Abaszadeh F, Eslami J, Bazrafcan L. Knowledge, attitude, and performance of operating room personnel about occupational exposure to blood-borne infections. Space. 2020;4:6.
Wang C, Fan W, Zhang Z, Wen Y, Xiong L, Chen X. Advanced nanotechnology leading the way to multimodal imaging-guided precision surgical therapy. Adv Mater. 2019;31(49):1904329.
Boverhof DR, Bramante CM, Butala JH, Clancy SF, Lafranconi M, West J, Gordon SC. Comparative assessment of nanomaterial definitions and safety evaluation considerations. Regul Toxicol Pharmacol. 2015;73(1):137–50.
Article CAS PubMed Google Scholar
Xu J, Song M, Fang Z, Zheng L, Huang X, Liu K. Applications and challenges of ultra-small particle size nanoparticles in tumor therapy. J Control Release. 2023;353:699–712.
Article CAS PubMed Google Scholar
Bhardwaj AK, Kant A, Rehalia A, Singh V, Sharma R. A review on nanomaterials for drug delivery systems and application of carbon based nanomaterials. ES Mater Manuf. 2023;21:824.
Petersen DK, Naylor TM, Ver Halen JP. Current and future applications of nanotechnology in plastic and reconstructive surgery. Plast Aesthet Res. 2014;1:43–50.
Salehahmadi Z, Hajiliasgari F. Nanotechnology tolls the bell for plastic surgeons. World J Plast Surg. 2013;2(2):71.
PubMed PubMed Central Google Scholar
Petersen DK, Naylor TM, Halen JPV. Current and future applications of nanotechnology in plastic and reconstructive surgery. Plast Aesthet Res. 2014;1:43–50.
Mohanta YK, Chakrabartty I, Mishra AK, Chopra H, Mahanta S, Avula SK, Patowary K, Ahmed R, Mishra B, Mohanta TK, et al. Nanotechnology in combating biofilm: a smart and promising therapeutic strategy. Front Microbiol. 2023. https://doi.org/10.3389/fmicb.2022.1028086.
Article PubMed PubMed Central Google Scholar
Chopra H, Bibi S, Mishra AK, Tirth V, Yerramsetty SV, Murali SV, Ahmad SU, Mohanta YK, Attia MS, Algahtani A, et al. Nanomaterials: a promising therapeutic approach for cardiovascular diseases. J Nanomater. 2022;2022:4155729.
Haleem A, Javaid M, Singh RP, Rab S, Suman R. Applications of nanotechnology in medical field: a brief review. Glob Health J. 2023;7(2):70–7.
Campbell G. Nanotechnology and its implications for the health of the EU citizen: diagnostics, drug discovery and drug delivery. In.: Citeseer; 2011.
Ferrari M. Cancer nanotechnology: opportunities and challenges. Nat Rev Cancer. 2005;5(3):161–71.
Article CAS PubMed Google Scholar
Freitas RA Jr. Nanotechnology, nanomedicine and nanosurgery. Int J Surg. 2005;3:243–6.
Freitas RA. Current status of nanomedicine and medical nanorobotics. J Comput Theor Nanosci. 2005;2(1):1–25.
Kroeker KL. Medical nanobots. Commun ACM. 2009;52(9):18–9.
Mali S. Nanotechnology for surgeons. Indian J Surg. 2013;75(6):485–92.
Woźniak M, Płoska A, Siekierzycka A, Dobrucki LW, Kalinowski L, Dobrucki IT. Molecular imaging and nanotechnology—emerging tools in diagnostics and therapy. Int J Mol Sci. 2022;23(5):2658.
Article PubMed PubMed Central Google Scholar
Bortot B, Mangogna A, Di Lorenzo G, Stabile G, Ricci G, Biffi S. Image-guided cancer surgery: a narrative review on imaging modalities and emerging nanotechnology strategies. J Nanobiotechnol. 2023;21(1):155.
Sahu T, Ratre YK, Chauhan S, Bhaskar LVKS, Nair MP, Verma HK. Nanotechnology based drug delivery system: current strategies and emerging therapeutic potential for medical science. J Drug Deliv Sci Technol. 2021;63: 102487.
Joob B, Wiwanitkit V. Nanotechnology for health: a new useful technology in medicine. Med J Dr DY Patil Univ. 2017;10(5):401.
Mariappan N. Recent trends in nanotechnology applications in surgical specialties and orthopedic surgery. Biomed Pharmacol J. 2019;12(3):1095–127.
Kateb B, Heiss JD. The textbook of nanoneuroscience and nanoneurosurgery. Boca Raton: CRC Press; 2013.
Amiri M, Salavati-Niasari M, Akbari A. Magnetic nanocarriers: evolution of spinel ferrites for medical applications. Adv Coll Interface Sci. 2019;265:29–44.
Amiri M, Eskandari K, Salavati-Niasari M. Magnetically retrievable ferrite nanoparticles in the catalysis application. Adv Coll Interface Sci. 2019;271: 101982.
Amiri M, Khazaeli P, Salehabadi A, Salavati-Niasari M. Hydrogel beads-based nanocomposites in novel drug delivery platforms: recent trends and developments. Adv Coll Interface Sci. 2021;288: 102316.
Hosseini M, Amiri M, Ghanbari M, Mahdi MA, Abdulsahib WK, Salavati-Niasari M. Drug delivery based on chitosan, β-cyclodextrin and sodium carboxymethyl cellulose as well as nanocarriers for advanced leukemia treatment. Biomed Pharmacother. 2022;153: 113369.
Article CAS PubMed Google Scholar
Gholamrezaei S, Amiri M, Amiri O, Salavati-Niasari M, Moayedi H. Ultrasound-accelerated synthesis of uniform SrMnO3 nanoparticles as water-oxidizing catalysts for water splitting systems. Ultrason Sonochem. 2020;62: 104899.
Article CAS PubMed Google Scholar
Mohassel R, Amiri M, Abbas AK, Sobhani A, Ashrafi M, Moayedi H, Salavati-Niasari M. Pechini synthesis using propylene glycol and various acid as stabilizing agents and characterization of Gd2NiMnO6 ceramic nanostructures with good photocatalytic properties for removal of organic dyes in water. J Market Res. 2020;9(2):1720–33.
Smith WR, Hudson PW, Ponce BA, Rajaram Manoharan SR. Nanotechnology in orthopedics: a clinically oriented review. BMC Musculoskelet Disord. 2018;19(1):1–10.
Catledge SA, Borham J, Vohra YK, Lacefield WR, Lemons JE. Nanoindentation hardness and adhesion investigations of vapor deposited nanostructured diamond films. J Appl Phys. 2002;91(8):5347–52.
Winnicki M. Advanced functional metal-ceramic and ceramic coatings deposited by low-pressure cold spraying: a review. Coatings. 2021;11(9):1044.
Amirtharaj Mosas KK, Chandrasekar AR, Dasan A, Pakseresht A, Galusek D. Recent advancements in materials and coatings for biomedical implants. Gels. 2022;8(5):323.
Article CAS PubMed PubMed Central Google Scholar
Catledge SA, Fries MD, Vohra YK, Lacefield WR, Lemons JE, Woodard S, Venugopalanc R. Nanostructured ceramics for biomedical implants. J Nanosci Nanotechnol. 2002;2(3–4):293–312.
Article CAS PubMed Google Scholar
Nikolova MP, Apostolova MD. Advances in multifunctional bioactive coatings for metallic bone implants. Materials. 2023;16(1):183.
Thomas V, Catledge SA, Baker P, Siegal GP, Vohra YK. Chapter 7—ceramic coatings in load-bearing articulating joint implants. In: Bose S, Bandyopadhyay A, editors. Materials for bone disorders. Cambridge: Academic Press; 2017. p. 315–47.
Rifai A, Houshyar S, Fox K. Progress towards 3D-printing diamond for medical implants: a review. Ann Print Med. 2021;1: 100002.
Quinn J, McFadden R, Chan CW, Carson L. Titanium for orthopedic applications: an overview of surface modification to improve biocompatibility and prevent bacterial biofilm formation. iScience. 2020;23(11): 101745.
Article CAS PubMed PubMed Central Google Scholar
Florea DA, Albuleț D, Grumezescu AM, Andronescu E. Surface modification—a step forward to overcome the current challenges in orthopedic industry and to obtain an improved osseointegration and antimicrobial properties. Mater Chem Phys. 2020;243: 122579.
Bandyopadhyay A, Mitra I, Goodman SB, Kumar M, Bose S. Improving biocompatibility for next generation of metallic implants. Prog Mater Sci. 2023;133: 101053.
Article CAS PubMed Google Scholar
Kurup A, Dhatrak P, Khasnis N. Surface modification techniques of titanium and titanium alloys for biomedical dental applications: a review. Mater Today Proc. 2021;39:84–90.
George SM, Nayak C, Singh I, Balani K. Multifunctional hydroxyapatite composites for orthopedic applications: a review. ACS Biomater Sci Eng. 2022;8(8):3162–86.
Article CAS PubMed Google Scholar
Hadzhieva Z, Boccaccini AR. Recent developments in electrophoretic deposition (EPD) of antibacterial coatings for biomedical applications—a review. Curr Opin Biomed Eng. 2022;21: 100367.
Pani R, Ranjan Behera R, Roy S. Electrophoretic deposition of hydroxyapatite coating: a state of art. Mater Today Proc. 2022;62:4086–93.
Comments (0)