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Chemistry

D-Index
73
Citations
15815
World Ranking
5094
National Ranking
294

Overview

Ali Nokhodchi is a researcher affiliated with the University of Sussex in the United Kingdom, with a focus on pharmaceutical sciences and biomedical applications. Their scholarly work spans key fields including Pharmacology, Toxicology and Pharmaceutics, and Medicine, emphasizing subfields such as Pharmaceutical Science, Biomedical Engineering, and Biomaterials.

The primary areas of research undertaken by Nokhodchi include Drug Solubility and Delivery Systems, Advanced Drug Delivery Systems, and Advancements in Transdermal Drug Delivery. Other notable topics in their research corpus cover Crystallization and Solubility Studies, Nanoparticle-Based Drug Delivery, Inhalation and Respiratory Drug Delivery, and Essential Oils and Antimicrobial Activity.

Nokhodchi's frequent publication venues reflect their specialization, with extensive contributions to the Journal of Drug Delivery Science and Technology, AAPS PharmSciTech, International Journal of Pharmaceutics, Journal of Pharmaceutical Innovation, and Pharmaceutical Development and Technology.

Noteworthy recent papers authored or co-authored by Nokhodchi include:

  • Emerging 3D printing technologies for drug delivery devices: Current status and future perspective, 2021, Advanced Drug Delivery Reviews
  • Solid lipid nanoparticles and nanostructured lipid carriers: a review of the methods of manufacture and routes of administration, 2022, Pharmaceutical Development and Technology
  • Methylene blue-loaded niosome: preparation, physicochemical characterization, and in vivo wound healing assessment, 2020, Drug Delivery and Translational Research
  • 3D printing technology as innovative solutions for biomedical applications, 2020, Drug Discovery Today
  • An updated review of folate-functionalized nanocarriers: A promising ligand in cancer, 2021, Drug Discovery Today

Frequent collaborators of Nokhodchi include Kofi Asare-Addo, Majid Saeedi, Matthew Lam, Jafar Âkbari, and Pedram Ebrahimnejad, indicating active cooperation within a network of researchers in related disciplines.

Best Publications

  • Kinetic analysis of drug release from nanoparticles

    Mohammad Barzegar-Jalali;Khosro Adibkia;Hadi Valizadeh;Mohammad Reza Siahi Shadbad

  • The effect of type and concentration of vehicles on the dissolution rate of a poorly soluble drug (indomethacin) from liquisolid compacts.

    A Nokhodchi;Y Javadzadeh;Siahi-Shadbad;M Barzegar-Jalali

  • Liquisolid technique for dissolution rate enhancement of a high dose water-insoluble drug (carbamazepine).

    Yousef Javadzadeh;Baharak Jafari-Navimipour;Ali Nokhodchi;Ali Nokhodchi

  • The role of oral controlled release matrix tablets in drug delivery systems.

    Ali Nokhodchi;Shaista Raja;Pryia Patel;Kofi Asare-Addo

  • An overview on antimicrobial and wound healing properties of ZnO nanobiofilms, hydrogels, and bionanocomposites based on cellulose, chitosan, and alginate polymers

    Mehran Alavi;Ali Nokhodchi;Ali Nokhodchi

  • The microsponge delivery system of benzoyl peroxide: preparation, characterization and release studies.

    M. Jelvehgari;M.R. Siahi-Shadbad;S. Azarmi;Gary P. Martin

  • Enhancement of dissolution rate of piroxicam using liquisolid compacts.

    Y. Javadzadeh;M.R. Siahi-Shadbad;M. Barzegar-Jalali;A. Nokhodchi;A. Nokhodchi

  • Advanced methodologies for cocrystal synthesis.

    Dennis Douroumis;Steven A. Ross;Ali Nokhodchi

  • Emerging 3D printing technologies for drug delivery devices: Current status and future perspective.

    Jiawei Wang;Yu Zhang;Niloofar Heshmati Aghda;Amit Raviraj Pillai

  • The enhancement effect of surfactants on the penetration of lorazepam through rat skin

    Ali Nokhodchi;Javad Shokri;A. Dashbolaghi;Davood Hassan-Zadeh

  • The effect of surfactants on the skin penetration of diazepam.

    J. Shokri;A. Nokhodchi;A. Dashbolaghi;D. Hassan-Zadeh

  • Liquisolid technique as a new approach to sustain propranolol hydrochloride release from tablet matrices

    Yousef Javadzadeh;Leila Musaalrezaei;Ali Nokhodchi

  • Physicochemical characterization of solid dispersions of indomethacin with PEG 6000, Myrj 52, lactose, sorbitol, dextrin, and Eudragit E100.

    Hadi Valizadeh;Ali Nokhodchi;Nahid Qarakhani;Parvin Zakeri‐Milani

  • Development of azithromycin–PLGA nanoparticles: Physicochemical characterization and antibacterial effect against Salmonella typhi

    Ghobad Mohammadi;Hadi Valizadeh;Mohammad Barzegar-Jalali;Farzaneh Lotfipour

  • Piroxicam nanoparticles for ocular delivery: Physicochemical characterization and implementation in endotoxin-induced uveitis

    Khosro Adibkia;Mohammad Reza Siahi Shadbad;Ali Nokhodchi;Alireza Javadzedeh

  • Solid lipid nanoparticles and nanostructured lipid carriers: a review of the methods of manufacture and routes of administration

    Unknown

  • The effect of penetration enhancers on drug delivery through skin: a QSAR study.

    Taravat Ghafourian;Parinaz Zandasrar;Hamed Hamishekar;Ali Nokhodchi

  • Crystal modification of phenytoin using different solvents and crystallization conditions

    A Nokhodchi;N Bolourtchian;R Dinarvand

  • The effect of terpene concentrations on the skin penetration of diclofenac sodium.

    Ali Nokhodchi;K. Sharabiani;Mohammad Reza Rashidi;Taravat Ghafourian

  • To enhance dissolution rate of poorly water-soluble drugs: Glucosamine hydrochloride as a potential carrier in solid dispersion formulations

    Hiba Al-Hamidi;Alison A. Edwards;Mohammad A. Mohammad;Ali Nokhodchi;Ali Nokhodchi

  • An investigation of physicochemical properties of piroxicam liquisolid compacts.

    Yousef Javadzadeh;Mohammad Reza Siahi;Solmaz Asnaashari;Ali Nokhodchi

  • Swellable elementary osmotic pump (SEOP): an effective device for delivery of poorly water-soluble drugs

    Javad Shokri;Parinaz Ahmadi;Parisa Rashidi;Mahbobeh Shahsavari

  • Cogrinding as an approach to enhance dissolution rate of a poorly water-soluble drug (gliclazide)

    Mohammad Barzegar-Jalali;Hadi Valizadeh;Mohammad-Reza Siahi Shadbad;Khosro Adibkia

  • In situ cross-linking of sodium alginate with calcium and aluminum ions to sustain the release of theophylline from polymeric matrices.

    Ali Nokhodchi;Anish Tailor

Frequent Co-Authors

Mohammad Barzegar-Jalali
Mohammad Barzegar-Jalali Tabriz University of Medical Sciences
Hamed Hamishehkar
Hamed Hamishehkar Tabriz University of Medical Sciences
Gary P. Martin
Gary P. Martin King's College London
Abolghasem Jouyban
Abolghasem Jouyban Tabriz University of Medical Sciences
Jaleh Varshosaz
Jaleh Varshosaz Isfahan University of Medical Sciences
William E. Acree
William E. Acree University of North Texas
Babur Z. Chowdhry
Babur Z. Chowdhry University of Greenwich
Rassoul Dinarvand
Rassoul Dinarvand Tehran University of Medical Sciences
Alireza Foroumadi
Alireza Foroumadi Tehran University of Medical Sciences
Hamid Mirzadeh
Hamid Mirzadeh Amirkabir University of Technology

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