Hepatoprotective Activities of Seed Extract and Fractions of Telfairia occidentalis on Doxorubicin-Induced Hepatotoxicity in Rats
Abstract
Telfairia occidentalis Hook (cucurbitaceae) seeds, which is used in the preparation of soups and as medicine traditionally to treat various diseases by the Ibibios was investigated for effect against doxorubicin-induced hepatotoxicity. The seed extract (138 -553 mg/kg) and fractions; dichloromethane (DCM) and aqueous, 276 mg/kg) were evaluated for hepatoprotective activity against doxorubicin-induced liver injury in rats. Liver function parameters, liver oxidative stress markers and liver histology were used to assess the liver protective potential of the extract and fractions. The seed extract and fractions significantly (p<0.05-0.01) reduced the serum levels of AST, ALT, ALP, total and direct bilirubin that were elevated by doxorubincin. Also, the reduced levels of total protein and albumin by doxorubicin were increased by the extract coadministration. The levels of GSH, GST, SOD, GPx, and CAT that were decreased by doxorubicin were significantly (p<0.01) elevated and raised MDA level was reduced by the seed extract and fractions. Histology of the liver sections of extract -treated animals showed reductions in the pathological features compared to the organotoxic-treated animals. The chemical pathological changes were consistent with histopathological observations suggesting marked hepatoprotective potential. The anti-toxic effect of this plant may in part be mediated through the chemical constituents of the plant. The seeds of Telfairia occidentalis possess anti-toxicant properties which can be exploited in the treatment of doxorubicin related toxicities.
Keywords
Full Text:
PDFReferences
Abdel-Daim MM, Kilany OE, Khalifa HA, Ahmed AAM. (2017). Allicin ameliorates doxorubicin-induced cardiotoxicity in rats via suppression of oxidative stress, inflammation and apoptosis. Cancer Chemotherapy and Pharmacology, 80(4): 745–753.
Abushouk AI, Ismail A, Salem AMA, Afifi AM, Abdel-Daim MM. (2017). Cardioprotective mechanisms of phytochemicals against doxorubicin-induced cardiotoxicity. Biomedicine & Pharmacotherapy 90: 935–946.
Abushouk AI, Salem AMA, Saad A. (2019). Mesenchymal stem cell therapy for doxorubicin-induced cardiomyopathy:potential mechanisms, governing factors, and implications of the heart stem cell debate. Frontiers in Pharmacology, 10: 635.
Bachur NR, Gordon SL, Gee MV, Kon H. (1979). NADPH-cytochrome P450 reductase activation of quinone anticancer agents to free radicals. Proceedings of the National Academy of Sciences USA. 76: 954-957.
Calabresi P, Chabner BA. (1990) Chemotherapy of neoplastic diseases, In: Gilman, AG, Rall TW, Nies AS, Taylor P. (eds.) The Pharmacological Basis of Therapeutics. NY: Pergamon Press Inc. pp. 1203-1263.
Drury RA, Wallington EA. (1980) Carleton’s Histological Techniques. 5th Edition, Oxford University Press, New York, 195.
Ebong AS, Eseyin OA, Etim EI, Okokon JE, (2020). Telfairia occidentalis potentiates antiplasmodial activity of artemisinin and amodiaquine combination therapy. Anti-Infective Agents. 18(2): 152-159.
Ellman GL.(1959). Tissue sulfhydryl groups. Archieves of Biochemistry and Biophysics. 82: 70-77.
Enin GN, Okokon JE, Odokwo BO, Antia BS. (2023).Preliminary phytochemical screening and in vivo Inhibitory study of Telfaira occidentalis Hook f. seeds extract on alpha amylase and alpha glucosidase of rats. Journal of Science and Technology Research 5(4) : 26-35.
Eseyin OA, Ebong P, Ekpo A, Igboasoiyi A, Oforah E.(2007). Hypoglycemic effect of the seed extract of Telfairia occidentalis in rat. Pak J Biol Sci 10(3): 498- 501.
Esterbauer H, Cheeseman KH. (1990). Determination of aldehydic lipid peroxidation products: malonaldehyde and 4-hydroxynonenal. Methods in Enzymology. 186: 407–421.
Fabian UA, Anagboso MO, Samuel AE, Okokon JE. (2025). Effect of seed extract and fractions of Telfairia occidentalis on liver and kidney functions and histologies of rats with testosterone-induced benign prostatic hyperplasia in rats. Journal of Complementary and Alternative Medical Research. 26(6): 1 -18.
Farah AO, Nooraain H, Noriham A, Azizah AH, Nurul HR. (2013). Acute and oral subacute toxicity study of ethanolic extract of Cosmos caudatus leaf in Sprague Dawley Rats. International Journal of Biosciences, Biochemistry and Bioinformatics. 3(4): 301-305.
Injac R, Perse M, Cerne M, Potocnik N, Radic N, Govedarica B, Djordjevic A, Cerar A, Strukelj B. (2009). Protective effects of fullerenol C60(OH)24 against doxorubicin-induced cardiotoxicity and hepatotoxicity in rats with colorectal cancer. Biomaterials 30: 1184-1196.
Kalender Y, Yel M, Kalender S. (2005). Doxorubicin hepatotoxicity and hepatic free radical metabolism in rats: The effects of vitamin E and catechin. Toxicology 209: 39-45.
Khames A, Khalaf MM, Gad AM, Abd El-Raouf, OM, Kandeil MA. (2019). Nicorandil combats doxorubicin-induced nephrotoxicity via amendment of TLR4/P38 MAPK/NFj-B signaling pathway. Chem. Biol. Interact., 311, 108777.
Lawrence RA, Burk RF. (1976). Glutathione peroxidase activity in selenium- deficient rat liver. Biochemistry Biophysics Research Communications 71: 952-958.
Liu J, Fang, T., Li, M., Song, Y., Li, J., Xue, Z., Li, J., Bu, D., Liu, W and Zeng Q. (2019). Pao Pereira extract attenuates testosterone induced benign prostatic hyperplasia in rats by inhibiting 5?-reductase. Scientific Report, 9(1): 19703 – 19711.
Magnus SP, Anagboso MO, Johnny II, Ise UP, Okokon JE. (2024). Evaluation of genotoxic and cytotoxic activities of leaf and seed extracts of Telfairia occidentalis. Journal of Complementary and Alternative Medicine Research. 25(3):7-16.
Manokaran S, Jaswanth A, Sengottuvelu S, Nandhakumar J, Duraisamy R, Karthikeyan D, Mallegaswari R. (2008). Hepatoprotective activity of Aerva lanata Linn. against paracetamol induced hepatotoxicity in rats. Research Journal of Pharmacy and Technology. 1: 398–400.
Marklund S, Marklund G. (1974). Involvement of superoxide anion radical in the autooxidation of pyrogallol and a convenient assay for superoxide dismutase. European Journal of Biochemistry. 47: 469 - 474.
Nkosi CZ, Opoku AR, Terblanche SE. (2005). Effect of pumpkin seed (Cucurbita pepo) protein isolate on the activity levels of certain plasma enzymes in CCl4-induced liver injury in low-protein fed rats. Phytotherapy Research. 19(4): 341-345
Nwanna E, Oboh G. (2007). Antioxidant and hepatoprotective properties of polyphenol extracts from Telfairia occidentalis (Fluted Pumpkin) leaves on acetaminophen induced liver damage. Pak J Biol Sci 10(16): 2682-2687.
Nwozo SO, Adaramoye OA, Ajaiyeoba EO.(2004). Anti-diabetic and hypolipidemic studies of Telfairia occidentalis on alloxan induced diabetic rabbits. Nig J Nat Prod Med 8: 45-47.
Oboh G, Nwanna E, Elusiyan C. (2010). Antioxidant and antimicrobial properties of Telfairia occidentalis (Fluted pumpkin) leaf extracts. J Pharmacol Toxicol 5(8): 539-547.
Okokon JE, Ekpo AJ , Eseyin OA (2009). Evaluation of in vivo antimalarial activities of ethanolic leaf and seed extracts of Telfairia occidentalis. Journal of Medicinal Food, 12(3):649-653.
Okokon JE, Antia BS, Dar A., Choudhary MI. (2012a). Immunomodulatory, anticancer and antiinflammatory activities of Telfairia occidentalis seed extract and fractions. International Journal of Food Nutrition and Safety 2(2): 72 - 85.
Okokon JE, Dar A., Choudhary MI. (2012b).Chemical constituents and analgesic activity of Telfairia occidentalis. Phytopharmacology 3(2): 359 – 366.
Olorundare OE, Adeneye AA, Akinsola AO, Sanni DA, Koketsu M, Mukhtar H. (2020). Clerodendrum volubile Ethanol Leaf Extract: A Potential Antidote to Doxorubicin-Induced Cardiotoxicity in Rats. Journal of Toxicology, Volume 2020, Article ID 8859716, 17 pages.
Osukoya OA, Adegbenro D, Onikanni SA, Ojo OA, Onasanya A.(2016). Antinociceptive and antioxidant activities of the methanolic extract of Telfairia occidentalis Seeds. Anc Sci Life. 36(2):98-103.
Pedrycz A, Wieczorski M, Czerny K. (2004) The influence of a single dose of adriamycin on the pregnant rat female liver- histological and histochemical evaluation. Ann Univ Mariae Curie Sklodowska. 59:319 -323.
Ping KY, Darah I, Chen Y, Sreeramanan S and Sasidharan S. (2013). Acute and subchronic toxicity study of Euphorbia hirta L. methanol extract in rats. Biomedical Research International. 2: 1-14.
Rashid S, Ali N, Nafees S, Ahmad ST, Arjumand W, Hasan SK, Sultana S. (2013). Alleviation of doxorubicin-induced nephrotoxicity and hepatotoxicity by chrysin in Wistar rats. Toxicol. Mech. Methods 23: 337–345.
Raškovi A, Stilinovi N, Kolarovi J, Vasovi V, Vukmirovi S.(2011). The protective effects of silymarin against doxorubicin-induced cardiotoxicity and hepatotoxicity in rats Molecules 16: 8601-8613
Rehman MU, Tahir M, Khan AQ, Khan R, Oday OH, Lateef A, Hassan SK, Rashid S, Ali N, Zeeshan M, Sultana S. (2014). D-limonene suppresses doxorubicin-induced oxidative stress and inflammation via repression of COX- 2, iNOS, and NFjB in kidneys of Wistar rats. Exp. Biol. Med. (Maywood) 239:465–476.
Sinha AK.(1972). Colorimetric assay of catalase. Analytical Biochemistry, 47: 389 - 94.
Tietz WW (1995). Clinical Guide to Laboratory tests. 2nd edn. Sanders Company. Philadelphia, PA. Pp. 554-556.
Usunomena U, Okpiabhele A. Telfairia occidentalis Hook f. mitigates Carbon Tetrachloride induced Nephrotoxicity in Rat. Journal of Research in Applied and Basic Medical Sciences 9 (3),2023 :130-137.
Yilmaz S, Atessahin A, Sahna E, Karahan I, Ozer S. (2006) Protective effect of lycopene on adriamycin- induced hepatoxicity and nephrotoxicity. Toxicology. 218: 164-171.
DOI: https://doi.org/10.14421/biomedich.2025.142.1529-1536
Refbacks
- There are currently no refbacks.
Copyright (c) 2026 Ugochi Queenette Nwosu, Chinyelu C. Osigwe, Ugonma F. Uwaeme, Unyime A. Fabian, Jude Efiom Okokon
Biology, Medicine, & Natural Product Chemistry |




