A Review of Turmeric (Curcuma longa) and Chicory (Cichorium intybus) in Metabolic and Hepatic Health

Authors

  • Babita Yadav Department of Zoology, Agra College, Agra Affiliated to Dr. Bhimrao Ambedkar University, Agra, Uttar Pradesh, India https://orcid.org/0009-0002-9263-7182
  • Dr. Jinesh Kumar Singh Department of Zoology, Agra College, Agra Affiliated to Dr. Bhimrao Ambedkar University, Agra, Uttar Pradesh, India

DOI:

https://doi.org/10.59436/jsiane.v6i3.3.2583-2093

Keywords:

Curcuma longa, Cichorium intybus, Curcumin, Inulin, Hepatoprotection, Metabolic Syndrome, Dyslipidemia, Oxidative Stress

Abstract

Metabolic syndrome and progressive hepatic dysfunctions—which can include non-alcoholic fatty liver disease (NAFLD), non-alcoholic steatohepatitis (NASH), chemical hepatotoxicity, and dyslipidemia—have become a major global healthcare challenge caused by systemic low-grade inflammation and oxidative stress. Conventional pharmacological approach frequently face limitations regarding long-term tolerability, variable efficacy, and side-effect profiles, encouraged renewed scientific investigation into bioactive botanical therapeutics. Curcuma longa (Turmeric, family Zingiberaceae) and Cichorium intybus (Chicory, family Asteraceae) represent two historically prominent medicinal plants documented extensively in traditional Ayurvedic, Unani, and Chinese medical systems. This review synthesizes comparative biochemical profiles, molecular mechanisms, and pharmacological evidence supporting the therapeutic utility of C. longa (primarily via curcuminoids) and C. intybus (via inulin, sesquiterpene lactones, and polyphenols) in metabolic and hepatic homeostasis. Curcumin effectively attenuates pro-inflammatory signaling (NF-κB, TNF-α, IL-1β, COX-2), promotes phase II antioxidant enzyme transcription via the Nrf2 axis, suppresses hepatic lipid accumulation, and mitigates serum transaminases (AST, ALT) and alkaline phosphatase (ALP). Concurrently, C. intybus acts as a potent hepatoprotective and cholagogic agent, replenishing endogenous glutathione pools, counteracting lipid peroxidation, and exerting prebiotic glycemic and lipid-lowering controls through inulin-mediated microbial modulation and hepatic lipogenesis downregulation. Furthermore, the review delineates pharmacokinetics, bioavailability hurdles, toxicity considerations, and the scientific rationale for future synergistic combination strategies of both botanical agents.

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References

Adlia A, Aslan CC, Safitri L, Adnyana IK. Turmeric-black pepper-honey nanoemulsion formulation and antiulcerogenic effect evaluation against ethanol-induced gastric ulcers in rats. PLoS ONE, 2025; 20(1): e0317899.

Allegra A, Innao V, Russo S, Gerace D, Alonci A, Musolino C. Anticancer Activity of Curcumin and Its Analogues: Preclinical and Clinical Studies. Cancer Invest, 2017; 35(1): 1–22.

Apisariyakul A, Vanittanakom N, Buddhasukh D. Antifungal activity of turmeric oil extracted from Curcuma longa (Zingiberaceae). J Ethnopharmacol, 1995; 49: 163–169.

Araujo CAC, Leon LL. Biological activities of Curcuma longa L. Mem Inst Oswaldo Cruz, 2001; 96: 723–728.

Bischoff TA, Nguyen-Dinh P, Arefi AG, Laurantos M, Kelley CJ, Karchesy Y. Antimalarial activity of Lactucin and Lactucopicrin: sesquiterpene lactones isolated from Cichorium intybus L. J Ethnopharmacol, 2004; 95: 455–457.

Brindha P, Sasikala K, Purushoth K. Preliminary Phytochemical Studies in higher Plants. Ethnobot, 1977; 3: 84–96.

Chandra D, Gupta SS. Antiinflammatory and antiarthritic activity of volatile oil of Curcuma longa (Haldi). Indian J Med Res, 1972; 60: 138–142.

Chattopadhyay I, Biswas K, Bandyopadhyay U, Banerjee RK. Turmeric and curcumin: biological actions and medicinal applications. Curr Sci India, 2004; 87: 44–53.

Das, Sneha & Vasudeva, Neeru & Sharma, Sunil. (2016). Cichorium intybus: A concise report on its ethnomedicinal, botanical, and phytopharmacological aspects. Drug Development and Therapeutics. 7. 1. 10.4103/2394-6555.180157.

El-Saadony MT, Yang T, Korma SA, Sitohy M, Abd El-Mageed TA, Selim S, et al. Impacts of turmeric and its principal bioactive curcumin on human health: Pharmaceutical, medicinal, and food applications. Front Nutr, 2023; 9: 1040259.

Goel A, Kunnumakkara AB, Aggarwal BB. Curcumin as "Curecumin": From kitchen to clinic. Biochem Pharmacol, 2008; 75(4): 787–809.

Hazra B, Sarkar R, Bhattacharyya S, Roy P. Tumour inhibitory activity of chicory root extract against Ehrlich ascites carcinoma in mice. Fitoterapia, 2002; 73: 730–733.

Khattak S, Saeed-ur-Rehman, Ullah Shah H, Ahmad W, Ahmad M. Biological evaluation of Curcuma longa Linn. Fitoterapia, 2005; 76(2): 254–257.

Kim M, Shin HK. The water-soluble extract of chicory influences serum and liver lipid concentrations, cecal short-chain fatty acid concentrations and fecal lipid excretion in rats. J Nutr 1998; 128: 1731-6.

Milala J, Grzelak K, Krol B, Juskiewicz J, Zdunczyk Z. Composition and properties of chicory extracts rich in fructans and polyphenols. Polish Journal of Food and Nutrition Sciences 2009; 59: 35-43.

Nandagopal S, Ranjitha Kumari BD. Phytochemical and Antibacterial Studies of Chicory (Cichorium intybus L.) - A Multipurpose Medicinal Plant. Adv Biol Res, 2007; 1(1-2): 17–21.

Nasri H, Sahinfard N, Rafieian M, Rafieian S, Shirzad M, Rafieian-Kopaei M. Turmeric: A spice with multifunctional medicinal properties. J HerbMed Plarmacol, 2014; 3(1): 5–8.

Negi PS. Antibacterial activity of turmeric oil: a byproduct from curcumin manufacture. J Agric Food Chem, 1999; 47: 4297–4300.

Niranjan A, Dhan P, Tewari SK, Pandey A, Pushpangadan P, Prakash D. Chemistry of Curcuma spp. Cultivated on Sodic soil. J Med Aromat Plant Sci, 2003; 25: 69–75.

Ozturk K, Kocamuftuoglu GO, Karatepe M, et al. Protective effects of turmeric (Curcuma longa L.) supplementation on oxidative stress and metabolic parameters in rats with high-fructose diet-induced metabolic syndrome. Nutrire, 2025; 50: 10.

Patil TN, Srinivasan M. Hypocholesteremic effect of curcumin in induced-hypercholesteremic rats. Indian J Exp Biol, 1971; 9: 167–169.

Prasad S, Gupta SC, Tyagi AK, Aggarwal BB. Curcumin, a component of golden spice: from bedside to bench and back. Biotechnol Adv, 2014; 32(6): 1053–1064.

Rahmani S, Asgary S, Askari G, Keshvari M, Hatamipour M, Feizi A, et al. Treatment of Non-alcoholic Fatty Liver Disease with Curcumin: A Randomized Placebo-controlled Trial. Phytother Res, 2016; 30(9): 1540–1548.

Rajakrishnan V, Viswanathan P, Rajakrishnan KV, Menon VP. Neuroprotective role of curcumin from Curcuma longa on ethanol-induced toxicity in rats. Phytother Res, 1999; 13(7): 571–574.

Rotimi D, Iroaganachi A, Odeyemi I, Adeyanju A, Akanji M, Adeyemi O. The Double Sides of Curcumin and its Therapeutic Prospects. Open Med Chem J, 2024; 18: e18741045349977.

Sarangthem K, Haokip MJ. Bioactive component in Curcuma caesia Roxb. Grown in Manipur. The Bioscan, 2010; 5: 113–115.

Soleimani V, Sahebkar A, Hosseinzadeh H. Turmeric (Curcuma longa) and its major constituent (curcumin) as nontoxic and safe substances: Review. Phytother Res, 2018; 32(6): 985–995.

Street RA, Sidana J, Prinsloo G. Cichoriumintybus: Traditional Uses, Phytochemistry, Pharmacology, and Toxicology. Evid Based Complement Alternat Med 2013; 2013: 579319.

Unnikrishnan MK, Rao MNA. Inhibition of nitric-induced oxidation of hemoglobin by curcuminoids. Pharmazie, 1995; 50: 490–492.

Verma RK, Kumari P, Maurya RK, Kumar V, Verma RB, Singh RK. Medicinal properties of turmeric (Curcuma longa L.): A review. Int J Chem Stud, 2018; 6(4): 1354–1357.

Wickenberg J, Ingemansson SL, Hlebowicz J. Effects of turmeric on postprandial plasma glucose and insulin in healthy subjects. Nutr J, 2010; 9: 43.

Published

2026-09-03

How to Cite

A Review of Turmeric (Curcuma longa) and Chicory (Cichorium intybus) in Metabolic and Hepatic Health. (2026). Journal of Science Innovations and Nature of Earth, 6(3), 11-15. https://doi.org/10.59436/jsiane.v6i3.3.2583-2093

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