Extraction of Starch from Taro (Colocasia esculenta) and Evaluating it and Further Using Taro Starch as Disintegrating Agent in Prazosin Hydrochloride Tablet Formulation with Over All Evaluation

Authors

  • Suraj R. Chakre Pharmaceutics, D.S.T.S Mandal’s College of Pharmacy, Solapur, Maharashtra, India Author
  • Baburao N. Chandakavathe Pharmaceutics, D.S.T.S Mandal’s College of Pharmacy, Solapur, Maharashtra, India Author
  • Vikram A. Jadhav Pharmaceutics, D.S.T.S Mandal’s College of Pharmacy, Solapur, Maharashtra, India Author

DOI:

https://doi.org/10.32628/IJSRST52411266

Keywords:

Tropical Root, Taro Tubers, Pharmaceutical Research, Starch Granules

Abstract

Originating in Southeast Asia, taro (Colocasia esculent Linn.) is a tropical root that is grown vegetatively. It is produced throughout Africa and is ranked ninth among food crops worldwide. In tropical and subtropical regions, taro tubers constitute a staple diet and a significant source of carbohydrates for energy. The main reason it is grown is because its buried corms have a 1.2% content. In addition, potassium, copper, manganese, iron, phosphorus, zinc, niacin, and vitamin B6 are all abundant in taro. It is also a good source of thiamine, riboflavin, and other minerals. Aro is also useful for encasing flavoring components. 
To highlight taro starch in the realm of pharmaceutical research, more studies on the starch can be conducted and released onto the market. Taro has been employed in numerous industrial processes in addition to being used in culinary preparation. Taro starch granules are perfect for use in face powder and dusting solutions that use aerosol dispensing systems because of their minuscule size. Despite the aforementioned applications, large-scale starch extraction and use remain unusual. Consequently, this study may lead to more discussion and consideration of taro starch within the pharmaceutical research community.              

Downloads

Download data is not yet available.

References

Martin, Cyanophoic Glycosides, 3G Pharmacy. Acs publication, 2000.

Z A Syahariza, Enpeng Li, Jovin Hasjim. Extraction and dissolution of starch from rice and sorghum grains for accurate structural analysis. Carbohydrate Polymers, 82:14– 20, 2010.s

Y Ji, K Seetbaraman and P J White. Optimization of small scale corn starch extraction method for use in the library. Journal of Cereal chemistry, 81(1):55-58, 2004.

Bruno C Hancock, Joshua T Colvin, Matthew P Mullarney, Andrey V Zinchuk. The Relative Densities of Pharmaceutical Powders, Blends, Dry Granulations, and Immediate-Release Tablets. Journal of pharmaceutical technology, 64-80, 2003.

Elevina Perez, Forrest S Schultz, Emperatrı´z Pacheco de Delahaye. Characterization of some properties of starches isolated from Xanthosoma sagittifolium (tannia). Carbohydrate polymers, 60, 139-145, 2005.

Quach ML, Melton LD, Harris PJ, Burdon JN, Smith BG. Cell wall compositions of raw and cooked corms of taro (Colocasia esculenta). Journal of the Science of Food and Agriculture. 2003; 81:311-318.

Tari AT, Singhal RS. Starch based spherical aggregates: Stability of a model flavoring compound, vanillin entrapped therein. Carbohydrate Polymers. 2002; 50:417-421.

Vinning G. Select markets for taro, sweetpotato and yam In: Rural Industries Report for Research and Development Corporation. RIRDC Publication No. 03/052, Kingston Act, 2003.

Akter, A., Rahman, S., Morshed, M.T., Hossain, S., Jahan, S., Swarna, A. and Rahmatullah, M. (2013). Evaluation of antihyperglycemic and antinociceptive potential of Colocasia esculenta (L.) Schott (Araceae) leaves. Advances in Natural and Applied Sciences, 7(2), 143-148.

Azwanida, N.N. (2015). A review on the extraction methods use in medicinal plants, principle, strength and limitation. Medicinal and Aromatic Plants, 4(3), 2167-0412.

Fu, Y., Zu, Y., Chen, L., Shi, X., Wang, Z., Sun, S. and Efferth, T. (2007). Antimicrobial activity of clove and rosemary essential oils alone and in combination. Phytotherapy Research, 21(10), 989- 994. https://doi.org/10.1002/ptr.2179

Geetha, S., Padal, S.B. and Satyavathi, K. (2015). Antimicrobial activity of selected leaf extracts against water borne pathogenesis. Malay Journal of Biosciences, 2(4), 190–193.

Lee, S., Wee, W., Yong, J. and Syamsumir, D., (2011). Antimicrobial, antioxidant, anticancer property and chemical composition of different parts (corm, stem and leave) of Colocasia esculenta extract. Ann Univ Mariae Curie-Sklodowska Pharm, 24(3), 9-16.

Puteh, S.E.W., Netty, D. and Sangaran, G. (2013). Paper review of factors, surveillance and burden of food borne disease outbreak in Malaysia. Malaysian Journal of Public Health Medicine, 13(2), 36-43.

Rukayadi, Y., Shim, J.S. and Hwang, J.K. (2008). Screening of Thai medicinal plants for anticandidal activity. Mycoses, 51(4), 308-312. https:// doi.org/10.1111/j.1439-0507.2008.01497.

Rukayadi, Y., Lee, K., Han, S., Yong, D. and Hwang, J.K. (2009). In vitro activities of panduratin A against clinical Staphylococcus strains. Antimicrobial Agents and Chemotherapy, 53(10), 4529-4532.

Sharma, S. (2015). Food preservatives and their harmful effects. International Journal of Scientific and Research Publications, 5(4), 1-2.

Singh, B., Namrata, K.L. and Dwivedi, S.C. (2011). Antibacterial and antifungal activity of Colocasia esculenta aqueous extract: an edible plant. Journal of Pharmacy Research, 4(5), 1445-1459.

Yuan, W. and Yuk, H.G. (2018). Antimicrobial efficacy of Syzygium antisepticum plant extract against Staphylococcus aureus and methicillin-resistant S. aureus and its application potential with cooked chicken. Food microbiology, 72, 176-184. https:// doi.org/10.1016/j.fm.2017.12.002

Yusoff, N.A.H., Sanuan, F.M. and Rukayadi, Y. (2015). Cosmos caudatus Kunth. extract reduced number of microflora in oyster mushroom (Pleurotus ostreatus). International Food Research Journal, 22 (5), 1828-1837.

Downloads

Published

27-03-2024

Issue

Section

Research Articles

How to Cite

Extraction of Starch from Taro (Colocasia esculenta) and Evaluating it and Further Using Taro Starch as Disintegrating Agent in Prazosin Hydrochloride Tablet Formulation with Over All Evaluation . (2024). International Journal of Scientific Research in Science and Technology, 11(2), 373-379. https://doi.org/10.32628/IJSRST52411266

Similar Articles

1-10 of 179

You may also start an advanced similarity search for this article.