Starch-based orodispersible film for diclofenac release

Authors

  • Fabio Tamanini University of Araraquara (UNIARA), São Paulo, Brazil
  • Beatriz Sakakibara Moraes University of Araraquara (UNIARA), São Paulo, Brazil
  • Creusa Sayuri Tahara Amaral University of Araraquara (UNIARA), São Paulo, Brazil
  • Antonio José Felix Carvalho Department of Materials Engineering, São Carlos School of Engineering, University of São Paulo, Brazil
  • Eliane Trovatti University of Araraquara (UNIARA), São Paulo, Brazil https://orcid.org/0000-0002-0495-8115

Keywords:

Orodispersible film, Thermoplastic starch, Diclofenac

Abstract

The form of drug administration affects the success of treatment, since it can influence adherence of the patient to the therapy. The use of orodispersible films has emerged as a way to overcome some drawbacks of conventional methods of drug delivery, especially for patients experiencing difficulty in swallowing. These films are prepared using a matrix that incorporates the drug and contains other substances that confer the properties of the system. The present work describes the use of thermoplastic starch as a carrier for the model drug diclofenac, including film preparation and testing of its orodispersible potential. Preparation of the film employed a microwave oven to gelatinize and plasticize corn starch, with incorporation of the model drug, followed by solvent-casting. The samples were characterized using mechanical tests, analyses of water uptake and water content, and Fourier transform infrared spectroscopy. The results indicated that the film presented promising properties as an alternative system for oral drug administration, with good incorporation and distribution of the drug in the matrix. The material displayed satisfactory mechanical properties, which are crucial for this type of material, due to the need for oral administration and handling before use.

Downloads

Download data is not yet available.

References

Adams RH. Pharmacology and Therapeutics in Veterinary. 8th ed. Rio de Janeiro: Guanabara Koogan; 2003.

Arora L, Chakraborty T. A review on new generation orodispersible films and its novel approaches. Indo Am J Pharm Res. 2017;7(1):7451-7470.

Bala R, Khanna S, Pawar P, Arora S. Orally dissolving strips: a new approach to oral drug delivery system. Int J Pharm Investing. 2013;3(2):67-76.

Basiak E, Lenart A, Debeaufort F. How glycerol and water contents affect the structural and functional properties of starch-based edible films. Polymers. 2018;10(4):412,1-18.

Bisharat L, Barker SA, Narbad A, Craig DQM. In vitro drug release from acetylated high amylose starch-zein films for oral colon-specific drug delivery. Int J Pharm. 2019;556:311-319.

Cai XJ, Mesquida P, Jones SA. Investigating the ability of nanoparticle-loaded hydroxypropyl methylcellulose and xanthan gum gels to enhance drug penetration into the skin. Int J Pharm . 2016;513(1-2):302-308.

Carvalho AJF. Starch: major sources, properties and applications as thermoplastic materials. In: Belgacem MN, Gandini A, editors. Monomers, Polymers and Composites from Renewable Resources. Oxford: Elsevier; 2008. pp. 321-342.

Carvalho AJF, Trovatti E. Biomedical applications for thermoplastic starch. In: Kalia S, Avérous L, editors. Biodegradable and Biobased Polymers for Environmental and Biomedical Applications. Beverly: Scrivener Publishing LLC; 2016. pp. 1-23.

Deore UV, Mahajan HS. Isolation and characterization of natural polysaccharide from Cassia Obtustifolia seed mucilage as film forming material for drug delivery. Int J Biol Macromol. 2018;115:1071-1078.

He M, Zhu L, Yang N, Li H, Yang Q. Recent advances of oral film as platform for drug delivery. Int J Pharm . 2021;604:120759-13.

Hoffmann EM, Breitenbach A, Breitkreutz J. Advances in orodispersible films for drug delivery. Expert Opin Drug Deliv. 2011;8(3):299-316.

Kathe K, Kathpalia H. Film forming systems for topical and transdermal drug delivery. Asian J Pharm Sci. 2017;12(6):487-497.

Khadra I, Obeid MA, Dunn C, Watts S, Halbert G, Ford S, et al. Characterisation and optimisation of diclofenac sodium orodispersible thin film formulation. Int J Pharm . 2019;561:43-46.

Khurana R, Ahuja A, Khar RK. Development and evaluation of mucoadhesive films of miconazole nitrate. Indian J Pharm Sci. 2000;60(6):449-453.

Mahajan A, Chhabra N, Aggarwal G. Formulation and characterization of fast dissolving buccal films: a review. Der Pharm Lett. 2011;3(1):152-165.

Mahboob MBH, Riaz T, Jamshaid M, Bashir I, Zulfiqar S. Oral films: a comprehensive review. Int Curr Pharm J. 2016;5(12):111-117.

Mukherjee D, Bharath S. Design and characterization of double layered muco adhesive system containing bisphosphonate derivative. Int Sch Res Notices. 2013;604690:604-690.

Nishigaki M, Kawahara K, Nawa M, Futamura M, Nishimura M, Matsuura K, et al. Development of fast dissolving oral film containing dexamethasone as an antiemetic medication: clinical usefulness. Int J Pharm . 2012;424(1-2):12-7.

Ozaltin K, Postinokov PS, Trusova ME, Sedlarik V, Di Martino A. Polysaccharides based microspheres for multiple encapsulations and simultaneous release of proteases. Int J Biol Macromol . 2019;132:24-31.

Patel VM, Prajapati BG, Patel MM. Design and characterization of chitosan-containing mucoadhesive buccal patches of propranolol hydrochloride. Acta Pharm. 2007;57(1):61-72.

Ramachandran E, Ramukutty S. Growth, morphology, spectral and thermal studies of gel grown diclofenac acid crystals. J Cryst Growth. 2014;389:78-82.

Sabaa MW, Hanna DH, Elella MHA, Mohamed RR. Encapsulation of bovine serum albumin within novel xanthan gum based hydrogel for protein delivery. Mater Sci Eng C. 2019;94:1044-1055.

Salamanca CH, Yarce CJ, Moreno RA, Prieto V, Recalde J. Natural gum-type biopolymers as potential modified nonpolar drug release systems. Carbohydr Polym. 2018;189:31-38.

Senthilkumar K, Vijaya C. Formulation development of mouth dissolving film of etoricoxib for pain management. Adv Pharm. 2015; ID 702963, 1-11.

Shukla D, Chakraborty S, Singh S, Mishra B. Mouth dissolving tablets I: an overview of formulation technology. Sci Pharm. 2019;77(2):309-326.

Siddiqui MN, Garg G, Sharma PK. A short review on “a novel approach in oral fast dissolving drug delivery system and their patents”. Advan Biol Res. 2011;5(6):291-303.

Smart JD. Buccal drug delivery. Expert Opin Drug Deliv . 2005;2(3):507-17.

Trovatti E, Carvalho AJF, Gandini A. A new approach to blending starch with natural rubber. Polym Int. 2015;64(5):605-610.

Downloads

Published

2023-05-22

Issue

Section

Original Article

How to Cite

Starch-based orodispersible film for diclofenac release . (2023). Brazilian Journal of Pharmaceutical Sciences, 59. https://www.revistas.usp.br/bjps/article/view/212208

Funding data