[1]
J. Park, R.S. Lakes, Biomaterials, Springer Science & Business Media, third ed., New York, 2007.
Google Scholar
[2]
T. Johnson, History of composites the evolution of lightweight composite materials, 2018.
Google Scholar
[3]
S. Ravindran, M. Kotecha, C. Huang, A.Ye, P. Pothirajan, Z.Yin, R. Magin, A. George, Biological and MRI characterization of biomimetic ECM scaffolds for cartilage tissue regeneration, Biomaterials, 71(2015) 58–70.
DOI: 10.1016/j.biomaterials.2015.08.030
Google Scholar
[4]
S. Wang, Y. Lv, S. Feng, Q. Li, T. Zhang, Bimetallic ions synergistic cross-linking high-strength rapid self-healing antibacterial hydrogel, Polym. Eng. Sci., 59(2019), 59 919-927.
DOI: 10.1002/pen.25037
Google Scholar
[5]
R. Oun, J. A. Plumb, N. J. Wheate, A cisplatin slow-release hydrogel drug delivery system based on a formulation of the macrocycle cucurbit[7]uril, gelatin and polyvinyl alcohol, J. Inorg. Biochem., 134(2014)100-105.
DOI: 10.1016/j.jinorgbio.2014.02.004
Google Scholar
[6]
M. Entezam, H.Daneshian, N. Nasirizadeh, H. A. Khonakdar, S. H. Jafari, Hybrid Hydrogels Based on Poly(vinyl alcohol) (PVA)/Agar/Poly(ethylene glycol) (PEG) Prepared by High Energy Electron Beam Irradiation: Investigation of Physico- Mechanical and Rheological Properties, Macromolecular Materials and Engineering, 302 (2017)160037.
DOI: 10.1002/mame.201600397
Google Scholar
[7]
X.-b., Kong, Q.-y., Tang, X.-Y. Chen, M.D., Yue Tu, M.D., S.-Z., Sun, Z.-l., Sun, Polyethylene glycol as a promising synthetic material for repair of spinal cord injury, Neural Regeneration Research, 12(2017)1003-1008.
DOI: 10.4103/1673-5374.208597
Google Scholar
[8]
M. I. A. Rodriguez, L. G. R. Barroso, M. L. Sanchez, Collagen: A review on its sources and potential cosmetic applications, Journal of Cosmetic Dermatologe, 17(2018)20-26.
Google Scholar
[9]
L. R. Rodrigues, F. J. M. Monteiro, H. J. Ceragioli, A. C. D. Rodas, F. J. M. Monteiro, C. A. C. Zavaglia, FTIR Analysis and Cytotoxicity Test of Titanium Dioxide Nanoparticles, Key Engineering Materials, 493-494(2012)768-774.
DOI: 10.4028/www.scientific.net/kem.493-494.768
Google Scholar
[10]
C. X. Shan, X. Hou, K. L. Choy, Corrosion resistance of TiO2 films grown on stainless steel by atomic layer deposition, Surface and Coatings Technology, 202(2008) 2399-2402.
DOI: 10.1016/j.surfcoat.2007.08.066
Google Scholar
[11]
W. Song, D.C. Markel, X. Jin, T. Shi, W. Ren, Poly (Vinyl a cohol /Collagen/hydroxyapalite hydrogel: properties and in vitro cellular response, J Biomed mater Res,100 A (2012) 3071-3079.
DOI: 10.1002/jbm.a.34240
Google Scholar
[12]
P. Liu, W. Chen, C. Liu, M. Tian, P. Liu, Anovel Poly (Vinyl/ poly ( ethylene glycol ) scaffold for tissue engineering with aunique bimodal open - celled structure fabricated using super critical fluid, scientific report, 9(2019)1-12.
DOI: 10.1038/s41598-019-46061-7
Google Scholar
[13]
Z. Bai, T. Wang, X. Zheng, Y. Huang, Y. Chen, W. Dan, high strength and bioactivity poly vinyl alcohol/ collagen composite hydrogel with tannic acid as cross - linker, Polym. Eng. Sci., 61 (2021)278-287.
DOI: 10.1002/pen.25574
Google Scholar
[14]
S. Zhang, F. llu, J. Li, L. LV, 1. Lu, Lubrication effect of polyvinyl alcohol/polyethylene glycol gel for artificial joints, Advan. Mater. Sci. Eeng., artick IP 25 88784 (2021)1-12.
Google Scholar
[15]
C. D. Grande-Tovar, J. I. Castro, D. L. Tenorio, P. A. Zapata, E. Florez-López, C. H. Valencia-Llano, chitosan–polyvinyl alcohol nanocomposites for regenerative therapy, Polym.,15(2023)1-18.
DOI: 10.3390/polym15234595
Google Scholar
[16]
F.-J. Li, J.-Z. Liang, S.-D. Zhang, B. Zhu, Tensile properties of (polylactide/polyethylene glycol)blends, J. environ. polym. Degrade.,23 (2015)407-415.
DOI: 10.1007/s10924-015-0718-7
Google Scholar
[17]
A. A. Mohammed, Evaluation of the properties of poly-Methyl methacrylate reinforced with titanium dioxide for denture application, J. Eng. Sci. Tech.,17(2022)2765 – 2775.
Google Scholar
[18]
A.A. Mohammed, J.K. Oleiwi, E.S. Al-Hassani, Influence of nanocermic on some properties of polyetheretherketone based biocomposites, Eng. Techn. J., 38 Part A (08) (2020)1126-1136.
DOI: 10.30684/etj.v38i8a.703
Google Scholar
[19]
K. Choo, Y.C. Ching, C. H. Chuah, S. Julai, N.-S. Liou, Preparation and characterization of polyvinyl alcohol-chitosan composite films reinforced with cellulose nano fiber, Mater., 9(2016)1-16).
DOI: 10.3390/ma9080644
Google Scholar
[20]
S. Zhang, F.Hu, J. Li, L. Lv, H. Lu, Lubrication effect of polyvinyl alcohol/ polyethylene glycol gel for artificial joints, Advan. Mater. Sci. Eng., (2021)1-2.
DOI: 10.1155/2021/2588784
Google Scholar
[21]
D.P. Perkasa, Erizal, B. Abbas, Polymeric biomaterials film based on poly(vinyl alcohol )and fish scale collagen by repetitive freeze-thaw cycles followed by gamma irradiation, Indon. J. Chem., 13(2013) 221-228.
DOI: 10.22146/ijc.21280
Google Scholar
[22]
N. Iqbal, R. Nazir, A. ASif, A. A. Chaudhry, M. Akram, G. Y. fan, A. Akram, R. amin, S. H. Park, R. Hussain ,Electrophoretic deposition of PVA coated hydroxy apatite on 316L stainless steel, Curr. Appl.Phy.,12(2012)755-759.
DOI: 10.1016/j.cap.2011.11.003
Google Scholar
[23]
A. A. Mohammed, Enhance the biological properties of commercial pure titanium with bioactive glass coating by pulsed laser deposition, J. Biom., Biomate. Eng., 51(2021)29-37.
DOI: 10.4028/www.scientific.net/jbbbe.51.29
Google Scholar
[24]
A. A. Mohammed, E.S. Al-Hassani, J. K. Oleiwi, In vitro study: bioactivity, biocompatibility and antibacterial behavior for polyetheretherketone composites, J. Biom., Biomate. Eng., 63(2023) 11-26.
DOI: 10.4028/p-2faovi
Google Scholar
[25]
A. A. Mohammed, J. K. Oleiwi, E.S. Al-Hassani, Heat treatment effect on biological behavior of polyetheretherketone composites, J. Biom., Biomate. Eng., 54(2021)119-128.
DOI: 10.4028/www.scientific.net/jbbbe.54.119
Google Scholar