Bhardwaj P, Tripathi P, Gupta R, et al. Niosomes: a review on niosomal research in the last decade. J Drug Deliv Sci Technol. 2020;56:101581.
Mishra V, Nayak P, Singh M, et al. Niosomes: potential nanocarriers for drug delivery. J Pharm Clin Res. 2020;11(03):389–94.
Patel P, Parashar A, Kaurav M, et al. Niosome: a vesicular drug delivery tool. Nanopart Nanocarriers Based Pharmaceut Formula. 2022:333
Momekova DB, Gugleva VE, Petrov PD. Nanoarchitectonics of multifunctional niosomes for advanced drug delivery. ACS Omega. 2021;6(49):33265–73.
Article CAS PubMed PubMed Central Google Scholar
Javaid S, Rana T, Naeem Z, et al. Exploring niosomes: a comprehensive review of their structure, formulation, and biomedical applications. Curr Pharm Res. 2024;2(1):01–34.
Sharma R, Dua J, Parsad D 2022 An overview on niosomes: novel pharmaceutical drug delivery system. J Drug Deliv Ther12(2-S):171–177
Yasamineh S, Yasamineh P, Kalajahi HG, et al. A state-of-the-art review on the recent advances of niosomes as a targeted drug delivery system. Int J Pharm. 2022;624:121878.
Article CAS PubMed Google Scholar
Bekraki AI. Liposomes-and niosomes-based drug delivery systems for tuberculosis treatment. Nanotechnology based approaches for tuberculosis treatment: Elsevier; 2020. p. 107–22.
Joy R, George J, John F. Brief outlook on polymeric nanoparticles, micelles, niosomes, hydrogels and liposomes: preparative methods and action. ChemistrySelect. 2022;7(6):e202104045.
Riccardi D, Baldino L, Reverchon E. Liposomes, transfersomes and niosomes: production methods and their applications in the vaccinal field. J Transl Med. 2024;22(1):339.
Article CAS PubMed PubMed Central Google Scholar
Moammeri A, Chegeni MM, Sahrayi H, et al. Current advances in niosomes applications for drug delivery and cancer treatment. Materials Today Bio. 2023:100837.
Baldino L, Riccardi D, Reverchon E. Liposomes and niosomes production by a supercritical CO2 assisted process for topical applications: a comparative study. J Supercrit Fluids. 2024;212:106342.
Witika BA, Bassey KE, Demana PH, et al. Current advances in specialised niosomal drug delivery: manufacture, characterization and drug delivery applications. Int J Mol Sci. 2022;23(17):9668.
Article CAS PubMed PubMed Central Google Scholar
Masjedi M, Montahaei T. An illustrated review on nonionic surfactant vesicles (niosomes) as an approach in modern drug delivery: fabrication, characterization, pharmaceutical, and cosmetic applications. J Drug DelivSciTechnol. 2021;61:102234.
Verma A, Tiwari A, Saraf S, et al. Emerging potential of niosomes in ocular delivery. Expert Opin Drug Deliv. 2021;18(1):55–71.
Article CAS PubMed Google Scholar
Durak S, Esmaeili Rad M, Alp Yetisgin A, et al. Niosomal drug delivery systems for ocular disease—recent advances and future prospects. Nanomaterials. 2020;10(6):1191.
Article CAS PubMed PubMed Central Google Scholar
Alkufi HK, Salman AH, Taher SS. Principles and advantages of new drug delivery technologies. J Complement Med Res. 2023;14(3):6.
Izhar MP, Hafeez A, Kushwaha P, et al. Drug delivery through niosomes: a comprehensive review with therapeutic applications. J Cluster Sci. 2023;34(5):2257–73.
Machado ND, García-Manrique P, Fernández MA, et al. Cholesterol free niosome production by microfluidics: comparative with other conventional methods. Chem Eng Res Des. 2020;162:162–71.
Uchegbu IF, Vyas SP. Non-ionic surfactant based vesicles (niosomes) in drug delivery. Int J Pharm. 1998;172(1–2):33–70.
Moghassemi S, Hadjizadeh A. Nano-niosomes as nanoscale drug delivery systems: an illustrated review. J Control Release. 2014;185:22–36.
Article CAS PubMed Google Scholar
Moghassemi S, Hadjizadeh A, Hakamivala A, et al. Growth factor-loaded nano-niosomal gel formulation and characterization. AAPS PharmSciTech. 2017;18:34–41.
Article CAS PubMed Google Scholar
García-Manrique P, Machado ND, Fernández MA, et al. Effect of drug molecular weight on niosomes size and encapsulation efficiency. Colloids Surf, B. 2020;186:110711.
Joshi S, White R, Sahu R, et al. Comprehensive screening of drug encapsulation and co-encapsulation into niosomes produced using a microfluidic device. Processes. 2020;8(5):535.
Abtahi NA, Naghib SM, Ghalekohneh SJ, et al. Multifunctional stimuli-responsive niosomal nanoparticles for co-delivery and co-administration of gene and bioactive compound: in vitro and in vivo studies. Chem Eng J. 2022;429:132090.
Shehata T, Kono Y, Higaki K, et al. In vivo distribution characteristics and anti-tumor effects of doxorubicin encapsulated in PEG-modified niosomes in solid tumor-bearing mice. J Drug Deliv Sci Technol. 2023;80:104122.
Barani M, Hajinezhad MR, Sargazi S, et al. In vitro and in vivo anticancer effect of pH-responsive paclitaxel-loaded niosomes. J Mater Sci - Mater Med. 2021;32:1–13.
Sharifi-Azad M, Zenjanab MK, Shahpouri M, et al. Codelivery of methotrexate and silibinin by niosome nanoparticles for enhanced chemotherapy of CT26 colon cancer cells. Biomed Mater. 2024;19(5):055015.
Akbari J, Saeedi M, Morteza-Semnani K, et al. Innovative topical niosomal gel formulation containing diclofenac sodium (niofenac). J Drug Target. 2022;30(1):108–17.
Kushnazarova R, Mirgorodskaya A, Zakharova LY. Niosomes modified with cationic surfactants to increase the bioavailability and stability of indomethacin. Russ Chem Bull. 2021;70(3):585–91.
Kashef MT, Saleh NM, Assar NH, et al. The antimicrobial activity of ciprofloxacin-loaded niosomes against ciprofloxacin-resistant and biofilm-forming Staphylococcus aureus. Infection and Drug Resistance. 2020:1619–1629
Khan DH, Bashir S, Khan MI, et al. Formulation optimization and in vitro characterization of rifampicin and ceftriaxone dual drug loaded niosomes with high energy probe sonication technique. J Drug Deliv Sci Technol. 2020;58:101763.
Fadaei MR, Mohammadi M, Fadaei MS, et al. The crossroad of nanovesicles and oral delivery of insulin. Expert Opin Drug Deliv. 2023;20(10):1387–413.
Article CAS PubMed Google Scholar
Zahrotunisa SS. Advance in transdermal delivery of calcitonin using nanostructured lipid carrier-based emulgel. J Pharm Pharmacogn Res. 2023;11(1):198–207.
Gomte SS, Agnihotri TG, Khopade S, et al. Protein and peptide delivery through glycogen and dextran. Peptide and Protein Drug Delivery Using Polysaccharides: Elsevier; 2024. p. 197–215.
Friedman A, Blecher K. Nanotechnology in the treatment of infectious diseases. Nanotechnology in Dermatology: Springer; 2012. p. 187–200
Lu B, Lim JM, Yu B, et al. The next-generation DNA vaccine platforms and delivery systems: advances, challenges and prospects. Front Immunol. 2024;15:1332939.
Article CAS PubMed PubMed Central Google Scholar
Limeres MJ, Toscanini MA, Devoto TB, et al. Application in gene therapy and DNA/RNA vaccines. Smart Nanomaterials for Bioencapsulation: Elsevier; 2022. p. 39–62.
Jafari M, Abolmaali SS, Tamaddon AM, et al. Nanotechnology approaches for delivery and targeting of Amphotericin B in fungal and parasitic diseases. Nanomedicine. 2021;16(10):857–77.
Article CAS PubMed Google Scholar
Akhtar N, Pathak K. Cavamax W7 composite ethosomal gel of clotrimazole for improved topical delivery: development and comparison with ethosomal gel. AAPS PharmSciTech. 2012;13:344–55.
Article CAS PubMed PubMed Central Google Scholar
Jampilek J, Kralova K. Potential of nanonutraceuticals in increasing immunity. Nanomaterials. 2020;10(11):2224.
Comments (0)