Nitinol: From historical milestones to functional properties and biomedical applications

被引:42
作者
Alipour, Saeid [1 ]
Taromian, Farzaneh [2 ]
Ghomi, Erfan Rezvani [3 ]
Zare, Mina [3 ]
Singh, Sunpreet [3 ,4 ]
Ramakrishna, Seeram [3 ]
机构
[1] Missouri Univ Sci & Technol, Dept Mat Sci & Engn, Rolla, MO 65409 USA
[2] Univ Tehran, Fac New Sci & Technol, Dept Life Sci Engn, Tehran, Iran
[3] Natl Univ Singapore, Ctr Nanotechnol & Sustainabil, Dept Mech Engn, Singapore 117581, Singapore
[4] Chandigarh Univ, Mech Engn, Ajitgarh, Punjab, India
关键词
Nitinol; biomedical applications; orthopedics; shape memory effect; characteristics; SHAPE-MEMORY ALLOY; POROUS NICKEL-TITANIUM; IN-VITRO; MEDICAL APPLICATIONS; TRANSFORMATION BEHAVIOR; SURFACE MODIFICATION; BIOCOMPATIBILITY; METAL; CORROSION; STENTS;
D O I
10.1177/09544119221123176
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Isoatomic NiTi alloy (Nitinol) has become an important biomaterial due to its unique characteristics, including shape memory effect, superelasticity, and high damping. Nitinol has been widely used in the biomedical field, including orthopedics, vascular stents, orthodontics, and other medical devices. However, there have been convicting views about the biocompatibility of Nitinol. Some studies have shown that Nitinol has extremely low cytotoxicity, indicating Nitinol has good biocompatibility. However, some studies have shown that the in-vivo corrosion resistance of Nitinol significantly decreases. This comprehensive paper discusses the historical developments of Nitinol, its biomedical applications, and its specific functional property. These render the suitability of Nitinol for such biomedical applications and provide insights into its in vivo and in vitro biocompatibility in the physiological environment and the antimicrobial strategies that can be applied to enhance its biocompatibility. Although 3D metal printing is still immature and Nitinol medical materials are difficult to be processed, Nitinol biomaterials have excellent potential and commercial value for 3D printing. However, there are still significant problems in the processing of Nitinol and improving its biocompatibility. With the deepening of research and continuous progress in surface modification and coating technology, a series of medical devices made from Nitinol are expected to be released soon.
引用
收藏
页码:1595 / 1612
页数:18
相关论文
共 107 条
[61]   Long-term corrosion tests of nanostructural nitinol of (55.91 wt % Ni, 44.03 wt % Ti) composition under static conditions: Ion release [J].
Nasakina E.O. ;
Sevost’yanov M.A. ;
Gol’dberg M.A. ;
Demin K.Y. ;
Baikin A.S. ;
Goncharenko B.A. ;
Cherkasov V.A. ;
Kolmakov A.G. ;
Zabolotnyi V.T. .
Inorganic Materials: Applied Research, 2015, 6 (01) :59-66
[62]   In vivo biocompatibility evaluation of 3D-printed nickel-titanium fabricated by selective laser melting [J].
Naujokat, Hendrik ;
Goekkaya, Ali Ihsan ;
Acil, Yahya ;
Loger, Klaas ;
Klueter, Tim ;
Fuchs, Sabine ;
Wiltfang, Joerg .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 2022, 33 (02)
[63]   Balancing osteoblast functions and bacterial adhesion on functionalized titanium surfaces [J].
Neoh, Koon Gee ;
Hu, Xuefeng ;
Zheng, Dong ;
Kang, En Tang .
BIOMATERIALS, 2012, 33 (10) :2813-2822
[64]   Prevalence of Fracture and Fragment Embolization of Bard Retrievable Vena Cava Filters and Clinical Implications Including Cardiac Perforation and Tamponade [J].
Nicholson, William ;
Nicholson, W. Jay ;
Tolerico, Paul ;
Taylor, Bradley ;
Solomon, Samuel ;
Schryver, Thomas ;
McCullum, Kevin ;
Goldberg, Howard ;
Mills, James ;
Schuler, Brian ;
Shears, Larry ;
Siddoway, Lyle ;
Agarwal, Nikhilesh ;
Tuohy, Christopher .
ARCHIVES OF INTERNAL MEDICINE, 2010, 170 (20) :1827-1831
[65]   Fracture of self-expanding nitinol stents stressed in vitro under simulated intravascular conditions [J].
Nikanorov, Alexander ;
Smouse, H. Bob ;
Osman, Karim ;
Bialas, Michael ;
Shrivastava, Sanjay ;
Schwartz, Lewis B. .
JOURNAL OF VASCULAR SURGERY, 2008, 48 (02) :435-440
[66]  
Nouri Alireza., 2015, Surface Coating and Modification of Metallic Biomaterials, P3, DOI [10.1016/B978-1-78242-303-4.00001-6, DOI 10.1016/B978-1-78242-303-4.00001-6]
[67]   Science and technology of shape-memory alloys. New developments [J].
Otsuka, K ;
Kakeshita, T .
MRS BULLETIN, 2002, 27 (02) :91-100
[68]  
Otsuka K., 1999, Shape Memory Materials
[69]   A review on NiTi alloys for biomedical applications and their biocompatibility [J].
Patel, Swadhin Kumar ;
Behera, Bikram ;
Swain, Biswajit ;
Roshan, Rakesh ;
Sahoo, Deepak ;
Behera, A. .
MATERIALS TODAY-PROCEEDINGS, 2020, 33 :5548-5551
[70]   Medical uses of nitinol [J].
Pelton, AR ;
Stöckel, D ;
Duerig, TW .
SHAPE MEMORY MATERIALS, 2000, 327-3 :63-70