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A systematic review of antioxidant and antimicrobial activities in the different extracts of Licorice as a valuable plant for ameliorating respiratory infectious disorders | ||
Caspian Journal of Environmental Sciences | ||
مقالات آماده انتشار، اصلاح شده برای چاپ، انتشار آنلاین از تاریخ 27 آذر 1403 اصل مقاله (841.44 K) | ||
نوع مقاله: Reviewers | ||
شناسه دیجیتال (DOI): 10.22124/cjes.2024.8246 | ||
نویسندگان | ||
Abdusalom Umarov1؛ Bakhtiyor I. Djabborov2؛ Markhabo R. Rakhmatova* 3؛ Normat Kh. Durdiev4؛ Jurabek I. Yuldashev5؛ Abdugani Suyunov6؛ Komil X. Madumarov7؛ Ilxom I. Mamatkulov8؛ Z. Bakhtiyarovna Suyunova9 | ||
1University of Tashkent for Applied Sciences, Str. Gavhar 1, Tashkent 100149, Uzbekistan | ||
2Department of Biology, Bukhara State University; Bukhara, Uzbekistan | ||
3PhD, Associate Professor of the department clinic pharmacology, Bukhara; Medical Institute Named After Abu Ali Ibn Sino of Uzbekistan | ||
4Associate Professor of the Department of Use of Hydromelioration Systems, Tashkent Institute of Irrigation and Agricultural Mechanization Engineers, National Research University, Tashkent, Uzbekistan & Western Caspian University, Scientific Researcher, Baku, Azerbaijan | ||
5Urgench Technological University RANCH, Uzbekistan | ||
6The head of the Department of Hydraulic Installations and Pumping Stations, Karshi Institute of Irrigation and Agrotechnology at the National Research University “TIIAME” | ||
7Associate Professor of Namangan Engineering and Construction Institute, Namangan, Uzbekistan | ||
8Doctor of Philosophy (PhD) in Agricultural Sciences, Denov Institute of Entrepreneurship and Pedagogy, 190507, house 360, Sh. Rashidov Street, Denov District, Surkhandarya Region | ||
9Samarkand State University of Veterinary Medicine, Livestock and Biotechnologies (SSUV), Uzbekistan | ||
چکیده | ||
Licorice, known scientifically as Glycyrrhiza glabra, has garnered significant attention in both traditional and modern medicine due to its extensive therapeutic properties. This systematic review aims to explore the antioxidant and antimicrobial activities of various licorice extracts, particularly in the context of respiratory infectious disorders. The review highlights the efficacy of licorice as a soothing agent for sore throats and an expectorant for bronchial conditions, as recognized by the World Health Organization. Despite the potential for adverse effects with prolonged high doses, licorice is generally safe when used in moderation, exhibiting a range of pharmacological effects including antiviral, anti-inflammatory, and antioxidant activities. The review synthesizes literature from scientific databases, focusing on the anti-fibrotic role of licorice and its mechanisms against respiratory pathogens. It underscores the need for innovative therapeutic strategies to combat treatment-resistant respiratory ailments, particularly pneumonia, which poses a significant health risk globally. The findings suggest that licorice extracts could serve as effective complementary therapies, enhancing the efficacy of conventional treatments while minimizing side effects. This review provides a foundational reference for future research aimed at developing new therapeutic agents derived from licorice, ultimately improving patient quality of life and survival rates in respiratory infections. | ||
کلیدواژهها | ||
Licorice؛ Respiratory infectious؛ Pathogen؛ Antioxidant؛ Anti-Inflammatory | ||
مراجع | ||
Abu-Odeh, AM & Talib, WH 2021, Middle East medicinal plants in the treatment of diabetes: a review. Molecules, 742.
Ali, EM 2013, Phytochemical composition, antifungal, antiaflatoxigenic, antioxidant, and anticancer activities of Glycyrrhiza glabra L. and Matricaria chamomilla L. essential oils. Journal of Medicinal Plants Research, 2197-2207.
Alikiaie, B, Shalamzari, SMH, Soltani, R, Yegdaneh, A & Mousavi, S 2023, Efficacy of Licorice as Adjunctive Therapy in Critically Ill patients with COVID-19: A randomized, placebo-controlled, double-blind clinical trial. Journal of Research in Pharmacy Practice, 141–147.
Almatroodi, SA, Alsahli, MA, Almatroudi, A, Verma, AK, Aloliqi, A, Allemailem, KS, Khan, AA & Rahmani, AH 2021, Potential therapeutic targets of quercetin, a plant flavonol, and its role in the therapy of various types of cancer through the modulation of various cell signaling pathways. Molecules (Basel, Switzerland), 26: 1315
Amin, AH, Shirode, UR, Sherov, AG, Abo-Zaid, MA, Ismail, AH & Tilwani, SA 2024, Ameliorative effects of Glycyrrhiza glabra L.(licorice) on animal and human pulmonary fibrosis: A review of current knowledge. Caspian Journal of Environmental Sciences, pp. 1-18.
Bahmani, M, Rafieian-Kopaei, M, Jeloudari, M, Eftekhari, Z, Delfan, B, Zargaran, A & Forouzan, S 2014, A review of the health effects and uses of drugs of plant licorice (Glycyrrhiza glabra L.) in Iran. Asian Pacific Journal of Tropical Disease, S847-S849.
Bahmani, M, Saki, K, Rafieian-Kopaei, M, Karamati, SA, Eftekhari, Z & Jelodari, M 2014, The most common herbal medicines affecting Sarcomastigophora branches: a review study. Asian Pacific Journal of Tropical Medicine, 7:S14-S21.
Biscevic-Tokic, J, Tokic, N & Musanovic, A 2013, Pneumonia as the most common lower respiratory tract infection. Medical Archives, 67: 442-445.
Bisht, D, Rashid, M, Arya, RKK, Kumar, D, Chaudhary, SK, Rana, VS & Sethiya, NK 2022, Revisiting liquorice (Glycyrrhiza glabra L.) as anti-inflammatory, antivirals and immunomodulators: Potential pharmacological applications with mechanistic insight. Phytomedicine Plus, 2: 100206.
Buder, F, Selejan, S-R, Hohl, M, Kindermann, M, Herr, C, Lepper, PM, Bals, R, Salzberger, B, Mahfoud, F & Böhm, M 2022, Glycyrrhizin through liquorice intake modulates ACE2 and HMGB1 levels-A pilot study in healthy individuals with implications for COVID-19 and ARDS. PloS One, 17: e0275181.
Chagas, M do SS, Behrens, MD, Moragas-Tellis, CJ, Penedo, GXM, Silva, AR & Gonçalves-de-Albuquerque, CF 2022, Flavonols and Flavones as Potential anti-Inflammatory, Antioxidant, and Antibacterial Compounds. Oxidative Medicine and Cellular Longevity, 2022: 9966750.
Chen, H, Muhammad, I, Zhang, Y, Ren, Y, Zhang, R, Huang, X, Diao, L, Liu, H, Li, X, Sun, X, Abbas, G & Li, G 2019, Antiviral activity against infectious bronchitis virus and bioactive components of Hypericum perforatum L. Frontiers in Pharmacology, 29: 1272.
Chu, X, Ci, X, Wei, M, Yang, X, Cao, Q, Guan, M, Li, H, Deng, Y, Feng, H & Deng, X 2012, Licochalcone a inhibits lipopolysaccharide-induced inflammatory response in vitro and in vivo. Journal of Agricultural and Food Chemistry, 18: 3947–3954.
Cinatl, J, Morgenstern, B, Bauer, G, Chandra, P, Rabenau, H & Doerr, H 2003, Glycyrrhizin, an active component of liquorice roots, and replication of SARS-associated coronavirus. The Lancet, 14: 2045–2046.
Cinatl, JJ, Michaelis, M, Hoever, G, Preiser, W & Doerr, HW 2005, Development of antiviral therapy for severe acute respiratory syndrome.’, Antiviral Research, 26: 81-97.
Colak, F, Genisel, M & Uras, IS 2021, Evaluation of Glycyrrhiza Species as Medicinal Plant. Anatolian Journal of Biology, 1: 1-11.
Cruz-Martins, N, Barros, L, Dueñas, M, Santos Buelga, C & Ferreira, I 2015, Characterization in phenolic compounds and antioxidant properties of Glycyrrhiza glabra L. rhizomes and roots. RSC Advances, 5: 26991-26997.
Damle, M 2014, Glycyrrhiza glabra (Liquorice)-a potent medicinal herb, International Journal of Herbal Medicine, 2: 132-136.
Dang, L, Jin, Y, Yuan, Y, Shao, R & Wang, Y 2024, The king of chinese medicine Glycyrrhiza glabra (Licorice): All-round inquiry in its chemical composition, pharmacodynamics, traditional and medicinal value. Acupuncture and Herbal Medicine, 1087–1097.
Dastagir, G & Rizvi, MA 2016, Glycyrrhiza glabra L.(Liquorice). Pakistan Journal of Pharmaceutical Sciences, 29: 5.
El-Saber Batiha, G, Magdy Beshbishy, A, El-Mleeh, A, Abdel-Daim, MM & Prasad Devkota, H 2020, Traditional uses, bioactive chemical constituents, and pharmacological and toxicological activities of Glycyrrhiza glabra L. (Fabaceae). Biomolecules,25:352.
Eltahir, AOE, Lategan, KL, David, OM, Pool, EJ, Luckay, RC & Hussein, AA 2024, Green Synthesis of gold nanoparticles using Liquiritin and other phenolics from Glycyrrhiza glabra and their anti-inflammatory activity. Journal of Functional Biomaterials, 15: 95.
Esmaeili, H, Karami, A, Hadian, J, Saharkhiz, MJ & Ebrahimi, SN 2019, Variation in the phytochemical contents and antioxidant activity of Glycyrrhiza glabra populations collected in Iran. Industrial Crops and Products, 137: 248-259.
Feng Yeh, C, Wang, KC, Chiang, LC, Shieh, DE, Yen, MH & San Chang, J 2013, Water extract of licorice had anti-viral activity against human respiratory syncytial virus in human respiratory tract cell lines. Journal of Ethnopharmacology, 148: 466-473.
Fiore, C, Eisenhut, M, Krausse, R, Ragazzi, E, Pellati, D, Armanini, D & Bielenberg, J 2008, Antiviral effects of Glycyrrhiza species.’, Phytotherapy Research: PTR, 22: 141-148.
Frattaruolo, L, Carullo, G, Brindisi, M, Mazzotta, S, Bellissimo, L, Rago, V, Curcio, R, Dolce, V, Aiello, F & Cappello, AR 2019, Antioxidant and anti-inflammatory activities of flavanones from Glycyrrhiza glabra L. (licorice) leaf phytocomplexes: Identification of licoflavanone as a modulator of NF-kB/MAPK pathway. Antioxidants, 20: 186.
Fuhrman, B, Buch, S, Vaya, J, Belinky, PA, Coleman, R, Hayek, T & Aviram, M 1997, Licorice extract and its major polyphenol glabridin protect low-density lipoprotein against lipid peroxidation: in vitro and ex vivo studies in humans and in atherosclerotic apolipoprotein E-deficient mice. The American Journal of Clinical Nutrition, 66: 267–275.
Gao, Y, Lv, X, Yang, H, Peng, L & Ci, X 2020, Isoliquiritigenin exerts antioxidative and anti-inflammatory effects via activating the KEAP-1/Nrf2 pathway and inhibiting the NF-κB and NLRP3 pathways in carrageenan-induced pleurisy. Food & Function, 3: 2522-2534.
Hamad, G, Elaziz, A, Hassan, S, Shalaby, M & Mohdaly, A 2020, Chemical composition, antioxidant, antimicrobial and anticancer activities of licorice (Glycyrrhiza glabra L.) root and its application in functional yoghurt. Journal of Food and Nutrition Research, 8: 707-715.
Hayashi, H, Yasuma, M, Hiraoka, N, Ikeshiro, Y, Yamamoto, H, Yeşilada, E, Sezik, E, Honda, G & Tabata, M 1996, Flavonoid variation in the leaves of Glycyrrhiza glabra. Phytochemistry, 42: 701-704.
Hosseini, SH, Bibak, H, Ghara, AR, Sahebkar, A & Shakeri, A 2021, Ethnobotany of the medicinal plants used by the ethnic communities of Kerman province, Southeast Iran. Journal of Ethnobiology and Ethnomedicine, 17: 31.
Jiang, Y-X, Dai, Y-Y, Pan, Y-F, Wu, X-M, Yang, Y, Bian, K & Zhang, D-D 2018, Total flavonoids from Radix glycyrrhiza exert anti-inflammatory and antitumorigenic effects by inactivating iNOS signaling pathways. Evidence-Based Complementary and Alternative Medicine: 2018: 6714282.
Kim, J, Park, S, Yun, K-J, Cho, Y-W, Park, H-J & Lee, K-T 2008, Isoliquiritigenin isolated from the roots of Glycyrrhiza uralensis inhibits LPS-induced iNOS and COX-2 expression via the attenuation of NF-κB in RAW 264.7 macrophages. European Journal of Pharmacology, 584: 175-84.
Kim, S-H, Hong, J-H, Yang, W-K, Geum, J-H, Kim, H-R, Choi, S-Y, Kang, Y-M, An, H-J & Lee, Y-C 2020, Herbal combinational medication of Glycyrrhiza glabra, Agastache rugosa containing glycyrrhizic acid, tilianin inhibits neutrophilic lung inflammation by affecting CXCL2, interleukin-17/STAT3 signal pathways in a murine model of COPD. Nutrients, 12: 926.
Kukkar, R & Patel, R 2021, Multiple used Medicinal Plant: Glycyrrhiza Glabra. SunText Review of Pharmaceutical Sciences, 2: 111.
Lim, WS 2021, Pneumonia: An overview. Encyclopedia of Respiratory Medicine, 17: 185-197.
Meng, X, Zhang, X, Su, X, Liu, X, Ren, K, Ning, C, Zhang, Q & Zhang, S 2022, Daphnes Cortex and its licorice-processed products suppress inflammation via the TLR4/NF-κB/NLRP3 signaling pathway and regulation of the metabolic profile in the treatment of rheumatoid arthritis. Journal of Ethnopharmacology, 283: 114657.
Meyer Sauteur, PM 2020, Challenges and progress toward determining pneumonia etiology. Clinical Infectious Diseases, 71: 514-516.
Miyashita, N 2022, Atypical pneumonia: Pathophysiology, diagnosis, and treatment. Respiratory Investigation, 60: 56-67.
Mohammadi, Z, Pishkar, L, Eftekhari, Z, Barzin, G & Babaeekhou, L 2024, Evaluation of the antimicrobial and cytotoxic activity of cultivated Valeriana officinalis. Plant Science Today, 11: 145-155.
Nassan, MA, Soliman, MM, Aldhahrani, A, Althobaiti, F & Alkhedaide, AQ 2021, Ameliorative impacts of Glycyrrhiza glabra root extract against nephrotoxicity induced by gentamicin in mice. Food Science & Nutrition, 9: 3405-3413.
Nelson, S, Mason, CM, Kolls, J & Summer, WR 1995, Pathophysiology of pneumonia. Clinics in Chest Medicine, 16: 1-12.
Quinton, LJ, Walkey, AJ & Mizgerd, JP 2018, Integrative physiology of pneumonia. Physiological Reviews, 98: 1417–1464.
Račková, L, Jančinová, V, Petríková, M, Drábiková, K, Nosáľ, R, Štefek, M, Košťálová, D, Prónayová, N & Kováčová, M 2007, Mechanism of anti-inflammatory action of liquorice extract and glycyrrhizin. Natural Product Research, 21: 1234-1241.
Razmjoue, D, Pirhadi, M, Soltanbeigi, A, Lysiuk, R & Asadzadeh, R 2023, Investigating the effect of total antioxidant capacity of medicinal plants Salsola rigida and Triticum aestivum. Plant Biotechnology Persa, 5: 1-6.
Safdarpour, S, Eftekhari, Z, Eidi, A & Doroud, D 2022, Encapsulated saponin by ferritin nanoparticles attenuates the murine Pneumococcal pneumonia. Microbial Pathogenesis, 172: 105731.
Sharad, S & Kapur, S 2021, Indian herb-derived phytoconstituent-based antiviral, antimicrobial and antifungal formulation: An oral rinse candidate for oral hygiene and the potential prevention of COVID-19 outbreaks. Pathogens (Basel, Switzerland), 10: 1130.
Sharma, V, Katiyar, A & Agrawal, RC 2017, Glycyrrhiza glabra: Chemistry and pharmacological activity. Sweeteners, 31: 87-100.
Shirazi, Z, Piri, K, Asl, AM & Hasanloo, T 2012, Glycyrrhizin and isoliquiritigenin production by hairy root culture of Glycyrrhiza glabra. Journal of Medicinal Plants Research, 31: 4640-4646.
Sinha, SK, Prasad, SK, Islam, MA, Gurav, SS, Patil, RB, AlFaris, NA, Aldayel, TS, AlKehayez, NM, Wabaidur, SM & Shakya, A 2021, Identification of bioactive compounds from Glycyrrhiza glabra as possible inhibitor of SARS-CoV-2 spike glycoprotein and non-structural protein-15: a pharmacoinformatics study. Journal of Biomolecular Structure and Dynamics, 39: 4686-4700.
Sultana, S, Haque, A, Hamid, K, Urmi, KF & Roy, S 2010, Antimicrobial, cytotoxic and antioxidant activity of methanolic extract of Glycyrrhiza glabra. Agriculture and Biology Journal of North America, 1: 957-960.
Teichmann, K, Pristouschek, C, Cozzi, F, Ocelova, V, Stoiber, C & Mayer, E 2022, Antioxidative activity of commercial liquorice samples and their phytochemical constituents in vitro on cellular level. Planta Medica, 88: 140.
Tohma, HS & Gulçin, I 2010, Antioxidant and radical scavenging activity of aerial parts and roots of Turkish liquorice (Glycyrrhiza glabra L.). International Journal of Food Properties, 13: 657–671.
Vashist, H & Sharma, D 2013, Pharmacognostical aspects of Glycyrrhiza glabra. Journal of Pharmaceutical and Clinical Research ,6: 55-59.
Visavadiya, NP, Soni, B & Dalwadi, N 2009, Evaluation of antioxidant and anti-atherogenic properties of Glycyrrhiza glabra root using in vitro models. International Journal of Food Sciences and Nutrition, 2: 135-149.
Wahab, S, Ahmad, I, Irfan, S, Siddiqua, A, Usmani, S & Ahmad, MP 2022, Pharmacological efficacy and safety of Glycyrrhiza glabra in treating respiratory tract infections. Mini-Reviews in Medicinal Chemistry, 22: 1476-1494.
Wu, Y, Wang, Z, Du, Q, Zhu, Z, Chen, T, Xue, Y, Wang, Y, Zeng, Q, Shen, C, Jiang, C, Liu, L, Zhu, H & Liu, Q 2022, Pharmacological effects and underlying mechanisms of Licorice-derived flavonoids. Evidence-Based Complementary and Alternative Medicine, 2022: 9523071.
Yang, R, Yuan, B-C, Ma, Y-S, Zhou, S & Liu, Y 2017, The anti-inflammatory activity of licorice, a widely used Chinese herb. Pharmaceutical Bology, 55: 5-18.
Yao, L & Sun, T 2019, Glycyrrhizin administration ameliorates Streptococcus aureus-induced acute lung injury. International Immunopharmacology, 70: 504-511.
Yönden, Z, Shabestari, AM, Ghayourvahdat, A, Azimizonuzi, H, Hosseini, ST & Daemi, A 2022, How anti-inflammatory and antioxidant dietary supplements are effective in undermining COVID-19 pathogenesis: The role of vitamin C and D. Medicina Balear, 37: 158-164.
Zadeh, JB, Kor, ZM & Goftar, MK 2013, Licorice (Glycyrrhiza glabra Linn) as a valuable medicinal plant. International Journal of Advanced Biological and Biomedical Research, 1: 1281-1288. | ||
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