[3]
Rani, V. Nanomedicine and its applications. J. Chem. Pharm. Res., 2015, 7(7), 216-227.
[5]
Singh, M.; Singh, S.; Prasad, S.; Gambhir, I.S. Nanotechnology in medicine and antibacterial effect of silver nanoparticles. Dig. J. Nanomater. Biostruct., 2008, 3(3), 115-122.
[13]
Heidarpour, F.; Ghani, W.A.; Ahmadun, F.R.; Sobri, S.; Zargar, M.; Mozafari, M.R. Nanosilver coated polypropylene water filter: I. Manufacture by electron beam gun using a modified Balzers 760 machine. Dig. J. Nanomater. Biostruct., 2010, 5(3), 787-796.
[14]
Heidarpour, F.; Ghani, W.W.A.K.; Bin Ahmadun, F.R.; Mozafari, M.R. Nano silver-coated polypropylene water filter: II. Evaluation of antimicrobial efficiency. Dig. J. Nanomater. Biostruct., 2010, 5(3), 797-804.
[33]
Rais, A.; Anam, M. Green synthesis (using plant extracts) of Ag and Au nanoparticles. Glob. J. Nanomed., 2017, 2(3)555589
[38]
Minaeian, S.; Shahverdi, A.R.; Nohi, A.S. Extracellular biosynthesis of silver nanoparticles by some bacteria. JSIAU, 2008, 17(66), 1-4.
[40]
Das, C.A.; Kumar, V.G.; Dhas, T.S.; Karthick, V.; Govindaraju, K.; Joselin, J.M.; Baalamurugan, J. Antibacterial activity of silver nanoparticles (biosynthesis): A short review on recent advances. Biocatal. Agric. Biotechnol., 2020, 27101593
[44]
Mozafari, M.R.; Mortazavi, S.M. Nanoliposomes: From Fundamentals to Recent Developments; Trafford Publishing Ltd: Oxford, UK, 2005.
[61]
Metselaar, J.M. Liposomal targeting of glucocorticoids: a novel treatment approach for inflammatory disorders., PhD Thesis, Utrecht University, Utrecht, Netherlands. 2003.
[67]
Deodhar, S. Development and in-vitro evaluation of long circulating liposomes for targeted delivery of gemcitabine and irinotecan in pancreatic ductal adenocarcinoma Doctoral dissertation, Creighton University,, 2018.
[73]
Podaru, G. Exploring controlled drug release from magneto liposomes (Doctoral dissertation, Kansas State University),, 2017.
[81]
Mason, T.J. Chemistry with Ultrasound; London; New York: Published for the Society of Chemical Industry by Elsevier Applied Science: New York, NY, USA , 1990.
[108]
Needham, D. Temperature-Sensitive Liposomal Formulation U.S. Patent no. 6200598B1 2001.
[127]
Schott, H.; Schwendener, R. Incorporation of lipophilic antitumor and antiviral drugs into the lipid bilayer of small unilamellar liposomes.Liposome Technology; Gregory, G., Ed.; CRC Press, 2016, pp. 75-86.
[128]
Amoabediny, G.; Ochi, M.M.; Rezayat, S.M.; Akbarzadeh, A.; Ebrahimi, B. Targeted nano-liposome co-entrapping anti-cancer drugs US9855216B2, 2018.
[131]
Mozafari, M.R.; Danaei, M.; Javanmard, R.; Raji, M.; Maherani, B. Nanoscale lipidic carrier systems: importance of preparation method and solvents. Glob. J. Nanomed., 2017, 2(4)555593
[135]
Azzazy, H.M.E.S.; Abduo, S.M.S.; Eid, K.A.M.; Guirgis, B.S.S. Direct detection of disease biomarkers in clinical specimens using cationic nanoparticle-based assays versatile and green methods for synthesis of anisotropic silver nanostructures US20150017258A1, 2015.
[136]
Chanda, D. Liposomal Uptake of Silver and Gold Nanoparticles. Master's Thesis. Louisiana State University and Agricultural and Mechanical College,, 2013.
[142]
Zhang, L.C.; Chen, L.Y.; Wang, L. Surface modification of titanium and titanium alloys: technologies, developments and future interests. Adv. Eng. Mater., 2019, 20191901258
[145]
Hadaruga, D.I.; Hadaruga, N.G.; Lazau, C.; Craciun, C.; Grozescu, I. Liposomes containing titanium dioxide nanoparticles. J. Agroaliment. Processes Technol., 2010, 16(1), 62-66.