Pharmacological Effects of Curcuma Longa and Its Bioactive Constitute Curcumin

Curcuma Longa and Its Bioactive Constitute Curcumin

Authors

  • Nazia Koser University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Rida Abbas University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Bahisht Rizwan University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Huzaifa Sultan University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Zeenat Islam University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Maham Jawad University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Mahin Jawad University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Mahnoor Waheed University Institute of Diet & Nutritional Sciences, Faculty of Allied Health Sciences, University of Lahore, Pakistan
  • Shahnai Basharat shahnai.basharat@rsmi.uol.edu.pk

DOI:

https://doi.org/10.54393/pbmj.v5i6.441

Keywords:

Curcuma longa, Curcuminoids, Turmeric, Medicinal Properties

Abstract

Curcuma longa (Turmeric) belongs to the family Zingeberaceae, commonly used as a spice, pigment and additive also are one of the most important ingredients in the Indian subcontinent. In recent years’ research revealed several important functions of it. Among those being investigated is Turmeric. The aim of this review is to summarize the chemistry, referend, formulations of curcminoids and their biological activities and provides an update mainly on the pharmacological activities of the Turmeric, its extracts and credible medicinal applications of Turmeric, along with their safety evaluation. Its most important active ingredient is curcuminoids. Which are phenolic compounds and volatile oils being also present in turmeric are known for their functional and nutraceutical properties. Various preclinical cell culture and animal studies suggest that curcuminoids have extensive biological activity as antioxidants, neuroprotective, antitumor, anti-inflammatory, anti-acidogenic, radioprotective, and arthritis. Different clinical trials also suggest a potential therapeutic role for curcuminoids in numerous chronic diseases like colon cancer, lung cancer, breast cancer, inflammatory bowel diseases. Nowadays, several drugs have been developed deriving from traditional products, and current drug research is actively investigating the possible therapeutic roles of many Ayurvedic and Traditional Indian medicinal therapies. Health benefits attributed to curcuminoids have resulted in their comprehensive utilization in food and pharmaceutical formulations.

References

Yadav RP, Tarun G, Roshan C, Yadav P. Versatility of turmeric: A review the golden spice of life. Journal of Pharmacognosy and Phytochemistry. 2017;6(1):41-6.

Nair KP. Turmeric (Curcuma Longa L.) and Ginger (Zingiber Officinale Rosc.)-World's Invaluable Medicinal Spices: The Agronomy and Economy of Turmeric and Ginger. Springer International Publishing; 2019 Oct 25. doi.10.1007/978-3-030-29189-1

Akaberi M, Sahebkar A, Emami SA. Turmeric and Curcumin: From Traditional to Modern Medicine. InStudies on Biomarkers and New Targets in Aging Research in Iran 2021 (pp. 15-39). Springer, Cham. doi.10.1007/978-3-030-56153-6_2

Kaur A. Historical background of usage of turmeric: A. Journal of Pharmacognosy and Photochemistry. 2019; 8(1): 2769-2771.

Bhat KK. Agrotechnology of aromatic plants. K. TULEY DE SILVA. 1995 Nov:13.

Singletary K. Turmeric: potential health benefits. Nutrition Today. 2020 Jan 1;55(1):45-56.doi: 10.1097/NT.0000000000000392

Timba PP, Giri SG, Panchal RV. Health benefits and possible risks of turmeric, garlic and ginger: a short. Health. 2019 Apr;6(4):4656-9.

Gupta H, Gupta M, Bhargava S. Potential use of turmeric in COVID‐19. Clinical and experimental Dermatology. 2020 Oct 1;45(7):902-3. doi.org/10.1111/ced.14357

Nwaekpe JO, Anyaegbunam HN, Okoye BC, Asumugha GN. Promotion of turmeric for the food/pharmaceutical industry in Nigeria. American Journal of Experimental Agriculture. 2015;8(6):335-41. doi.10.9734/AJEA/2015/16517

Chumroenphat T, Somboonwatthanakul I, Saensouk S, Siriamornpun S. Changes in curcuminoids and chemical components of turmeric (Curcuma longa L.) under freeze-drying and low-temperature drying methods. Food Chemistry. 2021 Mar 1;339:128121.doi.10.1016/j.foodchem.2020.128121

Xu LL, Shang ZP, Lu YY, Li P, Sun L, Guo QL et al . Analysis of curcuminoids and volatile components in 160 batches of turmeric samples in China by high-performance liquid chromatography and gas chromatography mass spectrometry. Journal of Pharmaceutical and Biomedical Analysis. 2020 Sep 5;188:113465.doi.10.1016/j.jpba.2020.113465

Singletary K. Turmeric: potential health benefits. Nutrition Today. 2020 Jan 1;55(1):45-56.. doi: 10.1097/NT.0000000000000392

de Oliveira Filho JG, de Almeida MJ, Sousa TL, dos Santos DC, Egea MB. Bioactive Compounds of Turmeric (Curcuma longa L.). Bioactive Compounds in Underutilized Vegetables and Legumes. 2021:297-318.doi.o10.1007/978-3-030-57415-4_37

Joshi P, Joshi S, Semwal DK, Bisht A, Sharma S, Dwivedi J. Chemical composition, antioxidative and antimicrobial activities of turmeric spent oleoresin. Industrial Crops and Products. 2021 Apr 1;162:113278.doi.10.1016/j.indcrop.2021.113278

Mitchem H. Determining Best Practice for Occupational Therapy and Obesity Intervention (Doctoral dissertation, The College of St. Scholastica).

Bradford PG. Curcumin and obesity. Biofactors. 2013 Jan;39(1):78-87.https://doi.org/10.1002/biof.1074

World Health Organization. Fact sheet 311: Obesity and overweight. http://www. WHO. int/media centre/factsheets/fs311/en/index. HTML, 2011.

Aggarwal BB. Targeting inflammation-induced obesity and metabolic diseases by curcumin and other nutraceuticals. Annual review of nutrition. 2010 Aug 8;30:173. /doi.10.1146/annurev.nutr.012809.104755

Weisberg SP, Leibel R, Tortoriello DV. Dietary curcumin significantly improves obesity-associated inflammation and diabetes in mouse models of diabesity. Endocrinology. 2008 Jul 1;149(7):3549-58.doi.10.1210/en.2008-0262

Eaton SL, Roche SL, Llavero Hurtado M, Oldknow KJ, Farquharson C, Gillingwater TH, Wishart TM. Total protein analysis as a reliable loading control for quantitative fluorescent Western blotting. PloS one. 2013 Aug 30;8(8):e72457.doi: 10.1371/journal.pone.0028784

Costa G, Francisco V, C Lopes M, T Cruz M, T Batista M. Intracellular signaling pathways modulated by phenolic compounds: application for new anti-inflammatory drugs discovery. Current medicinal chemistry. 2012 Jun 1;19(18):2876-900.doi.10.2174/092986712800672049

Panzhinskiy E, Bashir R, Bagchi D, Nair S. Effect of curcumin and α-lipoic acid in attenuating weight gain and adiposity. Journal of the American College of Nutrition. 2019 Aug 18;38(6):493-8.doi.10.1080/07315724.2018.1557572

Lekshmi PC, Arimboor R, Indulekha PS, Nirmala Menon A. Turmeric (Curcuma longa L.) volatile oil inhibits key enzymes linked to type 2 diabetes. International journal of food sciences and nutrition. 2012 Nov 1;63(7):832-4.. doi.10.3109/09637486.2011.607156

Sousa DF, Araújo MF, de Mello VD, Damasceno MM, Freitas RW. Cost-effectiveness of passion fruit albedo versus turmeric in the glycemic and lipaemic control of people with type 2 diabetes: Randomized clinical trial. Journal of the American College of Nutrition. 2021 Nov 10;40(8):679-88.doi.10.1080/07315724.2020.1823909

de Araújo MF, Veras VS, de Freitas RW, de Paula MD, de Araújo TM, Uchôa LR et al. The effect of flour from the rind of the yellow passion fruit on glycemic control of people with diabetes mellitus type 2: a randomized clinical trial. Journal of diabetes & metabolic disorders. 2017 Dec;16(1):1-7.1-7 doi.10.1186/s40200-017-0300-z

Thota RN, Acharya SH, Garg ML. Curcumin and/or omega-3 polyunsaturated fatty acids supplementation reduces insulin resistance and blood lipids in individuals with high risk of type 2 diabetes: a randomised controlled trial. Lipids Health Diseases. 2019 Jan 26;18(1):31. doi: 10.1186/s12944-019-0967-x..

Weisberg SP, Leibel R, Tortoriello DV. Dietary curcumin significantly improves obesity-associated inflammation and diabetes in mouse models of diabesity. Endocrinology. 2008 Jul;149(7):3549-58. doi: 10.1210/en.2008-0262.

Na LX, Zhang YL, Li Y, Liu LY, Li R, Kong T, Sun CH. Curcumin improves insulin resistance in skeletal muscle of rats. Nutr Metab Cardiovasc Dis. 2011 Jul;21(7):526-33. doi: 10.1016/j.numecd.2009.11.009

Ghorbani Z, Hekmatdoost A, Mirmiran P. Anti-hyperglycemic and insulin sensitizer effects of turmeric and its principle constituent curcumin. Int J Endocrinol Metab. 2014 Oct 1;12(4):e18081. doi: 10.5812/ijem.18081.

Bi X, Lim J, Henry CJ. Spices in the management of diabetes mellitus. Food Chem. 2017 Feb 15;217:281-293. doi: 10.1016/j.foodchem.2016.08.111.

Navekar R, Rafraf M, Ghaffari A, Asghari-Jafarabadi M, Khoshbaten M. Turmeric Supplementation Improves Serum Glucose Indices and Leptin Levels in Patients with Nonalcoholic Fatty Liver Diseases. J Am Coll Nutr. 2017 May-Jun;36(4):261-267. doi: 10.1080/07315724.2016.1267597

Maradana MR, Thomas R, O'Sullivan BJ. Targeted delivery of curcumin for treating type 2 diabetes. Mol Nutr Food Res. 2013 Sep;57(9):1550-6. doi: 10.1002/mnfr.201200791.

Rivera-Mancía S, Trujillo J, Chaverri JP. Utility of curcumin for the treatment of diabetes mellitus: evidence from preclinical and clinical studies. Journal of Nutrition & Intermediary Metabolism. 2018 Dec 1;14:29-41.doi.10.1016/j.jnim.2018.05.001

Jin T, Song Z, Weng J, Fantus IG. Curcumin and other dietary polyphenols: Potential mechanisms of metabolic actions and therapy for diabetes and obesity. American Journal of Physiology-Endocrinology and Metabolism. 2018 Mar 1.doi.10.1152/ajpendo.00285.2017

Kargozar S, Baino F, Hoseini SJ, Verdi J, Asadpour S, Mozafari M. Curcumin: footprints on cardiac tissue engineering. Expert Opinion on Biological Therapy. 2019 Nov 2;19(11):1199-205.doi.10.1080/14712598.2019.1650912

Lundvig DM, Pennings SW, Brouwer KM, Mtaya-Mlangwa M, Mugonzibwa EA, Kuijpers-Jagtman AM et al. Curcumin induces differential expression of cytoprotective enzymes but similar apoptotic responses in fibroblasts and myofibroblasts. Experimental cell research. 2015 Jan 15;330(2):429-41./doi.10.1016/j.yexcr.2014.10.006

Uğuz AC, Öz A, Nazıroğlu M. Curcumin inhibits apoptosis by regulating intracellular calcium release, reactive oxygen species and mitochondrial depolarization levels in SH-SY5Y neuronal cells. Journal of Receptors and Signal Transduction. 2016 Jul 3;36(4):395-401.doi.10.3109/10799893.2015.1108337

Panth N, Paudel KR, Parajuli K. Reactive oxygen species: a key hallmark of cardiovascular disease. Advances in medicine. 2016 Oct;2016. /doi.10.1155/2016/9152732

Liu H, Wang C, Qiao Z, Xu Y. Protective effect of curcumin against myocardium injury in ischemia reperfusion rats. Pharmaceutical Biology. 2017 Jan 1;55(1):1144-8.doi.10.1080/13880209.2016.1214741

Li R, Geng HH, Xiao J, Qin XT, Wang F, Xing JH et al. miR-7a/b attenuates post-myocardial infarction remodeling and protects H9c2 cardiomyoblast against hypoxia-induced apoptosis involving Sp1 and PARP-1. Scientific reports. 2016 Jul 7;6(1):1-1.1-doi.10.1038/srep29082

Wang R, Zhang JY, Zhang M, Zhai MG, Di SY, Han QH et al. Curcumin attenuates IR-induced myocardial injury by activating SIRT3. Eur Rev Med Pharmacol Sci. 2018 Feb 1;22(4):1150-60.

Sreedhar R, Arumugam S, Thandavarayan RA, Karuppagounder V, Watanabe K. Curcumin as a therapeutic agent in the chemoprevention of inflammatory bowel disease. Drug discovery today. 2016 May 1;21(5):843-9.https://doi.org/10.1016/j.drudis.2016.03.007

Fadus MC, Lau C, Bikhchandani J, Lynch HT. Curcumin: An age-old anti-inflammatory and anti-neoplastic agent. Journal of traditional and complementary medicine. 2017 Jul 1;7(3):339-46.doi10.1016/j.jtcme.2016.08.002

Midura-Kiela MT, Radhakrishnan VM, Larmonier CB, Laubitz D, Ghishan FK, Kiela PR. Curcumin inhibits interferon-γ signaling in colonic epithelial cells. American Journal of Physiology-Gastrointestinal and Liver Physiology. 2012 Jan;302(1):G85-96. https://doi.org/10.1152/ajpgi.00275.2011

Vecchi Brumatti L, Marcuzzi A, Tricarico PM, Zanin V, Girardelli M, Bianco AM. Curcumin and inflammatory bowel disease: potential and limits of innovative treatments. Molecules. 2014 Dec 16;19(12):21127-53.https://doi.org/10.3390/molecules191221127

Lahiff C, Moss AC. Curcumin for clinical and endoscopic remission in ulcerative colitis. Inflammatory Bowel Diseases. 2011 Jul 1;17(7):E66.E66 https://doi.org/10.1002/ibd.21710

Rajendran N, Kumar D. Role of diet in the management of inflammatory bowel disease. World journal of gastroenterology: WJG. 2010 Mar 3;16(12):1442.doi: 10.3748/wjg.v16.i12.1442

Uchejeso, O. M., Raphael, O. C., Etukudoh, N. S., & Obiora, E. R. (2021). Use of turmeric against COVID-19 in Nsukka; the need for massive farming

Samuel-Penu B, Baridakara SC. Anti-Microbial Activities of Turmeric and Ginger on Bacterial Isolates of Normal Skin Flora. DOI: 10.9734/JAMB/2021/v21i330336

Adhikary T, Hossain CM, Mallick S, Paul S, Banerjee N, Basak P. Revisiting Therapeutic Potentials of Ethanolic Extract of Curcuma longa L. rhizomes to Evaluate wound Healing Progression upon Topical Application of its Ointment. Indian Journal of Pharmaceutical Education and Research. 2021 Jan 1;55(1):174-83. doi.10.5530/ijper.55.1.19

Uchejeso OM, Raphael OC, Etukudoh NS, Obiora ER. Use of turmeric against COVID-19 in Nsukka; the need for massive farmingdoi.10.26765/DRJPHET87125908

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Published

2022-06-30
CITATION
DOI: 10.54393/pbmj.v5i6.441
Published: 2022-06-30

How to Cite

Koser, N. ., Abbas, R. ., Rizwan, B. ., Sultan, H., Islam, Z. ., Jawad, M. ., Jawad, M. ., Waheed, M. ., & Basharat, S. . (2022). Pharmacological Effects of Curcuma Longa and Its Bioactive Constitute Curcumin : Curcuma Longa and Its Bioactive Constitute Curcumin . Pakistan BioMedical Journal, 5(6), 22–27. https://doi.org/10.54393/pbmj.v5i6.441

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