รองศาสตราจารย์ ดร.ภญ.

ชุดา จิตตสุโภ

Associate Professor Dr.

chuda chittasupho

Expertise: Targeted drug delivery, In vitro assay Drug product formulations, Drug and Pharmaceutical product stability Controlled release drug delivery
หน่วยงาน
ภาควิชาวิทยาศาสตร์เภสัชกรรม
อีเมล
chuda.c@cmu.ac.th ,c_chuda@hotmail.com
การศึกษา
  • 2546, เภสัชศาสตร์บัณฑิต (เกียรตินิยมอันดับหนึ่ง)
    มหาวิทยาลัยเชียงใหม่
  • 2552, Master of Science Pharmaceutical Chemistry
    The University of Kansas
  • 2553, Doctor of Philosophy Pharmaceutical Chemistry
    The University of Kansas

งานวิจัย

Google Scholar

Scopus

ข้อมูลจาก Google Scholar

  • 2020, The cannabis terpenes
    Molecules 25 (24), 5792, 2020
  • 2008, PLGA nanoparticle− peptide conjugate effectively targets intercellular cell-adhesion molecule-1
    Bioconjugate chemistry 19 (1), 145-152, 2008
  • 2009, ICAM-1 targeting of doxorubicin-loaded PLGA nanoparticles to lung epithelial cells
    European journal of pharmaceutical sciences 37 (2), 141-150, 2009
  • 2014, Targeted delivery of doxorubicin to A549 lung cancer cells by CXCR4 antagonist conjugated PLGA nanoparticles
    European Journal of Pharmaceutics and Biopharmaceutics 88 (2), 529-538, 2014
  • 2021, Effects of quercetin and curcumin combination on antibacterial, antioxidant, in vitro wound healing and migration of human dermal fibroblast cells
    International journal of molecular sciences 23 (1), 142, 2021
  • 2012, Multivalent ligand: design principle for targeted therapeutic delivery approach
    Therapeutic delivery 3 (10), 1171-1187, 2012
  • 2017, CXCR4 targeted dendrimer for anti-cancer drug delivery and breast cancer cell migration inhibition
    European Journal of Pharmaceutics and Biopharmaceutics 119, 310-321, 2017
  • 2013, Pectin nanoparticle enhances cytotoxicity of methotrexate against hepG2 cells
    Drug delivery 20 (1), 1-9, 2013
  • 2020, Moringa oleifera Seed Oil Formulation Physical Stability and Chemical Constituents for Enhancing Skin Hydration and Antioxidant Activity
    Cosmetics 8 (1), 2, 2020
  • 2010, LFA-1 on leukemic cells as a target for therapy or drug delivery
    Current pharmaceutical design 16 (21), 2321-2330, 2010
  • 2020, Hydroxypropyl Methylcellulose E15: A hydrophilic polymer for fabrication of orodispersible film using syringe extrusion 3D printer
    Polymers 12 (11), 2666, 2020
  • 2010, cIBR effectively targets nanoparticles to LFA-1 on acute lymphoblastic T cells
    Molecular pharmaceutics 7 (1), 146-155, 2010
  • 2023, Smart polymeric nanoparticles in cancer immunotherapy
    Pharmaceutics 15 (3), 775, 2023
  • 2017, Wound healing activity of Pluchea indica leaf extract in oral mucosal cell line and oral spray formulation containing nanoparticles of the extract
    Pharmaceutical Biology 55 (1), 1767-1774, 2017
  • 2024, Lipid-based nanoparticles in delivering bioactive compounds for improving therapeutic efficacy
    Pharmaceuticals 17 (3), 329, 2024
  • 2019, Stability, cytotoxicity, and retinal pigment epithelial cell binding of hyaluronic acid-coated PLGA nanoparticles encapsulating lutein
    Aaps Pharmscitech 20, 1-13, 2019
  • 2022, Phytochemical Constitution, Anti-Inflammation, Anti-Androgen, and Hair Growth-Promoting Potential of Shallot (Allium ascalonicum L.) Extract
    Plants 11 (11), 1499, 2022
  • 2022, Phytochemical Analysis, Antioxidant, and Wound Healing Activity of Pluchea indica L. (Less) Branch Extract Nanoparticles
    Molecules 27 (3), 635, 2022
  • 2010, Productivity and quality of volatile oil extracted from Mentha spicata and M. arvensis var. piperascens grown by a hydroponic system using the deep flow technique
    Journal of natural medicines 64, 31-35, 2010
  • 2021, High efficiency in vitro wound healing of Dictyophora indusiata extracts via anti-Inflammatory and collagen stimulating (MMP-2 inhibition) mechanisms
    Journal of Fungi 7 (12), 1100, 2021