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Critical Reviews™ in Therapeutic Drug Carrier Systems

Published 6 issues per year

ISSN Print: 0743-4863

ISSN Online: 2162-660X

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 2.7 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 3.6 The Immediacy Index is the average number of times an article is cited in the year it is published. The journal Immediacy Index indicates how quickly articles in a journal are cited. Immediacy Index: 0.8 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00023 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.39 SJR: 0.42 SNIP: 0.89 CiteScore™:: 5.5 H-Index: 79

Indexed in

Colloidal Drug Delivery Systems: Current Status and Future Directions

Volume 32, Issue 2, 2015, pp. 89-147
DOI: 10.1615/CritRevTherDrugCarrierSyst.2015010159
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ABSTRACT

In this paper, we provide an overview an extensive range of colloidal drug delivery systems with special focus on vesicular and particulates systems that are being used in research or might be potentially useful as carriers systems for drug or active biomolecules or as cell carriers with application in the therapeutic field. We present some important examples of commercially available drug delivery systems with applications in research or in clinical fields. This class of systems is widely used due to excellent drug targeting, sustained and controlled release behavior, higher entrapment efficiency of drug molecules, prevention of drug hydrolysis or enzymatic degradation, and improvement of therapeutic efficacy. These characteristics help in the selection of suitable carrier systems for drug, cell, and gene delivery in different fields.

CITED BY
  1. Rath Goutam, Hussain Taqadus, Chauhan Gaurav, Garg Tarun, Kumar Goyal Amit, Fabrication and characterization of cefazolin-loaded nanofibrous mats for the recovery of post-surgical wound, Artificial Cells, Nanomedicine, and Biotechnology, 44, 8, 2016. Crossref

  2. Singh Jagdeep, Garg Tarun, Rath Goutam, Goyal Amit K., Advances in nanotechnology-based carrier systems for targeted delivery of bioactive drug molecules with special emphasis on immunotherapy in drug resistant tuberculosis – a critical review, Drug Delivery, 23, 5, 2016. Crossref

  3. Goyal Amit K., Garg Tarun, Bhandari Sourav, Rath Goutam, Advancement in pulmonary drug delivery systems for treatment of tuberculosis, in Nanostructures for Drug Delivery, 2017. Crossref

  4. Kumar Lalit, Verma Shivani, Vaidya Bhuvaneshwar, Mehra Neelesh K., Nanocarrier-Assisted Antimicrobial Therapy Against Intracellular Pathogens, in Nanostructures for Antimicrobial Therapy, 2017. Crossref

  5. Zhang Nan-nan, Yu Ri-sheng, Xu Min, Cheng Xing-yao, Chen Chun-miao, Xu Xiao-ling, Lu Chen-ying, Lu Kong-jun, Chen Min-jiang, Zhu Meng-lu, Weng Qiao-you, Hui Jun-guo, Zhang Qian, Du Yong-Zhong, Ji Jian-song, Visual targeted therapy of hepatic cancer using homing peptide modified calcium phosphate nanoparticles loading doxorubicin guided by T1 weighted MRI, Nanomedicine: Nanotechnology, Biology and Medicine, 14, 7, 2018. Crossref

  6. Straube Arthur V, Pagès Josep M, Ortiz-Ambriz Antonio, Tierno Pietro, Ignés-Mullol Jordi, Sagués Francesc, Assembly and transport of nematic colloidal swarms above photo-patterned defects and surfaces, New Journal of Physics, 20, 7, 2018. Crossref

  7. Shegokar Ranjita, Fernandes Ana R., Souto Eliana B., Nanopharmaceuticals in immunology, in Emerging Nanotechnologies in Immunology, 2018. Crossref

  8. Patel Mrunali R., Patel Rashmin B., Thakore Shivam D., Nanoemulsion in drug delivery, in Applications of Nanocomposite Materials in Drug Delivery, 2018. Crossref

  9. Sheng Ruilong, Steroid-Based Supramolecular Systems and their Biomedical Applications: Biomolecular Recognition and Transportation, in Chemistry and Biological Activity of Steroids, 2020. Crossref

  10. Istratov V. V., Vasnev V. A., Silatrane-containing poly(β-amino esters), Russian Chemical Bulletin, 69, 6, 2020. Crossref

  11. Leyva Sergi Granados, Stoop Ralph Lukas, Tierno Pietro, Pagonabarraga Ignacio, Dynamics and clogging of colloidal monolayers magnetically driven through a heterogeneous landscape, Soft Matter, 16, 30, 2020. Crossref

  12. Ahmad Awais, Ahmad Ikram, Khan Anish, Abdullah Muhammad, Yern Chee Ching, Verpoort Francis, Introduction to nanomedicine an overview, in Nanomedicine Manufacturing and Applications, 2021. Crossref

  13. Liang Xi, Hua Yabing, Liu Qian, Li Zhiguo, Yu Fanglin, Gao Jing, Zhang Hui, Zheng Aiping, Solid Self-Emulsifying Drug Delivery System (Solid SEDDS) for Testosterone Undecanoate: In Vitro and In Vivo Evaluation, Current Drug Delivery, 18, 5, 2021. Crossref

  14. Mazlan Mohd Khairul Nizam, Mohd Tazizi Mohammad Hafizie Dianel, Ahmad Rosliza, Noh Muhammad Amirul Asyraf, Bakhtiar Athirah, Wahab Habibah A., Mohd Gazzali Amirah, Antituberculosis Targeted Drug Delivery as a Potential Future Treatment Approach, Antibiotics, 10, 8, 2021. Crossref

  15. Choudhury Satabdi Datta, Nano-Medicines a Hope for Chagas Disease!, Frontiers in Molecular Biosciences, 8, 2021. Crossref

  16. Day Candace M., Sweetman Martin J., Garg Sanjay, Mesoporous silica nanoparticles for drug combination delivery in cancer therapy, in Nanocarriers for the Delivery of Combination Drugs, 2021. Crossref

  17. Rath Goutam, Pradhan Deepak, Ghosh Goutam, Goyal Amit K., Challenges and Opportunities of Nanotechnological based Approach for the Treatment of Tuberculosis, Current Pharmaceutical Design, 27, 17, 2021. Crossref

  18. Liu Zhe, McClements David Julian, Shi Aimin, Zhi Lanyi, Tian Yanjie, Jiao Bo, Liu Hongzhi, Wang Qiang, Janus particles: A review of their applications in food and medicine, Critical Reviews in Food Science and Nutrition, 2022. Crossref

  19. Huo Ying, Liu Yingying, Xia Mingfeng, Du Hong, Lin Zhaoyun, Li Bin, Liu Hongbin, Nanocellulose-Based Composite Materials Used in Drug Delivery Systems, Polymers, 14, 13, 2022. Crossref

  20. Algharib Samah Attia, Dawood Ali, Xie Shuyu, Nanoparticles for treatment of bovine Staphylococcus aureus mastitis, Drug Delivery, 27, 1, 2020. Crossref

  21. Ajose Daniel Jesuwenu, Abolarinwa Tesleem Olatunde, Oluwarinde Bukola Opeyemi, Montso Peter Kotsoana, Fayemi Omolola Esther, Aremu Adeyemi Oladapo, Ateba Collins Njie, Application of Plant-Derived Nanoparticles (PDNP) in Food-Producing Animals as a Bio-Control Agent against Antimicrobial-Resistant Pathogens, Biomedicines, 10, 10, 2022. Crossref

  22. Chhitij Thapa, Seo Jo-Eun, Keum Taekwang, Noh Gyubin, Bashyal Santosh, Lamichhane Shrawani, Kim Jung Hwan, Lee Jae Heon, Park Jee Hun, Choi Jaewoong, Song Se Hyun, Lee Sangkil, Optimized self-microemulsifying drug delivery system improves the oral bioavailability and brain delivery of coenzyme Q10, Drug Delivery, 29, 1, 2022. Crossref

  23. Sastri K. Trideva, Gupta N. Vishal, M Sharadha, Chakraborty Souvik, Kumar Hitesh, Chand Pallavi, Balamuralidhara V., Gowda D.V., Nanocarrier facilitated drug delivery to the brain through intranasal route: A promising approach to transcend bio-obstacles and alleviate neurodegenerative conditions, Journal of Drug Delivery Science and Technology, 75, 2022. Crossref

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