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   Development and Investigation of Novel Alginate-Hyaluronic Acid Bone Fillers Using Freeze Drying Technique For Orthopedic Field  
   
نویسنده Jamnezhad Sepehr ,Asefnejad Azadeh ,Motififard Mehdi ,Yazdekhasti Hassan ,Kolooshani Amin ,Saber-Samandari Saeed ,Khandan Amirsalar
منبع Nanomedicine Research Journal - 2020 - دوره : 5 - شماره : 4 - صفحه:306 -315
چکیده    Cartilage tissue has a low cell population with a dense extracellular matrix (ecm) and is also devoid of neurons as well as blood and lymph vessels. bone tissue is able to heal itself but in cases of serious damage and auxiliary treatment methods are necessary. nevertheless, they have their own restrictions and downsides. tissue engineering is working towards overcoming these challenges using 3d printing and freezedrying technique. this research project aims to develop and study the properties of a freezedried antibacterial tissue based on alginate, hyaluronic acid and titanium dioxide nanoparticles using freeze drying technique. the mechanical evaluations showed that the addition of titanium dioxide improved tensile strength, hardness and wettability of the antibacterial nanocomposite scaffold. the biological assessments of the sample were evaluated in the simulated body fluid to stimulate the hard tissue reaction with biological environment. the samples were characterized using xray diffraction (xrd) and scanning electron microscopy (sem) analysis. the obtained results indicated that addition of titanium oxide nanoparticle improved the hyaluronic acid polymer for bone filler using for orthopedic applications. the xrd analysis did not detect the formation of any new unwanted chemicals in the composite samples. the microscopic assessments confirmed the formation of nanocomposite scaffold containing titanium dioxide nanoparticles, with a porosity percentage between 77% and 82%. the phase analysis confirmed the triploid amorphous structure showing a significant resemblance to natural human bone tissue, thus supporting the idea of using this biomaterial as a multilayer bone filler.
کلیدواژه Biomaterials ,Scaffolds ,Bone Substitute ,Orthopedics ,Cartilage
آدرس Islamic Azad University, Science And Research Branch, Biomedical Engineering Department, Iran, Islamic Azad University, Science And Research Branch, Biomedical Engineering Department, Iran, Isfahan University Of Medical Sciences, School Of Medicine, Department Of Orthopedic Surgery, Iran, Isfahan University Of Medical Sciences, Student Research Committee, School Of Medicine, Iran, Islamic Azad University, Khomeinishahr Branch, Mechanical Engineering Department, Iran, Amirkabir University Of Technology, New Technologies Research Center, Iran, Amirkabir University Of Technology, New Technologies Research Center, Iran
پست الکترونیکی amir_salar_khandan@yahoo.com
 
     
   
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