Medicinal Biospecificity of Ginger and Its Efficacious Bioactive Compounds in the Context of Its Biological Activities Against Predominant Health Issues: Current Study and New Avenues

Haseeba Shahzad, Shaifa Saleem, Waqas Hanif, Zareena Ali, Muhammad Zeeshan Ahmed, Haq Nawaz, Zelle Humma, Laraib Rana, Muhammad Qamar Farid, Hajira Kalsoom, Samavia Jaan

Abstract


There is a multitude of life-threatening and widespread health issues worldwide, regarding weak immunity, severe inflammation, viral infections, bacterial infections as well as antimicrobial resistance (AMR), high free radicals generation, and cancer. Ginger, a perennial plant of the Zingiberaceae family with several authentic nutritional and medicinal values used in many countries as traditional medicine. That is why, the study was designed to highlight recent studies about medicinally most efficacious bio-active compounds of ginger along their biological significance related to immuno-stimulatory, anti-inflammatory, anti-viral, anti-bacterial, anti-oxidant, and anti-cancer effects. Our study also recognized future gaps in research. The study included professional research data under duration from 2001-2022 appearing in books and scholarly journals, collected from scientific database platforms via PubMed, Web of Science, Google Scholar, Springer Nature, Science Direct and Scopus. The present study includes the medicinal effects of almost 44 most influential ginger compounds like phenolics, terpenoids, flavonoids, and vinyllyl ketonic compounds etc. Our results revealed the strong alleviating effects of gingerols, shogaols, paradols, and polyphenols. Moreover, the ginger essential oil has proven to be very effective both for antiviral and antibacterial activity. However, no data is available in previous literature for components of ginger involved in immuno-stimulatory, effects. There is also a need to explore components for antibacterial activity. However, research has been conducted on ginger for only a few viruses despite its strong alleviating effects. Besides this, more study is needed to comprehend the comprehensive mechanism of action (especially at the molecular level) regarding the anti-bacterial and anti-viral activity of ginger and its constituents.


Keywords


Anti-bacterial; Anti-cancer; antioxidant; antiviral; Immunostimulatory; Anti-inflammatory; Ginger bioactive compounds; new avenues; mechanism of action

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References


Abdel-Moneim, A., Morsy, B. M., Mahmoud, A. M., Abo-Seif, M. A., & Zanaty, M. I. (2013). Beneficial therapeutic effects of Nigella sativa and/or Zingiber officinale in HCV patients in Egypt. EXCLI journal, 12, 943.

Abdullah, H. A.-A. (2012). Antihyperglycemic and Antioxidant Effect of Ginger Extract on Streptozotocin-Diabetic Rats.https://scialert.net/abstract/?doi=pjn.2012.1107.1112.

Abdulzahra, M. D., & Mohammed, H. F. (2014). The antibacterial effect of Ginger and Garlic extracts on some pathogenic bacteria isolated from patients with otitis media. International Research Journal of Medical Sciences, 2(5), 1-5.

Abolaji, A. O., Ojo, M., Afolabi, T. T., Arowoogun, M. D., Nwawolor, D., & Farombi, E. O. (2017). Protective properties of 6-gingerol-rich fraction from Zingiber officinale (Ginger) on chlorpyrifos-induced oxidative damage and inflammation in the brain, ovary and uterus of rats. Chemico-biological interactions, 270, 15-23.

Aboubakr, H. A., Nauertz, A., Luong, N. T., Agrawal, S., El-Sohaimy, S. A., Youssef, M. M., & Goyal, S. M. (2016). In vitro antiviral activity of clove and ginger aqueous extracts against feline calicivirus, a surrogate for human norovirus. Journal of food protection, 79(6), 1001-1012.

Adom, D., Sekyere, P., & Addo, A. (2019). The pharmaceutical, insecticidal and antioxidant properties of Ginger. Agriculture & Food: e-Newsletter, 1(4), 261-266.

Agriculture, U. S. D. o. (2018). Full Report (All Nutrients): 11216, Ginger root, raw.https://ndb.nal.usda.gov/ndb/foods/show/11216?fgcd=&manu=&format=Full&count=&max=25&offset=&sort=default&order=asc&qlookup=11216&ds=&qt=&qp=&qa=&qn=&q=&ing=).

Ahkam, A. H., Hermanto, F. E., Alamsyah, A., Aliyyah, I. H., & Fatchiyah, F. (2020). Virtual prediction of antiviral potential of ginger (Zingiber officinale) bioactive compounds against spike and MPro of SARS-CoV2 protein. Berkala Penelitian Hayati, 25(2), 52-57.

Ahmed, M. Z., Shahzad, H., Rao, T., Ali, A., & Samad, N. (2020). Seroprevalence of Hepatitis C Virus (HCV) and Hepatitis B Virus (HBV) In District Vehari, Pakistan. Age, 487, 51.

Aier, I., Semwal, R., Sharma, A., & Varadwaj, P. K. (2019). A systematic assessment of statistics, risk factors, and underlying features involved in pancreatic cancer. Cancer epidemiology, 58, 104-110.

Akimoto, M., Iizuka, M., Kanematsu, R., Yoshida, M., & Takenaga, K. (2015). Anticancer effect of ginger extract against pancreatic cancer cells mainly through reactive oxygen species-mediated autotic cell death. PloS one, 10(5), e0126605.

Akinyemi, A. J., Ademiluyi, A. O., & Oboh, G. (2013). Aqueous extracts of two varieties of ginger (Zingiber officinale) inhibit Angiotensin iconverting enzyme, iron (II), and sodium nitroprusside-induced lipid peroxidation in the rat heart in vitro. Journal of medicinal food, 16(7), 641-646.

Aldwihi, L. A., Khan, S. I., Alamri, F. F., AlRuthia, Y., Alqahtani, F., Fantoukh, O. I., . . . Almohammed, O. A. (2021). Patients Behavior Regarding Dietary or Herbal Supplements before and during COVID-19 in Saudi Arabia. International Journal of Environmental Research and Public Health, 18(10), 5086.

Ali, B. H., Blunden, G., Tanira, M. O., & Nemmar, A. (2008). Some phytochemical, pharmacological and toxicological properties of ginger (Zingiber officinale Roscoe): a review of recent research. Food and chemical Toxicology, 46(2), 409-420.

Altman, R. D., & Marcussen, K. C. (2001). Effects of a ginger extract on knee pain in patients with osteoarthritis. Arthritis Rheum, 44(11), 2531-2538.

Ambrosio, C. M., de Alencar, S. M., de Sousa, R. L., Moreno, A. M., & Da Gloria, E. M. (2017). Antimicrobial activity of several essential oils on pathogenic and beneficial bacteria. Industrial Crops and Products, 97, 128-136.

Amin, K. A., Mohamed, B. M., El-Wakil, M. A., & Ibrahem, S. O. (2012). Impact of breast cancer and combination chemotherapy on oxidative stress, hepatic and cardiac markers. J Breast Cancer, 15(3), 306-312. https://doi.org/10.4048/jbc.2012.15.3.306

Amri, M., & Touil-Boukoffa, C. (2016). In vitro anti-hydatic and immunomodulatory effects of ginger and [6]-gingerol. Asian Pacific Journal of Tropical Medicine, 9(8), 749-756. https://doi.org/https://doi.org/10.1016/j.apjtm.2016.06.013

Appay, V., & Rowland-Jones, S. L. (2001). RANTES: a versatile and controversial chemokine. Trends in immunology, 22(2), 83-87.

Ashraf, S. A., Al-Shammari, E., Hussain, T., Tajuddin, S., & Panda, B. P. (2017). In-vitro antimicrobial activity and identification of bioactive components using GCMS of commercially available essential oils in Saudi Arabia. Journal of food science and technology, 54(12), 3948-3958.

Austin, B., & Zhang, X. H. (2006). Vibrio harveyi: a significant pathogen of marine vertebrates and invertebrates. Letters in applied microbiology, 43(2), 119-124.

Bag, A., & Chattopadhyay, R. R. (2015). Evaluation of synergistic antibacterial and antioxidant efficacy of essential oils of spices and herbs in combination. PloS one, 10(7), e0131321.

Baliga, M. S., Haniadka, R., Pereira, M. M., D'Souza, J. J., Pallaty, P. L., Bhat, H. P., & Popuri, S. (2011). Update on the chemopreventive effects of ginger and its phytochemicals. Crit Rev Food Sci Nutr, 51(6), 499-523. https://doi.org/10.1080/10408391003698669

Bernard, M. M., McConnery, J. R., & Hoskin, D. W. (2017). [10]-Gingerol, a major phenolic constituent of ginger root, induces cell cycle arrest and apoptosis in triple-negative breast cancer cells. Experimental and molecular pathology, 102(2), 370-376.

Besson, A., Dowdy, S. F., & Roberts, J. M. (2008). CDK inhibitors: cell cycle regulators and beyond. Developmental cell, 14(2), 159-169.

Borah, A., Sethi, L., Sarkar, S., & Hazarika, K. (2017). Effect of drying on texture and color characteristics of ginger and turmeric in a solar biomass integrated dryer. Journal of Food Process Engineering, 40(1), e12310.

Camero, M., Lanave, G., Catella, C., Capozza, P., Gentile, A., Fracchiolla, G., . . . Tempesta, M. J. V. m. (2019). Virucidal activity of ginger essential oil against caprine alphaherpesvirus-1. 230, 150-155.

Chen, H., Fu, J., Chen, H., Hu, Y., Soroka, D. N., Prigge, J. R., . . . Chen, X. (2014). Ginger compound [6]-shogaol and its cysteine-conjugated metabolite (M2) activate Nrf2 in colon epithelial cells in vitro and in vivo. Chemical Research in Toxicology, 27(9), 1575-1585.

Cheng, X.-L., Liu, Q., Peng, Y.-B., Qi, L.-W., & Li, P. (2011). Steamed ginger (Zingiber officinale): Changed chemical profile and increased anticancer potential. Food chemistry, 129(4), 1785-1792.

Chmit, M., Kanaan, H., Habib, J., Abbass, M., Mcheik, A., & Chokr, A. (2014). Antibacterial and antibiofilm activities of polysaccharides, essential oil, and fatty oil extracted from Laurus nobilis growing in Lebanon. Asian Pacific Journal of Tropical Medicine, 7, S546-S552.

Cox, S. D., & Markham, J. (2007). Susceptibility and intrinsic tolerance of Pseudomonas aeruginosa to selected plant volatile compounds. Journal of Applied Microbiology, 103(4), 930-936.

da Silva, F. T., da Cunha, K. F., Fonseca, L. M., Antunes, M. D., El Halal, S. L. M., Fiorentini, . M., . . . Dias, A. R. G. (2018). Action of ginger essential oil (Zingiber officinale) encapsulated in proteins ultrafine fibers on the antimicrobial control in situ. International journal of biological macromolecules, 118, 107-115.

Danwilai, K., Konmun, J., Sripanidkulchai, B.-o., & Subongkot, S. (2017). Antioxidant activity of ginger extract as a daily supplement in cancer patients receiving adjuvant chemotherapy: a pilot study. Cancer management and research, 9, 11.

Deol, P. K., & Kaur, I. P. (2013). Improving the therapeutic efficiency of ginger extract for treatment of colon cancer using a suitably designed multiparticulate system. Journal of Drug Targeting, 21(9), 855-865.

Divangahi, M., Aaby, P., Khader, S. A., Barreiro, L. B., Bekkering, S., Chavakis, T., . . . Dominguez-Andres, J. J. N. i. (2021). Trained immunity, tolerance, priming and differentiation: distinct immunological processes. 22(1), 2-6.

Dugenci, S. K., Arda, N., & Candan, A. (2003). Some medicinal plants as immunostimulant for fish. J Ethnopharmacol, 88(1), 99-106.

Dgenci, S. K., Arda, N., & Candan, A. (2003). Some medicinal plants as immunostimulant for fish. Journal of ethnopharmacology, 88(1), 99-106.

El-Abhar, H. S., Hammad, L. N., & Gawad, H. S. A. (2008). Modulating effect of ginger extract on rats with ulcerative colitis. Journal of ethnopharmacology, 118(3), 367-372.

El-Ashmawy, N. E., Khedr, N. F., El-Bahrawy, H. A., & Abo Mansour, H. E. (2018). Ginger extract adjuvant to doxorubicin in mammary carcinoma: study of some molecular mechanisms. European journal of nutrition, 57(3), 981-989.

Ellis, A. (2001). Innate host defense mechanisms of fish against viruses and bacteria. Developmental & Comparative Immunology, 25(8-9), 827-839.

Elshater, A., Salman, M. M., & Moussa, M. M. (2009). Effect of ginger extract consumption on levels of blood glucose, lipid profile and kidney functions in alloxan induced-diabetic rats. Egyptian Academic Journal of Biological Sciences, 2(1), 153-162.

Ezzat, S. M., Ezzat, M. I., Okba, M. M., Menze, E. T., & Abdel-Naim, A. B. (2018). The hidden mechanism beyond ginger (Zingiber officinale Rosc.) potent in vivo and in vitro anti-inflammatory activity. Journal of ethnopharmacology, 214, 113-123.

Fearon, K., Strasser, F., Anker, S. D., Bosaeus, I., Bruera, E., Fainsinger, R. L., . . . Mantovani, G. J. T. l. o. (2011). Definition and classification of cancer cachexia: an international consensus. 12(5), 489-495.

Ferreira, F. M. D., Hirooka, E. Y., Ferreira, F. D., Silva, M. V., Mossini, S. A. G., & Machinski Jr, M. (2018). Effect of Zingiber officinale Roscoe essential oil in fungus control and deoxynivalenol production of Fusarium graminearum Schwabe in vitro. Food Additives & Contaminants: Part A, 35(11), 2168-2174.

Ferro, A., Peleteiro, B., Malvezzi, M., Bosetti, C., Bertuccio, P., Levi, F., . . . Lunet, N. (2014). Worldwide trends in gastric cancer mortality (19802011), with predictions to 2015, and incidence by subtype. European journal of cancer, 50(7), 1330-1344.

Funk, J. L., Frye, J. B., Oyarzo, J. N., & Timmermann, B. N. (2009). Comparative effects of two gingerol-containing Zingiber officinale extracts on experimental rheumatoid arthritis. J Nat Prod, 72(3), 403-407. https://doi.org/10.1021/np8006183

Ghasemzadeh, A., Jaafar, H. Z., & Rahmat, A. (2010). Identification and concentration of some flavonoid components in Malaysian young ginger (Zingiber officinale Roscoe) varieties by a high performance liquid chromatography method. Molecules, 15(9), 6231-6243.

GHORBANIAN P., J. M., KAMALINEJAD M., IMANI F., NIAKAN LAHIJI M., JAFARIAN A.A. (2017). SIDE EFFECTS OF GINGER DURING SURGERY AND ANESTHESIA.https://www.sid.ir/en/journal/ViewPaper.aspx?ID=549189.

Goswami, D., Kumar, M., Ghosh, S. K., & Das, A. (2020). Natural product compounds in alpinia officinarum and ginger are potent SARS-CoV-2 papain-like protease inhibitors.

Grzanna, R., Lindmark, L., & Frondoza, C. G. (2005). Ginger--an herbal medicinal product with broad anti-inflammatory actions. J Med Food, 8(2), 125-132. https://doi.org/10.1089/jmf.2005.8.125

Gupta, A., Srivastava, S., Prasad, R., Natu, S. M., Mittal, B., Negi, M. P., & Srivastava, A. N. (2010). Oxidative stress in non-small cell lung cancer patients after chemotherapy: association with treatment response. Respirology, 15(2), 349-356. https://doi.org/10.1111/j.1440-1843.2009.01703.x

Habib, S. H. M., Makpol, S., Hamid, N. A. A., Das, S., Ngah, W. Z. W., & Yusof, Y. A. M. (2008). Ginger extract (Zingiber officinale) has anti-cancer and anti-inflammatory effects on ethionine-induced hepatoma rats. Clinics, 63(6), 807-813.

Haghighi, M., & Rohani, M. S. (2013). The effects of powdered ginger (Zingiber officinale) on the haematological and immunological parameters of rainbow trout Oncorhynchus mykiss. Journal of medicinal Plant and Herbal therapy research, 1(1), 8-12.

Heitmann K1, N. H., Holst L. (2013). Safety of ginger use in pregnancy: results from a large population-based cohort study.https://www.ncbi.nlm.nih.gov/pubmed/22706624.

Hosseinzadeh, A., Juybari, K. B., Fatemi, M. J., Kamarul, T., Bagheri, A., Tekiyehmaroof, N., & Sharifi, A. M. (2017). Protective effect of ginger (Zingiber officinale roscoe) extract against oxidative stress and mitochondrial apoptosis induced by interleukin-1? in cultured chondrocytes. Cells Tissues Organs, 204(5-6), 241-250.

Hsiang, C.-Y., Lo, H.-Y., Huang, H.-C., Li, C.-C., Wu, S.-L., & Ho, T.-Y. (2013). Ginger extract and zingerone ameliorated trinitrobenzene sulphonic acid-induced colitis in mice via modulation of nuclear factor-?B activity and interleukin-1? signalling pathway. Food chemistry, 136(1), 170-177.

Hu, J.-X., Zhao, C.-F., Chen, W.-B., Liu, Q.-C., Li, Q.-W., Lin, Y.-Y., & Gao, F. (2021). Pancreatic cancer: A review of epidemiology, trend, and risk factors. World journal of gastroenterology, 27(27), 4298.

Ippoushi, K., Azuma, K., Ito, H., Horie, H., & Higashio, H. (2003). [6]-Gingerol inhibits nitric oxide synthesis in activated J774. 1 mouse macrophages and prevents peroxynitrite-induced oxidation and nitration reactions. Life sciences, 73(26), 3427-3437.

Ishiguro, K., Ando, T., Maeda, O., Ohmiya, N., Niwa, Y., Kadomatsu, K., & Goto, H. (2007). Ginger ingredients reduce viability of gastric cancer cells via distinct mechanisms. Biochemical and biophysical research communications, 362(1), 218-223.

Islam, K., Rowsni, A. A., Khan, M. M., & Kabir, M. S. (2014). Antimicrobial activity of ginger (Zingiber officinale) extracts against food-borne pathogenic bacteria. International Journal of Science, Environment and Technology, 3(3), 867-871.

Janssen-Heininger, Y. M., Mossman, B. T., Heintz, N. H., Forman, H. J., Kalyanaraman, B., Finkel, T., . . . van der Vliet, A. (2008). Redox-based regulation of signal transduction: principles, pitfalls, and promises. Free Radical Biology and Medicine, 45(1), 1-17.

Ji, K., Fang, L., Zhao, H., Li, Q., Shi, Y., Xu, C., . . . Liu, Q. (2017). Ginger oleoresin alleviated ?-ray irradiation-induced reactive oxygen species via the Nrf2 protective response in human mesenchymal stem cells. Oxidative Medicine and Cellular Longevity, 2017.

Jolad, S. D., Lantz, R. C., Chen, G. J., Bates, R. B., & Timmermann, B. N. (2005). Commercially processed dry ginger (Zingiber officinale): composition and effects on LPS-stimulated PGE2 production. Phytochemistry, 66(13), 1614-1635.

Joshi, A., Krishnan, G. S., & Kaushik, V. (2020). Molecular docking and simulation investigation: effect of beta-sesquiphellandrene with ionic integration on SARS-CoV2 and SFTS viruses. Journal of Genetic Engineering and Biotechnology, 18(1), 1-8.

Juntachote, T., Berghofer, E., Bauer, F., & Siebenhandl, S. (2006). The application of response surface methodology to the production of phenolic extracts of lemon grass, galangal, holy basil and rosemary. International journal of food science & technology, 41(2), 121-133.

Kalhoro, M. T., Zhang, H., Kalhoro, G. M., Wang, F., Chen, T., Faqir, Y., & Nabi, F. (2022). Fungicidal properties of ginger (Zingiber officinale) essential oils against Phytophthora colocasiae. Scientific Reports, 12(1), 1-10.

Karna, P., Chagani, S., Gundala, S. R., Rida, P. C., Asif, G., Sharma, V., . . . Aneja, R. (2012). Benefits of whole ginger extract in prostate cancer. British journal of nutrition, 107(4), 473-484.

Kaushik, S., Jangra, G., Kundu, V., Yadav, J. P., & Kaushik, S. (2020). Anti-viral activity of Zingiber officinale (Ginger) ingredients against the Chikungunya virus. Virusdisease, 31(3), 270-276.

Kawahara, K., Hohjoh, H., Inazumi, T., Tsuchiya, S., & Sugimoto, Y. (2015). Prostaglandin E 2-induced inflammation: Relevance of prostaglandin E receptors. Biochimica et Biophysica Acta (BBA)-Molecular and Cell Biology of Lipids, 1851(4), 414-421.

Khazaei, Z., Sohrabivafa, M., Momenabadi, V., Moayed, L., & Goodarzi, E. (2019). Global cancer statistics 2018: Globocan estimates of incidence and mortality worldwide prostate cancers and their relationship with the human development index. Advances in Human Biology, 9(3), 245.

Koch, C., Reichling, J., Schneele, J., & Schnitzler, P. (2008). Inhibitory effect of essential oils against herpes simplex virus type 2. Phytomedicine, 15(1-2), 71-78.

Kuhn, H., Chaitidis, P., Roffeis, J., & Walther, M. (2007). Arachidonic Acid metabolites in the cardiovascular system: the role of lipoxygenase isoforms in atherogenesis with particular emphasis on vascular remodeling. Journal of cardiovascular pharmacology, 50(6), 609-620.

Lantz, R., Chen, G., Sarihan, M., Solyom, A., Jolad, S., & Timmermann, B. (2007). The effect of extracts from ginger rhizome on inflammatory mediator production. Phytomedicine, 14(2-3), 123-128.

Lee, T.-Y., Lee, K.-C., Chen, S.-Y., & Chang, H.-H. (2009). 6-Gingerol inhibits ROS and iNOS through the suppression of PKC-? and NF-?B pathways in lipopolysaccharide-stimulated mouse macrophages. Biochemical and biophysical research communications, 382(1), 134-139.

Li, C.-L., Ou, C.-M., Huang, C.-C., Wu, W.-C., Chen, Y.-P., Lin, T.-E., . . . Zhou, H.-C. (2014). Carbon dots prepared from ginger exhibiting efficient inhibition of human hepatocellular carcinoma cells. Journal of Materials Chemistry B, 2(28), 4564-4571.

Li, F., Nitteranon, V., Tang, X., Liang, J., Zhang, G., Parkin, K. L., & Hu, Q. (2012). In vitro antioxidant and anti-inflammatory activities of 1-dehydro-[6]-gingerdione, 6-shogaol, 6-dehydroshogaol and hexahydrocurcumin. Food chemistry, 135(2), 332-337.

line, M. n. (2018). Is drinking ginger water good for health?https://medkit.info/2018/06/25/is-drinking-ginger-water-good-for-health/.

Liu, C.-M., Kao, C.-L., Tseng, Y.-T., Lo, Y.-C., & Chen, C.-Y. (2017). Ginger phytochemicals inhibit cell growth and modulate drug resistance factors in docetaxel resistant prostate cancer cell. Molecules, 22(9), 1477.

Lpez, E. I. C., Balczar, M. F. H., Mendoza, J. M. R., Ortiz, A. D. R., Melo, M. T. O., Parrales, R. S., & Delgado, T. H. (2017). Antimicrobial activity of essential oil of Zingiber officinale Roscoe (Zingiberaceae). American Journal of Plant Sciences, 8(7), 1511-1524.

Lu, D.-L., Li, X.-Z., Dai, F., Kang, Y.-F., Li, Y., Ma, M.-M., . . . Zhou, B. (2014). Influence of side chain structure changes on antioxidant potency of the [6]-gingerol related compounds. Food chemistry, 165, 191-197.

Luettig, J., Rosenthal, R., Lee, I. F. M., Krug, S. M., & Schulzke, J. D. (2016). The ginger component 6?shogaol prevents TNF???induced barrier loss via inhibition of PI3K/Akt and NF??B signaling. Molecular nutrition & food research, 60(12), 2576-2586.

Mesomo, M. C., Corazza, M. L., Ndiaye, P. M., Dalla Santa, O. R., Cardozo, L., & de Paula Scheer, A. (2013). Supercritical CO2 extracts and essential oil of ginger (Zingiber officinale R.): Chemical composition and antibacterial activity. The Journal of Supercritical Fluids, 80, 44-49.

Mohan, C. P. (2017). Ginger: Possible Health Benefits and Side Effects.https://www.webmd.com/vitamins-and-supplements/ginger-uses-and-risks#1).

Mollinedo, F., & Gajate, C. (2003). Microtubules, microtubule-interfering agents and apoptosis. Apoptosis, 8(5), 413-450.

Morales, J., Li, L., Fattah, F. J., Dong, Y., Bey, E. A., Patel, M., . . . Boothman, D. A. (2014). Review of poly (ADP-ribose) polymerase (PARP) mechanisms of action and rationale for targeting in cancer and other diseases. Critical Reviews in Eukaryotic Gene Expression, 24(1).

Moreira da Silva, T., Pinheiro, C. D., Puccinelli Orlandi, P., Pinheiro, C. C., & Soares Pontes, G. (2018). Zerumbone from Zingiber zerumbet (L.) smith: a potential prophylactic and therapeutic agent against the cariogenic bacterium Streptococcus mutans. BMC complementary and alternative medicine, 18(1), 1-9.

Mostafa, A. A., Al-Askar, A. A., Almaary, K. S., Dawoud, T. M., Sholkamy, E. N., & Bakri, M. M. (2018). Antimicrobial activity of some plant extracts against bacterial strains causing food poisoning diseases. Saudi journal of biological sciences, 25(2), 361-366.

Munda, S., Dutta, S., Haldar, S., & Lal, M. (2018). Chemical analysis and therapeutic uses of ginger (Zingiber officinale Rosc.) essential oil: a review. Journal of essential oil bearing plants, 21(4), 994-1002.

Murray, C. J., Ikuta, K. S., Sharara, F., Swetschinski, L., Aguilar, G. R., Gray, A., . . . Wool, E. (2022). Global burden of bacterial antimicrobial resistance in 2019: a systematic analysis. The Lancet, 399(10325), 629-655.

Nakamura, K., Honda, K., Mizutani, T., Akiho, H., & Harada, N. (2006). Novel strategies for the treatment of inflammatory bowel disease: selective inhibition of cytokines and adhesion molecules. World journal of gastroenterology: WJG, 12(29), 4628.

Nawaz, H., Shad, M. A., Muntaha, S. T., & Muzaffar, S. (2018). Phytochemical Composition and Antioxidant Potential of Oven Heated and Microwave Treated Ginger (Zingiber officinale Roscoe). Free Radicals & Antioxidants, 8(2).

Nile, S. H., & Park, S. W. (2015). Chromatographic analysis, antioxidant, anti-inflammatory, and xanthine oxidase inhibitory activities of ginger extracts and its reference compounds. Industrial Crops and Products, 70, 238-244.

Nogueira de Melo, G. A., Grespan, R., Fonseca, J. P., Farinha, T. O., da Silva, E. L., Romero, A. L., . . . Cuman, R. K. N. (2011). Inhibitory effects of ginger (Zingiber officinale Roscoe) essential oil on leukocyte migration in vivo and in vitro. Journal of natural medicines, 65(1), 241-246.

Nya, E. J., & Austin, B. (2009). Use of dietary ginger, Zingiber officinale Roscoe, as an immunostimulant to control Aeromonas hydrophila infections in rainbow trout, Oncorhynchus mykiss (Walbaum). Journal of Fish Diseases, 32(11), 971-977.

Ogbuewu, I., Jiwuba, P., Ezeokeke, C., Uchegbu, M., Okoli, I., Iloeje, M. J. I. J. o. A., & Development, R. (2014). Evaluation of phytochemical and nutritional composition of ginger rhizome powder. 17(1), 1663-1670.

Ong, C., Migliori, G., Raviglione, M., MacGregor-Skinner, G., Sotgiu, G., Alffenaar, J.-W., . . . Archuleta, S. (2020). Epidemic and pandemic viral infections: Impact on tuberculosis and the lung: European Respiratory Journal. Eur. Respir. J., 56(4).

Onyiba, C. I. (2022). A Systematic Review of Garlic and Ginger as Medicinal Spices against Viral Infections. Extensive Reviews, 2(1), 32-44.

Organization, W. H. (2021). Spread of Disease Threatens Public Health Security (2007). Available online at: https://www.who.int/mediacentre/news/releases/2007/pr44/en/ (accessed April 23, 2021).

Organization, W. H. (2022). Cancer [Internet] 3 February 2022 Available online a: https://www.who.int/en/news-room/fact-sheets/detail/cancer.

Palatty, P. L., Haniadka, R., Valder, B., Arora, R., & Baliga, M. S. (2013). Ginger in the prevention of nausea and vomiting: a review. Crit Rev Food Sci Nutr, 53(7), 659-669. https://doi.org/10.1080/10408398.2011.553751

Pantelidis, G. E., Vasilakakis, M., Manganaris, G. A., & Diamantidis, G. (2007). Antioxidant capacity, phenol, anthocyanin and ascorbic acid contents in raspberries, blackberries, red currants, gooseberries and Cornelian cherries. Food chemistry, 102(3), 777-783.

Park, Y. J., Wen, J., Bang, S., Park, S. W., & Song, S. Y. (2006). [6]-Gingerol induces cell cycle arrest and cell death of mutant p53-expressing pancreatic cancer cells. Yonsei medical journal, 47(5), 688-697.

Patwardhan, M., Morgan, M. T., Dia, V., & D'Souza, D. H. J. F. m. (2020). Heat sensitization of hepatitis A virus and Tulane virus using grape seed extract, gingerol and curcumin. 90, 103461.

Pham-Huy, L. A., He, H., & Pham-Huy, C. (2008). Free radicals, antioxidants in disease and health. International journal of biomedical science: IJBS, 4(2), 89.

Prasad, S., & Tyagi, A. K. (2015). Ginger and its constituents: role in prevention and treatment of gastrointestinal cancer. Gastroenterology research and practice, 2015.

Prevention., C. f. D. C. a. (2021). Emerging Infectious Diseases (2018). Available online at: https://www.cdc.gov/niosh/topics/emerginfectdiseases/default.html (accessed April 21, 2021).

Qidwai, W., Alim, S. R., Dhanani, R. H., Jehangir, S., Nasrullah, A., & Raza, A. (2003). Use of folk remedies among patients in Karachi, Pakistan. Journal of Ayub Medical College, 15(2), 31.

Rasmussen, P. (2011). Ginger--Zingiber officinale Roscoe, Zingiberaceae. Journal of primary health care, 3(3), 235-236.

Raynor, D. K., Dickinson, R., Knapp, P., Long, A. F., & Nicolson, D. J. (2011). Buyer beware? Does the information provided with herbal products available over the counter enable safe use? BMC medicine, 9(1), 94.

Romero, A., Forero, M., Sequeda-Castaeda, L. G., Grismaldo, A., Iglesias, J., Celis-Zambrano, C. A., . . . Morales, L. (2018). Effect of ginger extract on membrane potential changes and AKT activation on a peroxide-induced oxidative stress cell model. Journal of King Saud University-Science, 30(2), 263-269.

Rouseff, R., & Perez-Cacho, P. R. (2007). Citrus flavour. In Flavours and Fragrances (pp. 117-134). Springer.

Saha, A., Blando, J., Silver, E., Beltran, L., Sessler, J., & DiGiovanni, J. (2014). 6-Shogaol from dried ginger inhibits growth of prostate cancer cells both in vitro and in vivo through inhibition of STAT3 and NF-?B signaling. Cancer prevention research, 7(6), 627-638.

Sahu, S., Das, B., Mishra, B., Pradhan, J., & Sarangi, N. (2007). Effect of Allium sativum on the immunity and survival of Labeo rohita infected with Aeromonas hydrophila. Journal of Applied Ichthyology, 23(1), 80-86.

Saiah, W., Halzoune, H., Djaziri, R., Tabani, K., Koceir, E. A., & Omari, N. (2018). Antioxidant and gastroprotective actions of butanol fraction of Zingiber officinale against diclofenac sodium?induced gastric damage in rats. Journal of Food Biochemistry, 42(1), e12456.

San Chang, J., Wang, K. C., Yeh, C. F., Shieh, D. E., & Chiang, L. C. (2013). Fresh ginger (Zingiber officinale) has anti-viral activity against human respiratory syncytial virus in human respiratory tract cell lines. Journal of ethnopharmacology, 145(1), 146-151.

Sanderson, L., Bartlett, A., & Whitfield, P. (2002). In vitro and in vivo studies on the bioactivity of a ginger (Zingiber officinale) extract towards adult schistosomes and their egg production. Journal of Helminthology, 76(3), 241-247.

Schadich, E., Hlav?, J., Voln, T., Varanasi, L., Hajdch, M., & Dubk, P. (2016). Effects of ginger phenylpropanoids and quercetin on Nrf2-ARE pathway in human BJ fibroblasts and HaCaT keratinocytes. BioMed research international, 2016.

Semwal, R. B., Semwal, D. K., Combrinck, S., & Viljoen, A. M. (2015). Gingerols and shogaols: Important nutraceutical principles from ginger. Phytochemistry, 117, 554-568.

Shadmani, A., Azhar, I., Mazhar, F., Hassan, M. M., Ahmed, S. W., Ahmad, I., . . . Shamim, S. (2004). Kinetic studies on Zingiber officinale. Pakistan Journal of Pharmaceutical Sciences, 17(1), 47-54.

Shahrajabian, M. H., Sun, W., Cheng, Q. J. A. a. s., section bSoil, & Science, P. (2019). Clinical aspects and health benefits of ginger (Zingiber officinale) in both traditional Chinese medicine and modern industry. 69(6), 546-556.

Shariatpanahi, Z. V., Mokhtari, M., Taleban, F. A., Alavi, F., Surmaghi, M. H. S., Mehrabi, Y., & Shahbazi, S. (2013). Effect of enteral feeding with ginger extract in acute respiratory distress syndrome. Journal of critical care, 28(2), 217. e211-217. e216.

Shin, D., Mukherjee, R., Grewe, D., Bojkova, D., Baek, K., Bhattacharya, A., . . . Tascher, G. (2020). Papain-like protease regulates SARS-CoV-2 viral spread and innate immunity. nature, 587(7835), 657-662.

Shokr, E., & Mohamed, E. (2019). Effect of ginger on some hematological aspects and immune system in Nile Tilapia. Int. J. Aqua, 12(1), 1-18.

Shukla, Y., & Singh, M. (2007). Cancer preventive properties of ginger: a brief review. Food and chemical toxicology, 45(5), 683-690.

Si, W., Chen, Y. P., Zhang, J., Chen, Z.-Y., & Chung, H. Y. (2018). Antioxidant activities of ginger extract and its constituents toward lipids. Food chemistry, 239, 1117-1125.

Simon, P. S., Sharman, S. K., Lu, C., Yang, D., Paschall, A. V., Tulachan, S. S., & Liu, K. (2015). The NF-?B p65 and p50 homodimer cooperate with IRF8 to activate iNOS transcription. BMC cancer, 15(1), 1-12.

Singh, G., Kapoor, I., Singh, P., de Heluani, C. S., de Lampasona, M. P., & Catalan, C. A. (2008). Chemistry, antioxidant and antimicrobial investigations on essential oil and oleoresins of Zingiber officinale. Food and chemical toxicology, 46(10), 3295-3302.

Sivasothy, Y., Chong, W. K., Hamid, A., Eldeen, I. M., Sulaiman, S. F., & Awang, K. (2011). Essential oils of Zingiber officinale var. rubrum Theilade and their antibacterial activities. Food chemistry, 124(2), 514-517.

Snuossi, M., Trabelsi, N., Ben Taleb, S., Dehmeni, A., Flamini, G., & De Feo, V. (2016). Laurus nobilis, Zingiber officinale and Anethum graveolens essential oils: Composition, antioxidant and antibacterial activities against bacteria isolated from fish and shellfish. Molecules, 21(10), 1414.

Srinivasan, K. (2014). Antioxidant potential of spices and their active constituents. Critical reviews in food science and nutrition, 54(3), 352-372.

Srivastava, A. N., Gupta, A., Srivastava, S., Natu, S. M., Mittal, B., Negi, M. P., & Prasad, R. (2010). Cisplatin combination chemotherapy induces oxidative stress in advance non small cell lung cancer patients. Asian Pac J Cancer Prev, 11(2), 465-471.

Stoilova, I., Krastanov, A., Stoyanova, A., Denev, P., & Gargova, S. (2007). Antioxidant activity of a ginger extract (Zingiber officinale). Food chemistry, 102(3), 764-770.

Stone, J. G., Siedlak, S. L., Tabaton, M., Hirano, A., Castellani, R. J., Santocanale, C., . . . Lee, H.-g. (2011). The cell cycle regulator phosphorylated retinoblastoma protein is associated with tau pathology in several tauopathies. Journal of Neuropathology & Experimental Neurology, 70(7), 578-587.

Sung, H., Ferlay, J., Siegel, R. L., Laversanne, M., Soerjomataram, I., Jemal, A., & Bray, F. (2021). Global cancer statistics 2020: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA: a cancer journal for clinicians, 71(3), 209-249.

Supardan, M. D., Fuadi, A., Alam, P. N., & Arpi, N. (2012). Solvent extraction of ginger oleoresin using ultrasound. Makara Journal of Science, 163-167.

Tahir, A. A., Sani, N. F. A., Murad, N. A., Makpol, S., Ngah, W. Z. W., & Yusof, Y. A. M. (2015). Combined ginger extract & Gelam honey modulate Ras/ERK and PI3K/AKT pathway genes in colon cancer HT29 cells. Nutrition journal, 14(1), 1-10.

Talpur, A. D., Ikhwanuddin, M., & Bolong, A.-M. A. (2013). Nutritional effects of ginger (Zingiber officinale Roscoe) on immune response of Asian sea bass, Lates calcarifer (Bloch) and disease resistance against Vibrio harveyi. Aquaculture, 400, 46-52.

Thorburn, A. (2007). Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) pathway signaling. J Thorac Oncol, 2(6), 461-465. https://doi.org/10.1097/JTO.0b013e31805fea64

Tohma, H., Glin, ?., Bursal, E., Gren, A. C., Alwasel, S. H., & Kksal, E. (2017). Antioxidant activity and phenolic compounds of ginger (Zingiber officinale Rosc.) determined by HPLC-MS/MS. Journal of Food Measurement and Characterization, 11(2), 556-566.

Tripathi, S., Maier, K. G., Bruch, D., & Kittur, D. S. (2007). Effect of 6-gingerol on pro-inflammatory cytokine production and costimulatory molecule expression in murine peritoneal macrophages. Journal of Surgical Research, 138(2), 209-213.

Ueno, N., Hasebe, T., Kaneko, A., Yamamoto, M., Fujiya, M., Kohgo, Y., . . . Bissonnette, M. (2014). TU-100 (daikenchuto) and ginger ameliorate anti-CD3 antibody induced T cell-mediated murine enteritis: Microbe-independent effects involving Akt and NF-?B suppression. PloS one, 9(5), e97456.

Vaillant, A. A. J., & Qurie, A. (2021). Immunodeficiency. In StatPearls [Internet]. StatPearls Publishing.

Varela, M. L., Mogildea, M., Moreno, I., & Lopes, A. J. I. (2018). Acute inflammation and metabolism. 41(4), 1115-1127.

Varoni, E. M., Faro, A. F. L., Lodi, G., Carrassi, A., Iriti, M., & Sardella, A. (2018). Melatonin treatment in patients with burning mouth syndrome: A triple-blind, placebo-controlled, crossover randomized clinical trial.

Verma, S., Singh, M., Jain, P., & Bordia, A. (2004). Protective effect of ginger, Zingiber officinale Rosc on experimental atherosclerosis in rabbits.

Wang, J., Prinz, R. A., Liu, X., & Xu, X. (2020). In vitro and in vivo antiviral activity of gingerenone A on influenza A virus is mediated by targeting janus kinase 2. Viruses, 12(10), 1141.

Wang, Z., Wang, L., Li, T., Zhou, X., Ding, L., Yu, Y., . . . Zhang, H. (2006). Rapid analysis of the essential oils from dried Illicium verum Hook. f. and Zingiber officinale Rosc. by improved solvent-free microwave extraction with three types of microwave-absorption medium. Analytical and bioanalytical chemistry, 386(6), 1863-1868.

WHO. (2021). Antimicrobial resistance report 2021: Available online at: https://www.who.int/news-room/fact-sheets/detail/antimicrobial-resistance.

WHO. (2022). Global Hepatitis report 2022: available online at: https://www.who.int/news-room/fact-sheets/detail/hepatitis-c.

Wijesundara, N. M., & Rupasinghe, H. V. (2018). Essential oils from Origanum vulgare and Salvia officinalis exhibit antibacterial and anti-biofilm activities against Streptococcus pyogenes. Microbial pathogenesis, 117, 118-127.

Wojdy?o, A., Oszmia?ski, J., & Czemerys, R. (2007). Antioxidant activity and phenolic compounds in 32 selected herbs. Food chemistry, 105(3), 940-949.

Zhang, F., Zhang, J.-G., Qu, J., Zhang, Q., Prasad, C., & Wei, Z.-J. (2017). Assessment of anti-cancerous potential of 6-gingerol (Tongling White Ginger) and its synergy with drugs on human cervical adenocarcinoma cells. Food and chemical toxicology, 109, 910-922.

Zhang, G., Nitteranon, V., Chan, L. Y., & Parkin, K. L. (2013). Glutathione conjugation attenuates biological activities of 6-dehydroshogaol from ginger. Food chemistry, 140(1-2), 1-8.

Zhang, M., Viennois, E., Prasad, M., Zhang, Y., Wang, L., Zhang, Z., . . . Srinivasan, S. (2016). Edible ginger-derived nanoparticles: A novel therapeutic approach for the prevention and treatment of inflammatory bowel disease and colitis-associated cancer. Biomaterials, 101, 321-340.

Zhou, H.-l., Deng, Y.-m., & Xie, Q.-m. (2006). The modulatory effects of the volatile oil of ginger on the cellular immune response in vitro and in vivo in mice. Journal of ethnopharmacology, 105(1-2), 301-305.

Zhou, Y., Hong, Y., & Huang, H. (2016). Triptolide attenuates inflammatory response in membranous glomerulo-nephritis rat via downregulation of NF-?B signaling pathway. Kidney and Blood Pressure Research, 41(6), 901-910.




DOI: https://doi.org/10.14421/biomedich.2023.121.371-389

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