รองศาสตราจารย์ ดร.ภญ.

เพ็ญศักดิ์ จันทราวุธ

Associate Professor Dr.

Pensak Jantrawut

Curriculum Vitae
Expertise: Pharmaceutics, Thin film formulation Bio-polymer applied polymer sciences
หน่วยงาน
ภาควิชาวิทยาศาสตร์เภสัชกรรม
อีเมล
pensak.j@cmu.ac.th ,pensak.amuamu@gmail.com
การศึกษา
  • 2549, เภสัชศาสตรบัณฑิต
    มหาวิทยาลัยเชียงใหม่
  • 2554, วิทยาศาสตรดุษฎีบัณฑิต เภสัชศาสตร์
    มหาวิทยาลัยเชียงใหม่

งานวิจัย

Google Scholar

Scopus

Pharmaceutical Sciences/ Nanotechnology/ Encapsulation/ Carbohydrate Polymer

ข้อมูลจาก Google Scholar

  • 2020, The cannabis terpenes
    Molecules 25 (24), 5792, 2020
  • 2008, Anti-inflammatory activity of gel containing novel elastic niosomes entrapped with diclofenac diethylammonium
    International journal of pharmaceutics 360 (1-2), 156-163, 2008
  • 2017, Effect of plasticizer type on tensile property and in vitro indomethacin release of thin films based on low-methoxyl pectin
    Polymers 9 (7), 289, 2017
  • 2010, In vitro anti-aging activities of Terminalia chebula gall extract
    Pharmaceutical Biology 48 (4), 469-481, 2010
  • 2021, Characterization of chitosan film incorporated with curcumin extract
    Polymers 13 (6), 963, 2021
  • 2011, In vitro and in vivo skin anti-aging evaluation of gel containing niosomes loaded with a semi-purified fraction containing gallic acid from Terminalia chebula galls
    Pharmaceutical biology 49 (11), 1190-1203, 2011
  • 2020, Synthesis, characterization, and application of carboxymethyl cellulose from asparagus stalk end
    Polymers 13 (1), 81, 2020
  • 2013, Biological Activities of Phenolic Compounds and Triterpenoids from the Galls of Terminalia chebula
    Chemistry & Biodiversity 10 (8), 1448-1463, 2013
  • 2009, Novel elastic nanovesicles for cosmeceutical and pharmaceutical applications
    Chiang Mai J Sci 36 (2), 168-178, 2009
  • 2010, Biological activities of phenolic compounds isolated from galls of Terminalia chebula Retz. (Combretaceae)
    Natural Product Research 24 (20), 1915-1926, 2010
  • 2020, Mango (cv. Nam Dokmai) peel as a source of pectin and its potential use as a film-forming polymer
    Food Hydrocolloids 102, 105611, 2020
  • 2019, Fabrication and characterization of low methoxyl pectin/gelatin/carboxymethyl cellulose absorbent hydrogel film for wound dressing applications
    Materials 12 (10), 1628, 2019
  • 2021, Carboxymethyl bacterial cellulose from nata de coco: Effects of NaOH
    Polymers 13 (3), 348, 2021
  • 2020, Moringa oleifera Seed Oil Formulation Physical Stability and Chemical Constituents for Enhancing Skin Hydration and Antioxidant Activity
    Cosmetics 8 (1), 2, 2020
  • 2020, Physical properties of carboxymethyl cellulose from palm bunch and bagasse agricultural wastes: Effect of delignification with hydrogen peroxide
    Polymers 12 (7), 1505, 2020
  • 2012, Anticancer activities of the extract from Longkong (Lansium domesticum) young fruits
    Pharmaceutical Biology 50 (11), 1397-1407, 2012
  • 2011, Transdermal absorption enhancement of gel containing elastic niosomes loaded with gallic acid from Terminalia chebula galls
    Pharmaceutical biology 49 (6), 553-562, 2011
  • 2013, Influence of low methoxyl pectin gel textures and in vitro release of rutin from calcium pectinate beads
    Carbohydrate polymers 97 (2), 335-342, 2013
  • 2020, Hydroxypropyl Methylcellulose E15: A hydrophilic polymer for fabrication of orodispersible film using syringe extrusion 3D printer
    Polymers 12 (11), 2666, 2020
  • 2018, Use of orange oil loaded pectin films as antibacterial material for food packaging
    Polymers 10 (10), 1144, 2018