Dr. Chutimon Satirapipathkul

ดร. ชุติมณฑน์ สถิรพิพัฒน์กุล

Education : D.Eng. (Chem. Eng.) Tokyo Institute of Technology M.Sc. (Biotech) Chulalongkorn University B.Sc. (Bio-Chem.) Chulalongkorn University


Address

Department of Chemical Engineering, 10th Floor, Building 4,
Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand

chutimon.s@chula.ac.th

02-218-6876

02-218-6877

Research interest

My research focuses on biomaterial and bioactive conversion to higher value products for pharmaceutical and cosmetic applications. These includes multifunctional nanoparticles for drug delivery system.

Highlights

  • The entrapment of vitamin E in nanostructured lipid carriers of plant seed fat for cosmeceutical application
  • Preparation of nanoemulsion from Sacha Inchi oil/water by emulsionphase inversion methods
  • Development of anticancer activity of selected Colocasia gigantia fractions
  • Natural polysaccharide-based films and their antibacterial activities
  • Controlled release of herb extract from polymeric composite film for cosmeceutical application
  • Butanol production from sugarcane juice by Clostridium sp. in batch fermentation

Expertise

Biomaterial and bioactive conversion to higher value products

Multifunctional nanoparticle for delivery system

Bioengineering

Biofuel technology

Publications

Nutchawanit, M., Satirapipathkul, C., Mongkholrattanasit, R. The Effects of Cationization on Dyeing Properties of Cotton Fabric Dyed with Marigold and Rose. 2019. International Journal of Chemical Engineering and Applications, 10 (2).


Tunkam, P., Satirapipathkul, C. Preparation of nanoemulsion from Sacha inchi oil/water by emulsion phase inversion methods. 2016. Key Engineering Materials 675-676 , 57-60.


Kukaittinun, K., Satirapipathkul, C. Solid lipid nanoparticles from active compounds of mango seed kernel extract. 2016. Key Engineering Materials 675-676 , 65-68.


Uraiwan, K., Satirapipathkul, C. The entrapment of Vitamin E in nanostructured lipid carriers of rambutan seed fat for cosmeceutical uses. 2016. Key Engineering Materials 675-676 , 77-80.


Satirapipathkul, C., Jantarapun, K. Controlled release of quercus infectoria extract from jackfruit starch-konjac glucomannan film. 2014. Advanced Materials Research 875-877 , 187-190.


Satirapipathkul, C., Chatdum, T. Polysaccharide-based film of Cassia fistula and it’s antibacterial activity. 2014. Advanced Materials Research 875-877 , 87-90.

Satirapipathkul, C., Duangsri, P., Sittikijyothin, W. The synergistic activity of the extracts from mango and tamarind gum in cotton fabric finishing. 2014. Advanced Materials Research 875-877 , 1458-1461.


Satirapipathkul, C., Meesukanun, K. Controlled release of Atractylodes lancea extract from rice starch-konjac glucomannan film. 2013. Advanced Materials Research 747 , 186-189.


Satirapipathkul, C., Boonjaroen, M. The synergistic activity of the extracts from mango and cassia fistula polysaccharide in cotton fabric finishing. 2013. Advanced Materials Research 747 , 560-563.


Kaewsomboon, T., Sawangkan, K., Satirapipathkul, C. Characterization of konjac glucomannan film containing the extracts of Atractylodes lancea and Saussurea lappa. 2012. Advanced Materials Research 506 , 401-404.


Sawangkan, K., Sittikijyothin, W., Satirapipathkul, C. Natural polysaccharide-based films and their antibacterial activities. 2012. Advanced Materials Research 506 , 397-400.

Satirapipathkul, C., Iwakabe, K., Habaki, H., Kawasaki, J. Inactivation of harmful dinoflagellate (Alexandrium catenella) in ballast water by electric treatment. 2008. Annals of Microbiology 58 (2) , 297-301.