایه سازی: 18 تیر 1398

Abstract:

Objective(s): The current study reports the production and biocompatibility evaluation of a ternary nanocomposite consisting of HA, PLA, and gelatin for biomedical application.Materials and Methods: Hydroxyapatite nanopowder (HA: Ca10(PO4)6(OH)2) was produced by burning the bovine cortical bone within the temperature range of 350-450 oC followed by heating in an oven at 800. Synthesis of the ternary nanocomposite was carried out in two steps: synthesis of gelatin-hydroxyapatite binary nanocomposite and addition of poly lactic acid with different percentages to the resulting composition. The crystal structure was determined by X-ray diffraction (XRD), while major elements and impurities of hydroxyapatite were identified by elemental analysis of X-ray fluorescence (XRF). Functional groups were determined by Fourier transform infrared spectroscopy (FTIR). Morphology and size of the nanocomposites were evaluated using field emission scanning electron microscope (FE-SEM).Biocompatibility of nanocomposites was investigated by MTT assay. Results: XRD patterns verified the ideal crystal structure of the hydroxyapatite, which indicated an appropriate synthesis process and absence of disturbing phases. Results of FTIR analysis determined the polymers’ functional groups, specified formation of the polymers on the hydroxyapatite surface, and verified synthesis of nHA/PLA/Gel composite. FESEM images also indicated the homogeneous structure of the composite in the range of 50 nanometers. MTT assay results confirmed the biocompatibility of nanocomposite samples.Conclusion: This study suggested that the ternary nanocomposite of nHA/PLA/Gel can be a good candidate for biomedical application such as drug delivery systems, but for evaluation of its potential in hard tissue replacement, mechanical tests should be performed.

Authors

Z. Nabipour

Faculty of Metallurgical and Materials Engineering, Semnan University, Semnan, Iran

M.S. Nourbakhsh

Faculty of Metallurgical and Materials Engineering, Semnan University, Semnan, Iran

M. Baniasadi

Faculty of New Science and Technology, Semnan University, Semnan, Iran

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  • Bose S, Tarafder S. Calcium phosphate ceramic systems in growth ...
  • Verron E, Khairoun I, Guicheux J, Bouler JM. Calcium phosphate ...
  • Meseguer Olmo L, Ros Nicolás MJ, Vicente Ortega V, Alcaraz ...
  • Zakaria SM, Sharif Zein SH, Othman MR, Yang F, Jansen ...
  • Dion A, Langman M, Hall G, Filiaggi M. Vancomycin release ...
  • Rhee SH. Synthesis of hydroxyapatite via mechanoch- emical treatment. Biomaterials. ...
  • Liu DM, Troczynski T, Hakimi D. Effect of hydrolysis on ...
  • Gopi D, Indira J, Kavitha L, Sekar M, Mudali UK. ...
  • Guo H, Khor KA, Boey YC, Miao X. Laminated and ...
  • Ho WF, Hsu HC, Hsu SK, Hung CW, Wu SC. ...
  • Bahrololoom ME, Javidi M, Javadpour S, Ma J. Charac- terisation ...
  • Russias J, Saiz E, Nalla RK, Gryn K, Ritchie RO, ...
  • Mohamadi Y, Mirzadeh H, Moztarzadeh F, Soleimani M, Jabbari E. ...
  • Hsu FY, Tsai SW, Lan CW, Wang YJ. An in ...
  • Zandi M, Mirzadeh H, Mayer C, Urch H, Eslaminejad MB, ...
  • Xu HH, Smith DT, Simon CG. Strong and bioactive composites ...
  • Khan Y, Yaszemski MJ, Mikos AG, Laurencin CT. Tissue engineering ...
  • Vincent J. Structural biomaterials. Third edition, Princeton University Press, USA. ...
  • LeGeros RZ, Lin S, Rohanizadeh R, Mijares D, LeGeros JP. ...
  • Murugan R, Ramakrishna S. Development of nano- composites for bone ...
  • Chen L, Mccrate JM, Lee JC, Li H. The role ...
  • Tanner KE. Bioactive ceramic-reinforced composites for bone augmentation. J R ...
  • Wang M. Developing bioactive composite materials for tissue replacement. Biomaterials. ...
  • Liu B, Yang C, Yan X, Wang J, Lv Y. ...
  • Jamshidian M, Tehrany EA, Imran M, Jacquot M, Desobry S. ...
  • Rose JB, Pacelli S, Haj AJ, Dua HS, Hopkinson A, ...
  • Mohammadi Y, Mirzadeh H, Moztarzadeh F, Soleimani  M, Jabbari E. ...
  • Kumaraswamy G. Crystallization of polymers from stressed melts. J Macromol ...
  • Chang MC, Ko CC, Douglas WH. Preparation of hydroxyapatite-gelatin nanocomposite. ...
  • Pradeesh TS, Sunny MC, Varma HK, Ramesh P. Preparation of ...
  • Tsai SW, Hsu FY, Chen PL. Beads of collagen–nano- hydroxyapatite ...
  • Chang SH, Hsu YM, Wang YJ, Tsao YP, Tung KY, ...
  • Kim HW, Yoon BH, Kim HE. Microsphere of apatite-gelatin nanocomposite ...
  • Sivakumar M, Manjubala I, Rao KP. Preparation, charact- erization and ...
  • Sivakumar M, Rao KP. Preparation, characterization and in vitro release ...
  • Wei HJ, Yang HH, Chen CH, Lin WW, Chen SC, ...
  • Bahrololoom ME, Javidi M, Javadpour S, Ma J. Charac- terisation ...
  • Chang MC, Ko CC, Douglas WH. Preparation of hydrox- yapatite-gelatin ...
  • Haberko K, Buæko MM, Brzeziñska-Miecznik J, Haberko M, Mozgawa W, ...
  • نمایش کامل مراجع