Curcumin Reduces Hepatic IL-6 Expression in an L-NAME–Induced Preeclampsia Model in Wistar Rats (Rattus norvegicus)
DOI:
https://doi.org/10.30829/contagion.v7i3.25825Abstract
Preeclampsia is a pregnancy complication after 20 weeks of gestation characterized by hypertension, proteinuria, and endothelial dysfunction driven by oxidative stress and inflammation. Elevated interleukin-6 (IL-6) contributes to hepatic injury and increases the risk of HELLP syndrome. Curcumin, the active compound of Curcuma longa, possesses antioxidant and anti-inflammatory effects via inhibition of the NF-κB pathway, potentially suppressing IL-6 expression in hepatic tissue. This study aimed to evaluate the effect of curcumin on hepatic IL-6 expression in an L-NAME–induced preeclampsia model in Wistar rats. A true experimental post-test-only control group design was used with 25 pregnant rats (n = 5/group) divided into a healthy control (K–), a disease model control (K+; L-NAME 125 mg/kg BW), and three curcumin-treated groups receiving 30, 50, and 100 mg/kg BW (P1, P2, P3). IL-6 expression in hepatic tissue was assessed immunohistochemically and quantified using ImageJ software. Data were normally distributed (Shapiro–Wilk p = 0.288) and homogeneous (Levene p = 0.277), allowing one-way ANOVA and Pearson correlation analyses (α = 0.05). Mean ± SD hepatic IL-6 expression (% area) was K– = 5.04 ± 2.32, K+ = 62.97 ± 2.71, P1 = 55.45 ± 2.57, P2 = 28.49 ± 4.08, and P3 = 16.46 ± 2.60 (p < 0.001, η² = 0.94). Post-hoc HSD analysis showed significant reductions in all curcumin-treated groups compared with K+, with the highest dose (P3) showing the greatest reduction and values approaching normal levels. A strong negative correlation (r = –0.962, p < 0.001; 95% CI = [–0.99, –0.86]) indicated a clear dose-related trend between curcumin administration and decreased IL-6 expression. These findings suggest that curcumin attenuates hepatic IL-6 expression in an L-NAME–induced preeclampsia model in a dose-related manner, supporting its potential hepatoprotective and anti-inflammatory roles against preeclampsia-associated oxidative injury. Keywords: Curcumin, Immunohistochemistry, Liver, L-NAME, PregnancyReferences
Aminuddin, M., Sargowo, D., Sardjono, T. W., & Widjiati, W. (2023). Curcuma longa may prevent endothelial dysfunction in Rattus norvegicus exposed to soot particulate through changes in OxLDL and eNOS levels. Journal of Medicinal and Chemical Sciences, 6(2023), 2785-2792. doi:10.26655/JMCHEMSCI.2023.6.3.24
Bertoncini-Silva, C., Vlad, A., Ricciarelli, R., Fassini, P. G., Suen, V. M. M., & Zingg, J. M. (2024). Enhancing the bioavailability and bioactivity of curcumin for disease prevention and treatment. Antioxidants, 13(3), 331. doi:10.3390/antiox13030331
Burhanuddin, K. Y. E., & Afrianty, I. (2021). Differences in serum interleukin-6 levels and hs-CRP levels in pregnant women with preeclampsia. Jurnal Kesehatan, XX(X), 1-6.
Dafroyanti, Y., Kristina, R., & Widyastuti, R. (2023). Causes of maternal death based on the three delays model (R. R. Rerung, Ed.; 1st ed.). CV. Media Sains Indonesia.
FIGO. (2022). FIGO review: Preeclampsia and hypertensive disorders of pregnancy. International Journal of Gynecology & Obstetrics.
Guan, X., Fu, Y., Liu, Y., Cui, M., Zhang, J., Zhang, J., Li, K., Zhao, J., Wang, S., Song, C., Dong, J. (2023). The role of inflammatory biomarkers in the development and progression of pre-eclampsia: A systematic review and meta-analysis. Frontiers in Immunology, 14, Article 115603. doi:10.3389/fimmu.2023.115603
International Union of Biochemistry and Molecular Biology. (2020). The potential therapeutic effects of curcumin on pregnancy complications: Novel insights into reproductive medicine. IUBMB Life, 72(12), 2572-2583. doi:10.1002/iub.2399
Ives, C. W., Sinkey, R., Rajapreyar, I., Tita, A. T. N., & Oparil, S. (2020). Preeclampsia-Pathophysiology and clinical presentations: JACC state-of-the-art review. Journal of the American College of Cardiology, 76(14), 1690-1702. doi:10.1016/j.jacc.2020.08.014
Kadhim, H., Al-Khazaali, E. A. A. A., et al. (2024). Relationship of IL-6 and IL-8 levels with tubal ectopic pregnancy. International Journal of Reproduction, Contraception, Obstetrics and Gynecology, 13(1), 31-35. doi:10.18203/2320-1770.ijrcog20234075
Kementerian Kesehatan Republik Indonesia. (2022). [Indonesia health profile 2021]. Pusdatin. Retrieved from https://pusdatin.kemkes.go.id
Kusuma, A. A. N. J., Darmayasa, I. M., Widiyanti, E. S., & Maharta, I. G. B. A. (2024). High C-reactive protein serum levels as a risk factor for preeclampsia. European Journal of Medical and Health Sciences, 6(4), 9-14. doi:10.24018/ejmed.2024.6.4.2140
Lubis, A., Siah Putra Siahaan, A., Chandra, R., Tandanu, E., & Wardhani, F. M. (2023). Serum interleukin-6 levels in male Wistar rats in an acute toxicity test of white turmeric extract. Syntax Literate: Jurnal Ilmiah Indonesia, 6(6), 1-12. doi:10.36418/syntax-literate.v6i6
Naemi, M., Farahani, Z., Norooznezhad, A. H., Khodarahmi, R., Hantoushzadeh, S., Ahangari, R., & Shariat, M. (2021). Possible potentials of curcumin for pregnancies complicated by intrauterine growth restriction: Role of inflammation, angiogenesis, and oxidative stress. Heliyon, 7(8), e08034. doi:10.1016/j.heliyon.2021.e08034
Naruse, K. (2024). Liver biomarkers and preeclampsia: An easy-accessible prediction method of the disease. Hypertension Research, 47(9), 2610-2611. doi:10.1038/s41440-024-01804-6
Nawaz, M., & Verma, M. K. (2020). Evaluation of differential levels of serum interleukin-6 in pre-eclamptic and normal pregnancy women. International Journal of Physiology, 8(1), 1-4. doi:10.5958/2320-608X.2020.00011.6
Nnamani, C. E., et al. (2020). Development of a rat model of preeclampsia using L-NAME: Evaluation of renal and vascular function. Reproductive Biology and Endocrinology.
Nurseta, T., Partadiredja, G., Achmad, T. H., Susilowati, R., Nurdiana, N., & Budiman, H. (2018). Curcumin induces apoptosis in trophoblast model cell line. Medical Journal of Indonesia, 27(2), 104-110. doi:10.13181/mji.v27i2.1821
Rahardjo, B., Dewi, K. T., Rahmawati, A. D., Jannah, F. W., Nooryanto, M., & Indriani, A. (2022). Effect of Pravastatin on eNOS and PECAM-1 expression in the placenta of pre-eclampsia rat (Rattus norvegicus) model. Asian Journal of Health Research, 1(2), 12-18. doi:10.55561/ajhr.v1i2.44
Rahardjo, B., Dewi, R. F., Wiyasa, I. W. A., Handayani, P., Prasetyorini, N., & Wibisono, H. (2024). Effect of curcumin on nitric oxide and endothelin-1 levels in L-NAME-induced preeclamptic Wistar rats. Bandung Medical Journal, 56(4). doi:10.15395/mkb.v56.3700
Rauf, R., & Retni, A. (2023). Analysis of risk factors for preeclampsia in pregnant women at Tolangohula Public Health Center, Gorontalo Regency, Gorontalo Province. Journal of Health and Nutrition Sciences (JIG), 1(2).
Ray, D., & Ghosh, S. (2020). Levels of hs-CRP and lipid profile in preeclampsia. International Journal of Research and Review, 7(1), 11-15.
StatPearls. (2025). Preeclampsia. StatPearls Publishing. Retrieved from https://www.ncbi.nlm.nih.gov/books/NBK560665/
Tossetta, G., Fantone, S., Giannubilo, S. R., & Marzioni, D. (2021). The multifaced actions of curcumin in pregnancy outcome. Antioxidants, 10(1), 1-20. doi:10.3390/antiox10010126
World Health Organization. (2020). Maternal mortality. Retrieved from https://www.who.int/news-room/fact-sheets/detail/maternal-mortality
Zanganeh, M., Mazloomi, S. N., Alijanpour, E., & Jabbari, A. (2020). Curcumin and pregnancy problems: A narrative review of curcumin's effect on preeclampsia. Journal of Clinical and Basic Research, 4(4), 1-7. doi:10.52547/jcbr.4.4.1
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