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Medicinal Plants Used for Glottis Disorders

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Herbals of Asia

Abstract

Nearly one-third of the population faces impaired voice problems (glottis disorders) at some point in their lives (Clouser 2005; Schwartz et al. 2009). This condition is more prevalent in teachers and elderly people, but all age groups and genders get affected. It affects both our health and quality of life (QOL) (Coyle and Thorson 2001). The hoarseness (dysphonia) is defined as a disorder characterized by altered vocal quality, pitch, loudness, or vocal effort impairing communication or reducing voice-related QOL, because impaired communication means decreased or limited ability to interact vocally with others. It leads to frequent health care visits and several billion dollars loss on yearly basis from work absentees (Ramig and Verdolini 1998; Schwartz et al. 2009). It is often caused by benign or self-limited conditions, but may also present the symptom of a more serious or progressive condition requiring prompt diagnosis and management (Rancati et al. 2010).

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References

  • Abbhi V, Joseph L, George M (2011) Phytochemical analysis of fruit extract of Myrsine africana. Int J Pharm Pharm Sci 3(4):427–430

    CAS  Google Scholar 

  • Ahmad S, Zeb A (2020) Phytochemical profile and pharmacological properties of Trifolium repens. J Basic Clin Physiol Pharmacol 32(1). https://doi.org/10.1515/jbcpp-2020-0015

  • Ahmad B, Azam S, Bashir S et al (2011) Insecticidal, brine shrimp cytotoxicity, antifungal and nitric oxide free radical scavenging activities of the aerial parts of Myrsine africana L. Afr J Biotechnol 10(8):1448–1453

    Google Scholar 

  • Ahmad M, Khan MPZ, Mukhtar A et al (2016) Ethnopharmacological survey on medicinal plants used in herbal drinks among the traditional communities of Pakistan. J Ethnopharmacol 184:154–186

    Article  PubMed  Google Scholar 

  • Ahmadiani A, Hosseiny J, Semnanian S et al (2000) Antinociceptive and anti-inflammatory effects of Elaeagnus angustifolia fruit extract. J Ethnopharmacol 72(1–2):287–292

    Article  CAS  PubMed  Google Scholar 

  • Ahmed A, Wadud A, Jahan N et al (2013) Efficacy of Adiantum capillus veneris Linn in chemically induced urolithiasis in rats. J Ethnopharmacol 146(1):411–416

    Article  CAS  PubMed  Google Scholar 

  • Aina R, Palin L, Citterio S (2006) Molecular evidence for benzo[a] pyrene and naphthalene genotoxicity in Trifolium repens L. Chemosphere 65(4):666–673

    Article  CAS  PubMed  Google Scholar 

  • Akhtar N, Ijaz S, Khan HMS et al (2016) Ziziphus mauritiana leaf extract emulsion for skin rejuvenation. Trop J Pharm Res 15(5):929–936

    Google Scholar 

  • Ali N (1988) Phytochemical investigations of certain, leguminous and compositae plants with special reference to their antinematode and antifungal compounds. Aligarh Muslim Univ 68(4):1–73

    Google Scholar 

  • Ali M, Juyal D (2018) A review on pharmacognostical and phytochemical evaluation of Pyrus pashia Buch-Ham ex D. Don. Pharma Innov 7(5):186

    Google Scholar 

  • Ali N, Aleem U, Shah SWA et al (2013) Acute toxicity, brine shrimp cytotoxicity, anthelmintic and relaxant potentials of fruits of Rubus fruticosus Agg. BMC Complement Altern Med 13(1):138

    Article  PubMed  PubMed Central  Google Scholar 

  • Ali M, Jameel M, Mir SR, Sultana S (2017) Chemical constituents from the aerial parts of Lantana indica Roxb. IJP 4(6):193–199

    CAS  Google Scholar 

  • Alizadeh A, Moshiri M, Alizadeh J, Balali-Mood M (2014) Black henbane and its toxicity-a descriptive review. Avice J Phytomed 4(5):297

    CAS  Google Scholar 

  • Arot LOM, Misdiwo JO, Kraus W (1996) A flavonol glycoside from Myrsine africana leaves. Phytochemistry 43(5):1107–1109

    Article  CAS  Google Scholar 

  • Arya V, Gupta R, Gupta VK (2011) Pharmacognostic and phytochemical investigations on Pyrus pashia Buch.-Ham. ex D. Don stem bark. J Chem Pharm Res 3(3):447–456

    Google Scholar 

  • Asthana RK, Sharma NK, Kulshreshtha DK, Chatterjee SK (1991) A xanthone from Swertia chirayita. Phytochemistry 30(3):1037–1039

    Article  CAS  Google Scholar 

  • Atta-Ur-Rahman, Sultana N, Khan MR, Choudhary MI (2002) Triterpene and coumarins from Skimmia laureola. Nat Prod Lett 16(5):305–313

    Article  CAS  PubMed  Google Scholar 

  • Ayaz FA, Bertoft E (2001) Sugar and phenolic acid composition of stored commercial oleaster fruits. J Food Compos Anal 14(5):505–511

    Article  CAS  Google Scholar 

  • Baart JLG, Baart-Bremer EL, Sagar MZ (2004) Names of plants in Kalam Kohistani (Pakistan). Work Papers of the Summer Institute of Linguistics, University of North Dakota Session [C], p 48

    Google Scholar 

  • Benarba B, Belabid L, Righi K et al (2015) Ethnobotanical study of medicinal plants used by traditional healers in Mascara (North West of Algeria). J Ethnopharmacol 175:626–637

    Article  PubMed  Google Scholar 

  • Bibi Y, Nisa S, Zia M et al (2012) In vitro cytotoxic activity of Aesculus indica against breast adenocarcinoma cell line (MCF-7) and phytochemical analysis. Pak J Pharm Sci 25(1):183–187

    PubMed  Google Scholar 

  • Cartier N, Chambat G, Joseleau J-P (1987) An arabinogalactan from the culture medium of Rubus fruticosus cells in suspension. Carbohydr Res 168(2):275–283

    Article  CAS  Google Scholar 

  • Chakraborthy GS (2009) Free radical scavenging activity of Aesculus indica leaves. Int J Pharm Tech Res 1:524–526

    Google Scholar 

  • Chung S-K, Kim Y-C, Takaya Y et al (2004) Novel flavonol glycoside, 7-O-methyl mearnsitrin, from Sageretia theezans and its antioxidant effect. J Agric Food Chem 52(15):4664–4668

    Article  CAS  PubMed  Google Scholar 

  • Clouser RA (2005) The myth of religious neutrality, Revised Edition: An Essay on the Hidden Role of Religious Belief in Theories. University of Notre Dame Press

    Google Scholar 

  • Cohen JT, Oestreicher-Kedem Y, Fliss DM, DeRowe A (2007) Glottal function index: a predictor of glottal disorders in children. Ann Otol Rhinol Laryngol 116(2):81–84

    Article  PubMed  Google Scholar 

  • Coyle JR, Thorson E (2001) The effects of progressive levels of interactivity and vividness in web marketing sites. J Advert 30(3):65–77

    Article  Google Scholar 

  • Dahiru D, Obidoa O (2008) Evaluation of the antioxidant effects of Ziziphus mauritiana Lam. leaf extracts against chronic ethanol-induced hepatotoxicity in rat liver. Afr J Tradit Complement Altern Med 5(1):39–45

    Article  CAS  Google Scholar 

  • De Jong MD, Thanh TT, Khanh TH et al (2005) Oseltamivir resistance during treatment of influenza A (H5N1) infection. N Engl J Med 353(25):2667–2672

    Article  PubMed  Google Scholar 

  • Dehdari S, Hajimehdipoor H (2018) Medicinal properties of Adiantum capillus-veneris Linn. in traditional medicine and modern Phytotherapy: A review article. Iran J Public Health 47(2):188

    PubMed  PubMed Central  Google Scholar 

  • Deng X, Xia Y, Hu W et al (2010) Cadmium-induced oxidative damage and protective effects of n-acetyl-l-cysteine against cadmium toxicity in Solanum nigrum L. J Hazard Mater 180(1–3):722–729

    Article  CAS  PubMed  Google Scholar 

  • Devika R, Koilpillai J (2012) Phytochemical screening studies of bioactive compounds of Tagetes erecta. Int J Pharm Bio Sci 3(4):596–602

    Google Scholar 

  • Díaz F, Chávez D, Lee D et al (2003) Cytotoxic flavone analogues of vitexicarpin, a constituent of the leaves of Vitex negundo. J Nat Prod 66(6):865–867

    Article  PubMed  Google Scholar 

  • Farzaei MH, Bahramsoltani R, Abbasabadi Z, Rahimi R (2015) A comprehensive review on phytochemical and pharmacological aspects of Elaeagnus angustifolia L. J Pharm Pharmacol 67(11):1467–1480

    Article  CAS  PubMed  Google Scholar 

  • Firdoos S, Khan AU, Ali F (2018) Pharmacological investigation of Aesculus indica aqueous-ethanol extract for its anti-nociceptive action. J Anim Plant Sci 28(2):610–615

    CAS  Google Scholar 

  • Fujita T, Sezik E, Tabata M et al (1995) Traditional medicine in Turkey VII. Folk medicine in Middle and West Black Sea regions. Econ Bot 49:406–422

    Article  Google Scholar 

  • Fukuda T, Ito H, Yoshida T (2003) Antioxidative polyphenols from walnuts (Juglans regia L.). Phytochemistry 63(7):795–801

    Article  CAS  PubMed  Google Scholar 

  • Gathuma JM, Mbaria JM, Wanyama J et al (2004) Samburu and Turkana healers. Efficacy of Myrsine africana, Albizia anthelmintica and Hilderbrantia sepalosa herbal remedies against mixed natural sheep helminthosis in Samburu district, Kenya. J Ethnopharmacol 91:7–12

    Article  CAS  PubMed  Google Scholar 

  • Gill BS, Mehra R, Kumar S (2018) Vitex negundo and its medicinal value. Mol Biol Rep 45(6):2925–2934

    Google Scholar 

  • Girzu M, Carnat A, Privat AM et al (1998) Sedative effect of walnut leaf extract and juglone, an isolated constituents. Pharm Biol 36:280–286

    Article  CAS  Google Scholar 

  • Goyal PK (2012) Phytochemical and pharmacological properties of the genus Grewia: a review. Int J Pharm Pharm Sci 4(4):72–78

    CAS  Google Scholar 

  • Goyal M, Nagori BP, Sasmal D (2012) Review on ethnomedicinal uses, pharmacological activity and phytochemical constituents of Ziziphus mauritiana (Z. jujuba Lam., non Mill). Spatula DD 2:107–116

    Article  Google Scholar 

  • Gürbüz I, Üstün O, Yesilada E et al (2003) Anti-ulcerogenic activity of some plants used as folk remedy in Turkey. J Ethnopharmacol 88(1):93–97

    Article  PubMed  Google Scholar 

  • Hamayun M (2007) Traditional uses of some medicinal plants of Swat Valley, Pakistan. Ind J Trad Know 6(4):636–641

    Google Scholar 

  • Harikumar KB, Nimita CV, Preethi KC et al (2008) Toxicity profile of lutein and lutein ester isolated from marigold flowers (Tagetes erecta). Int J Toxicol 27(1):1–9

    Article  CAS  PubMed  Google Scholar 

  • He J, Yin T, Chen Y et al (2015) Phenolic compounds and antioxidant activities of edible flowers of Pyrus pashia. J Funct Foods 17:371–379

    Article  CAS  Google Scholar 

  • Hosseinzadeh H, Ramezani M, Namjo N (2003) Muscle relaxant activity of Elaeagnus angustifolia L. fruit seeds in mice. J Ethnopharmacol 84(2–3):275–278

    Article  PubMed  Google Scholar 

  • Hosseinzadeh H, Zarei H, Taghiabadi E (2011) Antinociceptive, anti-inflammatory and acute toxicity effects of Juglans regia L. leaves in mice. Iran Red Crescent Med J 13(1):27

    CAS  PubMed  PubMed Central  Google Scholar 

  • Hu W, Shen W, Wang MH (2009) Free radical scavenging activity and protective ability of methanolic extract from Duchesnea indica against protein oxidation and DNA damage. Prevent Nutrit Food Sci 14(4):277–282

    Article  CAS  Google Scholar 

  • Huai H (2010) Ethnomedicinal analysis of toxic plants from five ethnic groups in China. Ethnobot Res Appl 8:169–179

    Article  Google Scholar 

  • Hussain AI, Anwar F, Chatha SA et al (2013) Chemical composition and bioactivity studies of the essential oils from two Thymus species from the Pakistani flora. LWT-Food Sci Technol 50(1):185–192

    Article  CAS  Google Scholar 

  • Hyun TK, Song SC, Song CK, Kim JS (2015) Nutritional and nutraceutical characteristics of Sageretia theezans fruit. J Food Drug Anal 23(4):742–749

    Article  CAS  PubMed  Google Scholar 

  • Ibraheim ZZ, Ahmed AS, Gouda YG (2011) Phytochemical and biological studies of Adiantum capillus-veneris L. Saudi Pharmaceut J 19(2):65–74

    Article  CAS  Google Scholar 

  • Inoue K, Tanahashi T, Inouye H et al (1982) A secoiridoid glucoside of Jasminum humile var. revolutum. Phytochemistry 21(2):359–361

    Article  CAS  Google Scholar 

  • Janbaz KH, Saqib F, Hawaz J (2015) Scientific basis for used of Pyrus pashia Buch-Ham ex D.Don fruit in GI, Respiratory and Cardiovascular ailments. J Pone 10(3):e0118605

    Google Scholar 

  • Jaradat NA (2005) Medical plants utilized in Palestinian folk medicine for treatment of diabetes mellitus and cardiac diseases. J Al-Aqsa Univ 19:1–28

    Google Scholar 

  • Jasso-Gándara SN, Estrada-Castillón E, Encina-Domínguez JA et al (2020) Plants used as medicinal in Güémez, Tamaulipas, north-eastern Mexico. Notulae Botanicae Horti Agrobotanici Cluj-Napoca 48(3):1130–1140

    Article  Google Scholar 

  • Jaziri M, Legros M, Homes J, Vanhaelen M (1988) Tropine alkaloids production by hairy root cultures of Datura stramonium and Hyoscyamus niger. Phytochemistry 27(2):419–420

    Article  CAS  Google Scholar 

  • Jiang M-Z, Yan H, Wen Y, Li X-M (2011) In vitro and in vivo studies of antioxidant activities of flavonoids from Adiantum capillus-veneris L. Afr J Pharm Pharmacol 5(18):2079–2085

    CAS  Google Scholar 

  • Kabubii ZN, Mbaria J, Mathiu M (2015) Acute toxicity studies of Myrsine africana aqueous seed extract in male Wistar rats on some hematological and biochemical parameters. Clin Phytosci 1(1):1–4

    Article  Google Scholar 

  • Kaileh MB, Berghea WV, Boonec E et al (2007) Screening of indigenous Palestinian medicinal plants for potential anti-inflammatory and cytotoxic activity. J Ethnopharmacol 113:510–516

    Article  PubMed  Google Scholar 

  • Kala CP (2006) Medicinal plants of the high altitude cold desert in India: diversity, distribution and traditional uses. Int J Biodiver Sci Manag 2(1):43–56

    Article  Google Scholar 

  • Karan M, Vasisht K, Handa S (1999) Antihepatotoxic activity of Swertia chirata on carbon tetrachloride induced hepatotoxicity in rats. Phytoth Rese Int J Devot Pharmacol Toxicol Eval Nat Prod Derivat 13(1):24–30

    CAS  Google Scholar 

  • Kayani S, Ahmad M, Sultana S et al (2015) Ethnobotany of medicinal plants among the communities of Alpine and Sub-alpine regions of Pakistan. J Ethnopharmacol 164:186–202

    Article  PubMed  Google Scholar 

  • Khalil AT, Ovais M, Ullah I et al (2018) Sageretia thea (Osbeck.) modulated biosynthesis of NiO nanoparticles and their in vitro pharmacognostic, antioxidant and cytotoxic potential. Artific Cells Nanomed Biotechnol 46(4):838–852

    Google Scholar 

  • Khan SW, Khatoon S (2008) Ethnobotanical studies on some useful herbs of Haramosh and Bugrote valleys in Gilgit, northern areas of Pakistan. Pak J Bot 40:43–58

    Google Scholar 

  • Khan SU, Khan A-u, Shah A-u-HA et al (2016) Heavy metals content, phytochemical composition, antimicrobial and insecticidal evaluation of Elaeagnus angustifolia. Toxicol Ind Health 32(1):154–161

    Article  CAS  PubMed  Google Scholar 

  • Khan MA, Ahmad W, Ahmad M, Nisar M (2017) Hepatoprotective effect of the solvent extracts of Viola canescens Wall. ex. Roxb. against CCl4 induced toxicity through antioxidant and membrane stabilizing activity. BMC Complement Altern Med 17(1):10

    Article  PubMed  PubMed Central  Google Scholar 

  • Kim HG, Cho JH, Jeong EY et al (2006) Growth inhibiting activity of active component isolated from Terminalia chebula fruits against intestinal bacteria. J Food Prot 69:2205–2209

    Article  CAS  PubMed  Google Scholar 

  • Kiranmai M, Kazim S, Ibrahim M (2011) Combined wound healing activity of Gymnema sylvestre and Tagetes erecta Linn. Int J Pharm Appl 2(2):135–140

    Google Scholar 

  • Kokwaro JO (1993) Medicinal plants of East Africa, 2nd edn. Kenya literature Bureau, Nairobi

    Google Scholar 

  • Kumar V, Van Staden J (2016) A review of Swertia chirayita (Gentianaceae) as a traditional medicinal plant. Front Pharmacol 6:308

    Article  PubMed  PubMed Central  Google Scholar 

  • Kunwar RM, Adhikari N (2005) Ethnomedicine of Dolpa district, Nepal: the plants, their vernacular names and uses. J Ecol App 8:43–49

    Google Scholar 

  • Lim SH, Choi CI (2019) Pharmacological properties of Morus nigra L. (black mulberry) as a promising nutraceutical resource. Nutrients 11(2):437

    Article  CAS  PubMed Central  Google Scholar 

  • Liu L, LiW KK et al (2004) Newalphatetralonylglucosides from the fruit of Juglans mandshurica. Chem Pharm Bull Tokyo 52:566–569

    Article  CAS  PubMed  Google Scholar 

  • Lu Y, Luo J, Kong L (2011) Steroidal alkaloid saponins and steroidal saponins from Solanum surattense. Phytochemistry 72(7):668–673

    Article  CAS  PubMed  Google Scholar 

  • Luo Z, Wang S, Wang D (2016) Phenolic profiles and antioxidant capacities of crude extracts and subsequent fractions from Potentilla fruticosa L. leaves. Nat Prod Res 30(16):1890–1895

    Article  CAS  PubMed  Google Scholar 

  • Ma C-Y, Liu WK, Che C-T (2002) Lignanamides and nonalkaloidal components of Hyoscyamus niger seeds. J Nat Prod 65(2):206–209

    Article  CAS  PubMed  Google Scholar 

  • Madhavi HR, Neha KS, Saininand SA et al (2014) A holistic approach on review of Solanum virginianum L. RRJPPS 3(3):1–4

    Google Scholar 

  • Mahoney N, Molyneux RJ (2004) Phytochemical inhibition of aflatoxigenicity in Aspergillus flavus by constituents of walnut (Juglans regia). J Agric Food Chem 52(7):1882–1889

    Article  CAS  PubMed  Google Scholar 

  • Majid A, Ahmad H, Saqib Z et al (2020) Exploring threatened traditional knowledge; ethnomedicinal studies of rare endemic flora from Lesser Himalayan region of Pakistan. Rev Bras 29:785–792

    Google Scholar 

  • Mangai SA, Subban R (2014) In-vitro cytotoxicity of Trichodesma indium LR Br., extracts against three human cancer cell lines. Asian J Pharmaceut Clin Res 7:103–105

    Google Scholar 

  • Masood M, Arshad M, Asif S, Chaudhari SK (2014) Viola canescens: Herbal wealth to be conserved. J Bot 2014:345451

    Google Scholar 

  • Mbaabu M, Matu EN (2013) Medicinal plants utilization in the treatment of human and livestock diseases in Meru. Pharm J 1(2):18–24

    Google Scholar 

  • Mehmood F, Qasim M, Khan Z et al (2011) In vitro evaluation of anthelmintic activity of essential oils from different parts of Skimmia laureola (DC.) Zucc. ex Walp., ver. Nair. Pak J Bot 43(6):2915–2918

    Google Scholar 

  • Mehmood F, Khan Z-u-D, Manzoor F, Jamil M (2016) Analysis of insect toxicity and repellent activity of Phytochemicals from “Skimmia laureola, Nair” against “Black garden ant, Lasius niger” of Pakistan. Pak J Pharm Sci 29(3):1–28

    Google Scholar 

  • Mouhajir F, Hudson JB, Rejdali M, Towers GHN (2001) Multiple antiviral activities of endemic medicinal plants used by Berber people of Morocco. Pharm Biol 39:364–374

    Article  Google Scholar 

  • Muhammad N, Saeed M, Aleem A, Khan H (2012) Ethnomedicinal, phytochemical and pharmacological profile of genus Viola. Phytopharmacology 3(1):214–226

    Google Scholar 

  • Muhammad N, Ibrar M, Khan H et al (2013) In vivo screening of essential oils of Skimmia laureola leaves for antinociceptive and antipyretic activity. Asian Pac J Trop Biomed 3(3):202–206

    Article  PubMed  PubMed Central  Google Scholar 

  • Mukherjee M, Ghatak K, Ganguly S, Antoulas S (1984) Rubinic acid, a triterpene acid from Rubus fruticosus. Phytochemistry 23(11):2581–2582

    Article  CAS  Google Scholar 

  • Nawaz M, Ahmad T, Mushtaq MN, Batool A (2014) Hepatoprotective activity of Thymus linearis against paracetamol and carbon tetrachloride-induced hepatotoxicity in albino mice. Bangladesh J Pharmacol 9(2):230–234

    Google Scholar 

  • Naz A, Saeed M, Hussain MM, Ishaq MS (2015) In vitro phytochemical and antimicrobial screening of Thymus linearis. Bangladesh J Pharmacol 10(1):21–26

    Article  Google Scholar 

  • Orwa C, Mutina A, Kindt R et al (2009) Agroforestree database: a tree species reference and selection guide version 4.0. World Agroforestry Centre ICRAF, Nairobi

    Google Scholar 

  • Özgen M, Serçe S, Kaya C (2009) Phytochemical and antioxidant properties of anthocyanin-rich Morus nigra and Morus rubra fruits. Sci Hortic 119(3):275–279

    Article  Google Scholar 

  • Pal BC, Achari B, Yoshikawa K, Arihara S (1995) Saponins from Albizia lebbeck. Phytochemistry 38(5):1287–1291

    Article  CAS  PubMed  Google Scholar 

  • Panday HP (2004) Seed fume of Solanum surattense: a traditional panacea for teeth and gums. Indian J Tradit Knowl 3(2):206–207

    Google Scholar 

  • Pandey RK, Shukla SS, Jain A et al (2018) Evaluation of comparative immunomodulatory potential of Solanum xanthocarpum root and fruits on experimental animal. Indian J Pharm Educ Res 52(4 Suppl 2):237–245

    Article  Google Scholar 

  • Panseeta P, Lomchoey K, Prabpai S et al (2011) Antiplasmodial and antimycobacterial cyclopeptide alkaloids from the root of Ziziphus mauritiana. Phytochemistry 72(9):909–915

    Article  CAS  PubMed  Google Scholar 

  • Papoutsi Z, Kassi E, Chinou I et al (2008) Walnut extract (Juglans regia L.) and its component ellagic acid exhibit anti-inflammatory activity in human aorta endothelial cells and osteoblastic activity in the cell line KS483. Br J Nutr 99:715–722

    Article  CAS  PubMed  Google Scholar 

  • Parmar S, Gangwal A, Sheth N (2010) Solanum xanthocarpum (Yellow Berried Night Shade): a review. Der Pharm Lett 2(4):373–383

    Google Scholar 

  • Parrotta JA (2001) Healing plants of peninsular India. CABI Publishing, New York

    Book  Google Scholar 

  • Pawlowska AM, Oleszek W, Braca A (2008) Quali-quantitative analyses of flavonoids of Morus nigra L. and Morus alba L.(Moraceae) fruits. J Agric Food Chem 56(9):3377–3380

    Article  CAS  PubMed  Google Scholar 

  • Perianayagam J, Sharma S, Pillai K (2005) Evaluation of antidiarrheal potential of Trichodesma indicum root extract in rats. Methods Find Exp Clin Pharmacol 27(8):533–538

    Article  CAS  PubMed  Google Scholar 

  • Phoboo S, Pinto MDS, Bhowmik PC et al (2010) Quantification of major phytochemicals of Swertia chirayita, a medicinal plant from Nepal. Ecoprint Int J Ecol 17:59–68

    Article  Google Scholar 

  • PIER (2016) Pacific Islands ecosystems at risk. Pacific Islands Ecosystems at Risk. Honolulu, Hawaii, USA: HEAR, University of Hawaii. http://www.hear.org/pier/index.html

  • Pingale SS (2013) Evaluation of acute toxicity for Solanum xanthocarpum fruits. BioMedRx 1(3):330–332

    Google Scholar 

  • Ponce MA, Scervino JM, Erra-Balsells R et al (2004) Flavonoids from shoots and roots of Trifolium repens (white clover) grown in presence or absence of the arbuscular mycorrhizal fungus Glomus intraradices. Phytochemistry 65(13):1925–1930

    Article  CAS  PubMed  Google Scholar 

  • Rahman MT, Ahmed M, Alimuzzaman M, Shilpi JA (2003) Antinociceptive activity of the aerial parts of Solanum xanthocarpum. Fitoterapia 74(1–2):119–121

    Article  CAS  PubMed  Google Scholar 

  • Rajurkar N, Gaikwad K (2012) Evaluation of phytochemicals, antioxidant activity and elemental content of Adiantum capillus veneris leaves. J Chem Pharm Res 4(1):365–374

    CAS  Google Scholar 

  • Ramig LO, Verdolini K (1998) Treatment efficacy: voice disorders. J Speech Lang Hear Res 41(1):S101–S116

    Article  CAS  PubMed  Google Scholar 

  • Rancati T, Schwarz M, Allen AM et al (2010) Radiation dose-volume effects in the larynx and pharynx. Int J Radiat Oncol Biol Phys 76(3):S64–S69

    Article  PubMed  PubMed Central  Google Scholar 

  • Rasineni GK, Siddavattam D, Reddy AR (2008) Free radical quenching activity and polyphenols in three species of coleus. J Med Plants Res 2(10):285–291

    Google Scholar 

  • Sabudak T, Isik E, Oksuz S (2008) Two new compounds from Trifolium resupinatum var. microcephalum. J Asian Nat Prod Res 10:1017–1021

    Article  CAS  PubMed  Google Scholar 

  • Schwartz SR, Cohen SM, Dailey SH et al (2009) Clinical practice guideline: hoarseness (Dysphonia). Otolaryngol Head Neck Surg 141(S1):1–31

    Article  Google Scholar 

  • Schwartz RH, Kim D, Martin M, Pichichero ME (2015) A reappraisal of the minimum duration of antibiotic treatment before approval of return to school for children with streptococcal pharyngitis. Pediatr Infect Dis J 34(12):1302–1304

    Article  PubMed  Google Scholar 

  • Shandesh B, Ram C, Robin T (2006) Ethnomedicinal plants used by the people of Manang district, central Nepal. J Ethnobiol Ethnomed 2:41

    Article  Google Scholar 

  • Shanmin Z, Jingxiang T, Meichun W, Zhangju L (1994) Active components of four species of Sageretia. J Zhejiang Forest Coll 2(1–2):1–72

    Google Scholar 

  • Sharma OP, Sharma S, Pattabhi V et al (2007) A review of the hepatotoxic plant Lantana camara. Crit Rev Toxicol 37(4):313–352

    Article  CAS  PubMed  Google Scholar 

  • Sharma N, Sharma AK, Zafar R (2010) Kantikari: a prickly medicinal weed ~ ecosensorium. J Phytol Res 9(1):13–17

    Google Scholar 

  • Siddiqi R, Naz S, Ahmad S, Sayeed SA (2011) Antimicrobial activity of the polyphenolic fractions derived from Grewia asiatica, Eugenia jambolana and Carissa carandas. Int J Food Sci Technol 46(2):250–256

    Article  CAS  Google Scholar 

  • Siddiqui SZ, Ali S, Rubab K et al (2015) Pyrus pashia: A persuasive source of natural antioxidants. Pak J Pharm Sci 28(5):1–20

    Google Scholar 

  • Sing Y, Gupta A, Kannojia P (2020) Tagetes erecta (Marigold)-a review on its phytochemical and medicinal properties. Curr Med Drugs Res 4(1):1–6

    Google Scholar 

  • Singh S, Tripathi V, Singh R (1990) 3β, 24-Dihydroxyolean-12-en-28-oic acid, a pentacyclic triterpene acid from Lantana indica. Phytochemistry 29(10):3360–3362

    Article  CAS  Google Scholar 

  • Singh S, Tripathi V, Singh R (1991) A new pentacyclic triterpene acid from Lantana indica. J Nat Prod 54(3):755–758

    Article  CAS  Google Scholar 

  • Singh SK, Tripathi VJ, Singh RH (1998) A new pentacyclictriterpene acid from Lantana indica. J Nat Prod 61:1295

    Google Scholar 

  • Souza A, Ferreira A, Perales J et al (2012) Identification of Albizia lebbeck seed coat chitin-binding vicilins (7s globulins) with high toxicity to the larvae of the bruchid callosobruchus maculatus. Braz J Med Biol Res 45(2):118–124

    Article  CAS  PubMed  Google Scholar 

  • Spaccarotella KJ, Kris-Etherton PM, Stone WL et al (2008) The effect of walnut intake on factors related to prostate and vascular health in older men. Nutr J 7:13

    Article  PubMed  PubMed Central  Google Scholar 

  • Srijayanta S, Raman A, Goodwin B (1999) A comparative study of the constituents of Aesculus hippocastanum and Aesculus indica. J Med Food 2:45–50

    Article  CAS  PubMed  Google Scholar 

  • Syrpas M, Subbarayadu K, Kitrytė V, Venskutonis PR (2020) High-pressure extraction of antioxidant-rich fractions from shrubby cinquefoil (Dasiphora fruticosa L. Rydb.) leaves: process optimization and extract characterization. Antioxidants 9(6):457

    Article  CAS  PubMed Central  Google Scholar 

  • Taha NA, Al-Wadaan MA (2011) Utility and importance of walnut, Juglans regia Linn: A review. Afr J Microbiol Res 5(32):5796–5805

    Google Scholar 

  • Tahvilian R, Shahriari S, Faramarzi A, Komasi A (2014) Ethnopharmaceutical formulations in Kurdish ethno-medicine. Iran J Pharm Res 13:1029–1039

    PubMed  PubMed Central  Google Scholar 

  • Talaei-Khozani T, Vojdani Z, Dehghani F et al (2011) Toxic effects of Elaeagnus angustifolia fruit extract on chondrogenesis and osteogenesis in mouse limb buds. Tokai J Exp Clin Med 36(3):63–70

    PubMed  Google Scholar 

  • Tekuri SK, Pasupuleti SK, Konidala KK (2019) Phytochemical and pharmacological activities of Solanum surattense Burm. f.-A review. J Appl Pharm Sci 9(03):126–136

    Article  CAS  Google Scholar 

  • Tomczyk M, Latté KP (2009) Potentilla-A review of its phytochemical and pharmacological profile. J Ethnopharmacol 122(2):184–204

    Google Scholar 

  • Ullah B (2012) Pharmacognosy of Skimmia laureola (DC.) Siebold. & Zucc. ex Walp. and Zanthoxylum armatum DC., Family Rutaceae. University of Peshawar

    Google Scholar 

  • Umesh B, Thoppil JE (2014) Comparison of chemical constituents of tissue cultured and field grown plants of Duchesnea indica (Andr.) Focke. J Pharm Phytochem 3(3):68–70

    Google Scholar 

  • Vaidyaratnam PSV (2005) Indian Medicinal Plants a Compendium of 500 species. Orient Longman Priv Lim Chennai 3:264–265

    Google Scholar 

  • Venkataswamy R, Doss A, Sukumar M, Mubarack HM (2010) Preliminary phytochemical screening and antimicrobial studies of Lantana indica Roxb. Indian J Pharm Sci 72(2):229

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Verma SC, Vashishth E, Singh R et al (2013) A review on parts of Albizia lebbeck (L.) Benth. used as ayurvedic drugs. Res J Pharm Technol 6(11):1307–1313

    Google Scholar 

  • Verma R, Gangrade T, Punasiya R, Ghulaxe C (2014) Rubus fruticosus (blackberry) use as an herbal medicine. Pharmacogn Rev 8(16):101

    Google Scholar 

  • Wang J, Tao S, Qi K et al (2011) Changes in photosynthetic properties and antioxidative system of pear leaves to boron toxicity. Afr J Biotechnol 10(85):19693–19700

    CAS  Google Scholar 

  • Wang B, Qu H, Ma J et al (2014) Protective effects of Elaeagnus angustifolia leaf extract against myocardial ischemia/reperfusion injury in isolated rat heart. J Chem 2014:693573

    Google Scholar 

  • Webb CJ, Sykes WR, Garnock-Jones PJ (1988) Flora of New Zealand. Volume IV. Naturalised pteridophytes, gymnosperms and dicotyledons. DSIR Botany Division, Christchurch

    Google Scholar 

  • www.healthdictionary.org/jasminum-humile. Accessed 1 May 2021

  • Xiang B, Yu X, Li B et al (2019) Characterization, antioxidant, and anticancer activities of a neutral polysaccharide from Duchesnea indica (Andr.) Focke. J Food Biochem 43(7):e12899

    Article  PubMed  Google Scholar 

  • Yesilada E (2002) Biodiversity in Turkish Folk medicine. In: Sener B (ed) Biodiversity: biomolecular aspects of biodiversity and innovative utilization. Kluwer Academic/Plenum Publishers, London, pp 119–135

    Chapter  Google Scholar 

  • Zhong HB (1985) State administration of traditional Chinese medicine of the people’s republic of China, 3rd edn. Shanghai Science and Technology Press, China

    Google Scholar 

  • Zhu M, Dong X, Guo M (2015) Phenolic profiling of Duchesnea indica combining macroporous resin chromatography (MRC) with HPLC-ESI-MS/MS and ESI-IT-MS. Molecules 20(12):22463–22475

    Article  CAS  PubMed  PubMed Central  Google Scholar 

  • Zia-Ul-Haq M, Shahid SA, Ahmed S et al (2012) Anti-platelet activity of methanolic extract of Grewia asiatica L. leaves and Terminalla chebula Retz. fruits. J Med Plants Res 6(10):2029–2032

    Google Scholar 

  • Zia-Ul-Haq M, Stanković MS, Rizwan K, Feo VD (2013) Grewia asiatica L., a food plant with multiple uses. Molecules 18(3):2663–2682

    Google Scholar 

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Malik, K., Ahmad, M., Öztürk, M., Altay, V., Zafar, M., Sultana, S. (2021). Medicinal Plants Used for Glottis Disorders. In: Herbals of Asia. Springer, Cham. https://doi.org/10.1007/978-3-030-85222-1_8

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