Extraction, isolation and chromatographic estimation of Aloe-Emodin and Physcion from Cassia Fistula root

Keywords: Aloe-emodin, Physcion, Cassia fistula, column chromatography, HPTLC

Abstract

The large and untapped resources of chemical compounds with significant medical potential found in medicinal plant species make them valuable as sources for biomedicine. Traditional medical systems like Ayurveda and Chinese Traditional Medicine are just two of the many that use the essential medicinal plant Cassia fistula L. It is a medium-sized tree that loses its leaves in the autumn. Its name is from its beautiful yellow flowers and long, rod-shaped seeds with pulp inside. The plant's roots were extracted using petroleum ether, chloroform, alcohol, and water in that order, and the products were looked at for preliminary phytochemical screening and antioxidant activity. Analysis of phytochemicals like alkaloids, flavonoids, carbohydrates, glycosides, protein, amino acids, saponins, and triterpenoids showed that most elements were present. Furthermore, this work concentrated on isolating and purifying aloe-emodin and Physcionusing column chromatography and then determining their purity using HPTLC. Different extraction solvents were tested, and ethanolic produced the highest yield of both. Toluene: Ethyl acetate: Methanol at 5:4:1 (v/v) showed superior resolution of Rf values at 0.7 and 0.9 as aloe-emodin and Physcion, respectively. Different solvents with different polarities were tried before using TLC to separate aloe-emodin and Physcion. The Toluene-ethyl acetate-formic acid ratio was increased when the silica gel column chromatography polarity was applied to the alcohol extract.

References

Chand, R. D., & Shekhar, T. C. (2017). Phytochemical, Pharmacognostic Investigation And Antioxidant Activity Of Cassia Fistula Linn. (Amaltas). World Journal of Pharmaceutical Research, pp. 670-680. https://dx.doi.org/10.20959/wjpr20179-9236

Hafez, S., Othman, S., Ibrahim, H., Seida, A., & Ayoub, N. (2019). Chemical constituents and biological activities of Cassia genus. Archives of Pharmaceutical Sciences Ain Shams University, 3(2), 195-227. https://dx.doi.org/10.21608/aps.2019.15746.1008

Hajare, P., Rai, V., Nipate, S., Balap, A., Pimple, B., Chumbhale, D., ... & Tare, H. (2023). Anti-arthritic potential of ethyl acetate fraction of Pinus roxburghii Sargent stem bark in Freund's complete adjuvant induced arthritis in Wistar rats. Multidisciplinary Science Journal, 5(4), 2023046-2023046. https://doi.org/10.31893/multiscience.2023046

Kirtikar, KR, Basu, BD (2003). Indian Medicinal Plants, International book distributors, Dehradun, Vol 4, Second Edition, 1227-1229.

Kokate, C. K., Purohit, A. P., & Gokhale, D. S. (2008). Pharmacognosy. Nirali Prakashan, 167.

Kokate, C. K. (1994). Practical Pharmacognosy, 4thedn. Vallabh Prakasan, New Delhi, 143.

Kour, R., Sharma, N., Showkat, S., Sharma, S., Nagaiah, K., Kumar, S., & Kaur, S. (2023). Methanolic fraction of Cassia fistula L. bark exhibits potential to combat oxidative stress and possess antiproliferative activity. Journal of Toxicology and Environmental Health, Part A, 86(9), 296-312. https://doi.org/10.1080/15287394.2023.2189435

Mane, V., Killedar, S., More, H., Salunkhe, S., & Tare, H. (2023). Development and Validation of a Novel Bioanalytical Method for Estimating Epigallocatechin 3 Gallate in Wistar Rat Plasma by RP-HPLC Employing Gradient Elution Techniques. Journal of Research in Pharmacy, 27(3). https://dx.doi.org/10.29228/jrp.397

Mondal, A. (2014). Phenolic constituents and traditional uses of Cassia (Fabaceae) plants: An update. Org. Biomol. Chem., 3, 93-141.

Rahim, N. A., Ferdosh, S., & Sarker, M. Z. I. (2023). Extraction Methodologies, Phytochemical Constituents, and Biological Activities of Senna alata Linn: A Review. The Natural Products Journal, 13(2), 2-18. https://doi.org/10.2174/2210315512666220427114719

Sayed, H. M., Ramadan, M. A., Salem, H. H., Ahmad, I., Patel, H., & Fayed, M. A. (2023). Phytochemical Investigation, In silico/In vivo Analgesic, and Anti-inflammatory Assessment of the Egyptian Cassia occidentalis L. Steroids, 196, 109245. https://doi.org/10.1016/j.steroids.2023.109245

Siddhuraju, P., Mohan, P. S., & Becker, K. (2002). Studies on the antioxidant activity of Indian Laburnum (Cassia fistula L.): a preliminary assessment of crude extracts from stem bark, leaves, flowers and fruit pulp. Food Chemistry, 79(1), 61-67. https://doi.org/10.1016/S0308-8146(02)00179-6

Sun, W., &Shahrajabian, M. H. (2023). Therapeutic potential of phenolic compounds in medicinal plants—Natural health products for human health. Molecules, 28(4), 1845.

https://doi.org/10.3390/molecules28041845

Yücedağ, C., Bilir, N., & Barış Özel, H. (2019). Phytohormone Effect on Seedling Quality in Hungarian Oak. Forest Systems, 28(2), e005. https://doi.org/10.5424/fs/2019282-14604

Published
2023-08-30
How to Cite
Bee, B., Jat, R., & Ahmad, S. (2023). Extraction, isolation and chromatographic estimation of Aloe-Emodin and Physcion from Cassia Fistula root. International Journal of Experimental Research and Review, 32, 297-308. https://doi.org/10.52756/ijerr.2023.v32.026
Section
Articles