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Article

Statistical-Based Optimization of Modified Mangifera indica Fruit Starch as Substituent for Pharmaceutical Tableting Excipient

by
Prin Chaksmithanont
1,
Ketsana Bangsitthideth
1,
Kwanputtha Arunprasert
2,
Prasopchai Patrojanasophon
1,3 and
Chaiyakarn Pornpitchanarong
1,3,*
1
Department of Industrial Pharmacy, Faculty of Pharmacy, Silpakorn University, Nakhon Pathom 73000, Thailand
2
Health Intervention and Technology Assessment Program (HITAP), Ministry of Public Health, Nonthaburi 11000, Thailand
3
Research and Innovation Center for Advanced Therapy Medicinal Products, Faculty of Pharmacy, Silpakorn University, Nakhon Pathom 73000, Thailand
*
Author to whom correspondence should be addressed.
Polymers 2024, 16(18), 2653; https://doi.org/10.3390/polym16182653
Submission received: 4 September 2024 / Revised: 16 September 2024 / Accepted: 18 September 2024 / Published: 20 September 2024

Abstract

This study aimed to optimize modified starch from Mangifera indica (mango) fruit using acid hydrolysis and pre-gelatinization via computer-assisted techniques as a substituent for pharmaceutical tableting excipients. The hydrolysis and microwave-assisted pre-gelatinization time and temperature were optimized using a three-level factorial design. The modified starches were characterized for flowability, compressibility, and swelling properties. It was found that all parameters fit a quadratic model, which can be used to predict the properties of the modified starch. The optimized hydrolysis reaction was 3.8 h at 56.4 °C, while the pre-gelatinization reaction was 3 min at 150 °C. Structural changes were found, ascertaining that starch modification was successful. The optimized hydrolyzed starch showed superior properties in relative to unmodified M. indica fruit starch and comparable characteristics to conventional excipients. The optimized pre-gelatinized starch presented an excellent enhancement in the flow and compression properties, with %swelling greatly augmented 3.95-fold and 1.24-fold compared to unmodified starch and SSG, respectively. Additionally, the pre-gelatinized starch presented comparable binding effect, while the hydrolyzed powder had reduced binding capacity due to shorter chains. The findings revealed that the use of software-assisted design of experiment facilitated a data-driven approach to optimize the modifications. The optimized modified mango starch demonstrated potential as a multifunctional excipient, capable of functioning as binder, disintegrant, and diluent.
Keywords: mango; modified starch; pre-gelatinization; hydrolysis; tablet excipient mango; modified starch; pre-gelatinization; hydrolysis; tablet excipient

Share and Cite

MDPI and ACS Style

Chaksmithanont, P.; Bangsitthideth, K.; Arunprasert, K.; Patrojanasophon, P.; Pornpitchanarong, C. Statistical-Based Optimization of Modified Mangifera indica Fruit Starch as Substituent for Pharmaceutical Tableting Excipient. Polymers 2024, 16, 2653. https://doi.org/10.3390/polym16182653

AMA Style

Chaksmithanont P, Bangsitthideth K, Arunprasert K, Patrojanasophon P, Pornpitchanarong C. Statistical-Based Optimization of Modified Mangifera indica Fruit Starch as Substituent for Pharmaceutical Tableting Excipient. Polymers. 2024; 16(18):2653. https://doi.org/10.3390/polym16182653

Chicago/Turabian Style

Chaksmithanont, Prin, Ketsana Bangsitthideth, Kwanputtha Arunprasert, Prasopchai Patrojanasophon, and Chaiyakarn Pornpitchanarong. 2024. "Statistical-Based Optimization of Modified Mangifera indica Fruit Starch as Substituent for Pharmaceutical Tableting Excipient" Polymers 16, no. 18: 2653. https://doi.org/10.3390/polym16182653

APA Style

Chaksmithanont, P., Bangsitthideth, K., Arunprasert, K., Patrojanasophon, P., & Pornpitchanarong, C. (2024). Statistical-Based Optimization of Modified Mangifera indica Fruit Starch as Substituent for Pharmaceutical Tableting Excipient. Polymers, 16(18), 2653. https://doi.org/10.3390/polym16182653

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