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Effect of Maternal Consumption of Sucrose and Saponin Extract from Gongronema latifolium Leaves During Lactation on Sexual Maturity in Rats Offsprings


Authors : Ebube Linda Nwanneka; John Chukwuebuka Abraham; Albert Nkereuwem Eteudo; Ikechi Chukwudi Mbaeri; Michael Arinze Epete

Volume/Issue : Volume 11 - 2026, Issue 8 - August


Google Scholar : https://tinyurl.com/5n8afthp

Scribd : https://tinyurl.com/238stnjy

DOI : https://doi.org/10.38124/ijisrt/26aug562

Note : A published paper may take 4-5 working days from the publication date to appear in PlumX Metrics, Semantic Scholar, and ResearchGate.


Abstract : Introduction: Dietary effects of the mother on the metabolism and reproduction of the offspring. Gongronema latifolium is a medicinal plant with high saponin and flavonoids content, which has been reported to have hypoglycemic and hypolipidemic activity.  Objectives: This study aimed to explore the metabolic and reproductive effects of maternal consumption of sucrose and saponin extract of G. latifolium during lactation period in the rat pups.  Study Method: 20 female albino Wistar rats were assigned randomly into various groups, control group (water only), sucrose group, sucrose + 100 mg/kg b.w. saponin, sucrose + 200 mg/kg b.w. saponin and sucrose + metformin (500 mg/70 kg b.w.). The treatments were given during lactation for 21 days. Body weight, food consumption, glucose tolerance, lipid profile, insulin, leptin, sex hormones and gonadal histology were evaluated in offspring.  Results: The maternal saponin intake had significantly reduced the body weight of the offspring compared to controls, but maternal saponin intake had increased the body weight of the offspring relative to the sucrose group, as with metformin. The intake of food was significantly reduced in the saponin groups (weeks 4–6), and 100 mg/kg was the most effective. Blood glucose was significantly reduced, especially at 200mg/kg, indicating a dose dependent hypoglycemic effect. The reduction in triglyceride and VLDL was noted compared to sucrose and there was no change in cholesterol, HDL and LDL levels. There was no effect on insulin levels, but there was a significant increase in leptin in the 100 mg/kg saponin group when compared with sucrose. Although the metabolic benefits were apparent, there were also potential reproductive risks as seen in the ovarian follicular atrophy and mild disruption to the testicles (testes) by histological examination. Conclusion: G. latifolium saponin extract during lactation had beneficial effects on metabolic homeostasis, possibly by decreasing glucose and triglyceride, but had negative effects on gonadal tissue integrity. The results suggest that both therapeutic and reproductive risks exist and these agents should be used with caution.

Keywords : Gongronema latifolium, Saponin, Lactation, Metabolism, Reproductive Health.

References :

  1. Aguilera-Mijares, S., Sang, J. M., Wang, L., Barath, J., Card, K. G., Lachowsky, N. J., Lal, A., Roth, E., Hogg, R. S., & Moore, D. M. (2021). Variations in Sexual Behaviors by Use of Specific Substances Among Vancouver Gay,  Bisexual, and Other Men Who Have Sex with Men: An Event-Level Analysis. Archives of Sexual Behavior, 50(7), 2875–2886. https://doi.org/10.1007/s10508-021-02068-8.
  2. Ajayi, A. F., & Akhigbe, R. E. (2020). Staging of the estrous cycle and induction of estrus in experimental rodents: an  update. Fertility Research and Practice, 6, 5. https://doi.org/10.1186/s40738-020-00074-3.
  3. Bokor, S., Csölle, I., Felső, R., Vass, R. A., Funke, S., Ertl, T., & Molnár, D. (2024). Dietary nutrients during gestation cause obesity and related metabolic changes by  altering DNA methylation in the offspring. Frontiers in Endocrinology, 15, 1287255. https://doi.org/10.3389/fendo.2024.1287255.
  4. Chali, B. U., Hasho, A., & Koricha, N. B. (2021). Preference and Practice of Traditional Medicine and Associated Factors in Jimma  Town, Southwest Ethiopia. Evidence-Based Complementary and Alternative Medicine : ECAM, 2021, 9962892. https://doi.org/10.1155/2021/9962892.
  5. Cohen, J. F. W., Rifas-Shiman, S. L., Young, J., & Oken, E. (2018). Associations of Prenatal and Child Sugar Intake With Child Cognition. American Journal of Preventive Medicine, 54(6), 727–735. https://doi.org/10.1016/j.amepre.2018.02.020.
  6. Cora, M. C., Kooistra, L., & Travlos, G. (2015). Vaginal Cytology of the Laboratory Rat and Mouse: Review and Criteria for the  Staging of the Estrous Cycle Using Stained Vaginal Smears. Toxicologic Pathology, 43(6), 776–793. https://doi.org/10.1177/0192623315570339.
  7. Eke, I. G., & Okpara, G. C. (2021). Anti-hyperglycemic and anti-dyslipidemic activities of methanol ripe fruit  extract of Duranta erecta L (Verbenaceae) in normoglycemic and hyperglycemic rats. Journal of Traditional and Complementary Medicine, 11(3), 209–216. https://doi.org/10.1016/j.jtcme.2020.03.007.
  8. Faria-Silva, C., Scavone, D., Marto, J., Carvalheiro, M., & Simões, S. (2025). Topical foams containing natural saponins: a world of opportunities in pharmaceutical and cosmetic sciences. Journal of Drug Delivery Science and Technology, 109, 106988. https://doi.org/https://doi.org/10.1016/j.jddst.2025.106988.
  9. Fitzgerald, M., Heinrich, M., & Booker, A. (2019). Medicinal Plant Analysis: A Historical and Regional Discussion of Emergent  Complex Techniques. Frontiers in Pharmacology, 10, 1480. https://doi.org/10.3389/fphar.2019.01480.
  10. Hernández-Aragón, L. G., Dávila-Santacruz, S., Sánchez-Rivas, A., Pérez-Sánchez, E., Ortiz-Ortiz, E., Castelán, F., Nicolás-Toledo, L., Cuevas-Romero, E., & Rodríguez-Antolín, J. (2026). Sucrose consumption increases M2 CD163 + Macrophage accumulation and the tumor necrosis factor alpha expression in pubococcygeus and iliococcygeus muscles of male rats. Journal of Reproductive Immunology, 174, 104866. https://doi.org/https://doi.org/10.1016/j.jri.2026.104866.
  11. Hoenders, R., Ghelman, R., Portella, C., Simmons, S., Locke, A., Cramer, H., Gallego-Perez, D., & Jong, M. (2024). A review of the WHO strategy on traditional, complementary, and integrative  medicine from the perspective of academic consortia for integrative medicine and health. Frontiers in Medicine, 11, 1395698. https://doi.org/10.3389/fmed.2024.1395698.
  12. Jolly, A., Hour, Y., & Lee, Y.-C. (2024). An outlook on the versatility of plant saponins: A review. Fitoterapia, 174, 105858. https://doi.org/https://doi.org/10.1016/j.fitote.2024.105858.
  13. Kumar, A., P, N., Kumar, M., Jose, A., Tomer, V., Oz, E., Proestos, C., Zeng, M., Elobeid, T., K, S., & Oz, F. (2023). Major Phytochemicals: Recent Advances in Health Benefits and Extraction Method. Molecules, 28(2), 887. https://doi.org/10.3390/molecules28020887.
  14. Lokossou, G. A. G., Kouakanou, L., Schumacher, A., & Zenclussen, A. C. (2022). Human Breast Milk: From Food to Active Immune Response With Disease Protection in  Infants and Mothers. Frontiers in Immunology, 13, 849012. https://doi.org/10.3389/fimmu.2022.849012.
  15. Morebise, O. (2015). A Review on Gongronema latifolium, an Extremely Useful Plant with Great Prospects. European Journal of Medicinal Plants, 10(1), 1–9. https://doi.org/10.9734/EJMP/2015/19713.
  16. Ogbonna, G., Magaji, R., & Isa, S. (2022). THE EFFECTS OF METHANOLIC LEAF EXTRACT OF GONGRONEMA LATIFOLIUM ON MILK YIELD AND SOME LACTOGENIC HORMONES IN LACTATING WISTAR RATS. FUDMA JOURNAL OF SCIENCES, 6(2), 58–62. https://doi.org/10.33003/fjs-2022-0602-771.
  17. Ogunwande, I. A., Walker, T. M., & Setzer, W. N. (2007). A Review of Aromatic Herbal Plants of Medicinal Importance from Nigeria. Natural Product Communications, 2(12), 1311–1316. https://doi.org/10.1177/1934578X0700201224.
  18. Ojike, O., Uzodinma, E. O., Ali, E. O., Nweze, B. C., Okoyeuzu, C. F., & Eze, C. R. (2022). Moisture Adsorption potentials and energy models of Gongronema latifolium leaves  dried in separate environments. Food Science & Nutrition, 10(2), 388–401. https://doi.org/10.1002/fsn3.2616.
  19. Orumwensodia, K., & Uadia, P. O. (2022). Gongronema latifolium Benth. Leaves (Uteze) Ameliorate Malaria Infection in Plasmodium berghei-Infected Mice. Journal of Applied Sciences and Environmental Management, 26(3), 413–420. https://doi.org/10.4314/jasem.v26i1.9.
  20. Osuagwu, A. N., Ekpo, I. A., Okpako, E. C., Otu, P., & Ottoho, E. (2013). The Biology, Utilization and Phytochemical Composition of the fruits and leaves of Gongronema latifolium Benth. Agrotechnology, 2(115), 1–4.
  21. Pashapour S, Saberivand A, Khaki AA, Saberivand M. (2023). Effect of saponin on spermatogenesis and testicular structure in streptozotocin-induced diabetic mice. Veterinary Research Forum; 14(11):601-606. doi: 10.30466/vrf.2023.1986019.3727.
  22. Richards, J. S., & Pangas, S. A. (2010). The ovary: basic biology and clinical implications. The Journal of Clinical Investigation, 120(4), 963–972. https://doi.org/10.1172/JCI41350.
  23. Samuelsson, A.-M., Matthews, P. A., Jansen, E., Taylor, P. D., & Poston, L. (2013). Sucrose feeding in mouse pregnancy leads to hypertension, and sex-linked obesity  and insulin resistance in female offspring. Frontiers in Physiology, 4, 14. https://doi.org/10.3389/fphys.2013.00014.
  24. Sharma, K., Kaur, R., Kumar, S., Saini, R. K., Sharma, S., Pawde, S. V, & Kumar, V. (2023). Saponins: A concise review on food related aspects, applications and health implications. Food Chemistry Advances, 2, 100191. https://doi.org/https://doi.org/10.1016/j.focha.2023.100191.
  25. Timilsena, Y. P., Phosanam, A., & Stockmann, R. (2023). Perspectives on Saponins: Food Functionality and Applications. International Journal of Molecular Sciences, 24(17), 13538. https://doi.org/10.3390/ijms241713538.

Introduction: Dietary effects of the mother on the metabolism and reproduction of the offspring. Gongronema latifolium is a medicinal plant with high saponin and flavonoids content, which has been reported to have hypoglycemic and hypolipidemic activity.  Objectives: This study aimed to explore the metabolic and reproductive effects of maternal consumption of sucrose and saponin extract of G. latifolium during lactation period in the rat pups.  Study Method: 20 female albino Wistar rats were assigned randomly into various groups, control group (water only), sucrose group, sucrose + 100 mg/kg b.w. saponin, sucrose + 200 mg/kg b.w. saponin and sucrose + metformin (500 mg/70 kg b.w.). The treatments were given during lactation for 21 days. Body weight, food consumption, glucose tolerance, lipid profile, insulin, leptin, sex hormones and gonadal histology were evaluated in offspring.  Results: The maternal saponin intake had significantly reduced the body weight of the offspring compared to controls, but maternal saponin intake had increased the body weight of the offspring relative to the sucrose group, as with metformin. The intake of food was significantly reduced in the saponin groups (weeks 4–6), and 100 mg/kg was the most effective. Blood glucose was significantly reduced, especially at 200mg/kg, indicating a dose dependent hypoglycemic effect. The reduction in triglyceride and VLDL was noted compared to sucrose and there was no change in cholesterol, HDL and LDL levels. There was no effect on insulin levels, but there was a significant increase in leptin in the 100 mg/kg saponin group when compared with sucrose. Although the metabolic benefits were apparent, there were also potential reproductive risks as seen in the ovarian follicular atrophy and mild disruption to the testicles (testes) by histological examination. Conclusion: G. latifolium saponin extract during lactation had beneficial effects on metabolic homeostasis, possibly by decreasing glucose and triglyceride, but had negative effects on gonadal tissue integrity. The results suggest that both therapeutic and reproductive risks exist and these agents should be used with caution.

Keywords : Gongronema latifolium, Saponin, Lactation, Metabolism, Reproductive Health.

Paper Submission Last Date
31 - August - 2026

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