Generic placeholder image

Current Pharmaceutical Biotechnology

Editor-in-Chief

ISSN (Print): 1389-2010
ISSN (Online): 1873-4316

Review Article

Sida cordifolia L.: Ethnobotany, Phytochemistry, Phytonanotechnology, and Commercial Application

Author(s): Sachin Kumar, Sandeep Kumar*, Vineet Kumar Vishnoi, Pradeep Kumar* and Dinesh Kumar Maheshwari

Volume 25, Issue 7, 2024

Published on: 12 October, 2023

Page: [838 - 859] Pages: 22

DOI: 10.2174/0113892010262937230919100024

Price: $65

conference banner
Abstract

Background: After a period of prolonged indifference, where synthetic drugs were preferred, interest in the biological aspects and bioactive ingredients of plants accountable for therapeutic potential has been explored eminently. Sida cordifolia L. is a perennial herb that has been widely utilized in Indian (Ayurveda, Unani, and Siddha), American, and Chinese folk medicine and herbalism practice for curing a wide range of ailments in human beings.

Objectives: The goal of this review is to elucidate indigenous knowledge parallelly with the pharmacotherapeutics potential of Sida cordifolia L. against various diseases. It is also intended to display pertinent information related to nanoparticle profiling.

Methods: In the current comprehensive study, web-based searches were performed by using several databases, such as Google Scholar, PubMed, ResearchGate, Science Direct, and Scopus, to figure out relevant research work and data published in academic journals from 1930 to July, 2023 using single or combination of keywords listed herewith.

Results: More than 50 chemical constituents, including quinazoline and phenethylamine alkaloids, flavones, flavonol, phytosterol, fatty acids, etc., were reported to be found in different parts of healthy plants. Apart from traditional claims and pharmacological aspects, several marketed herbal formulations and granted patents were also described.

Conclusion: Several in-vitro and in-vivo studies validated the usage of S. cordifolia as antiinflammatory, antibacterial, antifungal, antiprotozoal, anthelmintic, anticancer, antiulcer, cardioprotective, hypoglycemic, etc. agent. Few patents are also related to S. cordifolia, and more research work needs to be carried out for its potential granted to use as an antiviral agent and other new drug discovery molecules.

Keywords: Sida cordifolia L., bala, phytochemical characterization, cardioprotective, bioactive markers, perennial herb.

Graphical Abstract
[1]
Fabricant, D.S.; Farnsworth, N.R. The value of plants used in traditional medicine for drug discovery. Environ. Health Perspect., 2001, 109(Suppl. 1), 69-75.
[http://dx.doi.org/10.1289/ehp.01109s169] [PMID: 11250806]
[2]
Majhi, S.; Das, D. Chemical derivatization of natural products: Semisynthesis and pharmacological aspects- A decade update. Tetrahedron, 2021, 78, 131801.
[http://dx.doi.org/10.1016/j.tet.2020.131801]
[3]
Camejo-Rodrigues, J.; Ascensão, L.; Bonet, M.À.; Vallès, J. An ethnobotanical study of medicinal and aromatic plants in the Natural Park of “Serra de São Mamede”. J. Ethnopharmacol., 2003, 89(2-3), 199-209.
[http://dx.doi.org/10.1016/S0378-8741(03)00270-8] [PMID: 14611883]
[4]
Mohammadhosseini, M. The ethnobotanical, phytochemical and pharmacological properties and medicinal applications of essential oils and extracts of different Ziziphora species. Ind. Crops Prod., 2017, 105, 164-192.
[http://dx.doi.org/10.1016/j.indcrop.2017.05.009]
[5]
Mohammadhosseini, M.; Venditti, A.; Sarker, S.D.; Nahar, L.; Akbarzadeh, A. The genus Ferula: Ethnobotany, phytochemistry and bioactivities - A review. Ind. Crops Prod., 2019, 129, 350-394.
[http://dx.doi.org/10.1016/j.indcrop.2018.12.012]
[6]
World Health Organization. WHO monographs on selected medicinal plants., 1999.
[7]
World Health Organization. WHO guidelines on safety monitoring of herbal medicines in pharmacovigilance systems, 2004.
[8]
Rao, A.S.; Yadav, S.S.; Singh, P.; Nandal, A.; Singh, N.; Ganaie, S.A.; Yadav, N.; Kumar, R.; Bhandoria, M.S.; Bansal, P. A comprehensive review on ethnomedicine, phytochemistry, pharmacology, and toxicity of Tephrosia purpurea (L.) Pers. Phytother. Res., 2020, 34(8), 1902-1925.
[http://dx.doi.org/10.1002/ptr.6657] [PMID: 32147928]
[9]
Galal, A.; Raman, V.; Khan, A. Sida cordifolia, a traditional herb in modern perspective-a review. Curr. Tradit. Med., 2015, 1(1), 5-17.
[http://dx.doi.org/10.2174/2215083801666141226215639]
[10]
Ahmed, H.; Juraimi, A.S.; Swamy, M.K.; Ahmad-Hamdani, M.S.; Omar, D.; Rafii, M.Y.; Sinniah, U.R.; Akhtar, M.S. Botany, chemistry, and pharmaceutical significance of Sida cordifolia: A traditional medicinal plant. Anticancer plants. Proper. Appl., 2018, 1, 517-537.
[http://dx.doi.org/10.1007/978-981-10-8548-2_22]
[11]
Singh, D.K.; Singh, P.K.; Pandey, R.K.; Agnihotri, R.K. Ethno botanical approaches, pharmacological and phytochemical benefits of genus Sida used in traditional medicines. J. Med. Pharmaceut. All. sci., 2021, 10(4), 3304-3309.
[http://dx.doi.org/10.22270/jmpas.V10I4.1185]
[12]
Srinivasan, N.; Murali, R.; Sivakrishnan, S. Sida cordifolia - an update on its traditional use, phytochemistry, and pharmacological importance. Int. J. Pharmaceut. Res. All. Sci., 2022, 11(1), 74-86.
[http://dx.doi.org/10.51847/Q1trGLYB0E]
[13]
Simpson, MG Plant systematics, 3rd ed; Academic press, 2019.
[14]
Tambde, G.M.; Gore, R.D.; Sardesai, M.M. A synopsis of the genus Sida L.(Malvaceae) from Maharashtra, India. Taiwania, 2016, 61(3)
[15]
Ankit, J.; Shreya, C.; Singour, P.K.; Rajak, H.; Pawar, R.S. Sida cordifolia (Linn)-An overview. J. Appl. Pharm. Sci., 2011, 1(02), 23-31.
[16]
Singh, A.P. Bala (Sida cordifolia L.): Is it safe herbal drug? Ethnobot Leafl, 2006, 10(1), 336-341.
[17]
United States Department of Agriculture. Natural Resources Conservation Service., Available from: https://plants.usda.gov/home/plantProfile?symbol=SICO (Accessed May 23, 2022)
[18]
Dinda, B.; Das, N.; Dinda, S.; Dinda, M. SilSarma, I. The genus Sida L. – A traditional medicine: Its ethnopharmacological, phytochemical and pharmacological data for commercial exploitation in herbal drugs industry. J. Ethnopharmacol., 2015, 176, 135-176.
[http://dx.doi.org/10.1016/j.jep.2015.10.027] [PMID: 26497766]
[19]
Cheng, Y.F.; Tsai, J.L. Chromosome study of the Malvaceae in Taiwan. Quart J. Forest Res., 1999, 21(3), 61-72.
[20]
Skovsted, A. Chromosome numbers in the malvaceae. I. J. Genet., 1935, 31(2), 293-296.
[21]
Avula, B.; Joshi, V.; Wang, Y.H.; Jadhav, A.N.; Khan, I.A. Quantitative determination of ecdysteroids in Sida rhombifolia L. and various other Sida species using LC-UV, and their anatomical characterization. Nat. Prod. Commun., 2008, 3(5), 1934578X0800300.
[http://dx.doi.org/10.1177/1934578X0800300508]
[22]
Kapoor, B.B.S.; Lakhera, S. Ethnomedicinal plants of Jodhpur District, Rajasthan used in herbal and folk remedies. Indian J. Pharmaceut. Biolog. Res., 2013, 1(4), 71-75.
[http://dx.doi.org/10.30750/ijpbr.1.4.13]
[23]
Halilu, M.E.; Muhammad, I.; Dangoggo, S.M. Phytochemical and antibacterial screening of petroleum ether and ethanol extracts of Sida cordifolia leaves. J. Chem. Soc. Nigeria, 2016, 41(2), 137-142.
[24]
Nadkarni, AK. Nadkarni's Indian Materia Medica: With Ayurvedic, Unani-tibbi, Siddha, allopathic, homeopathic, naturopathic & home remedies, appendices & indexes. In: Nadkarni's Indian Materia Medica; Bombay popular prakashan, 1954.
[25]
Poojari, A.C.; Bhalerao, S.A. An Overview of traditional and biological perspectives of Sida cordifolia Linn. Int. J. Pharm. Drug Anal., 2018, 6(7), 536-539.
[26]
Dutt, U.C. The materia medica of the Hindus; Thacker, Spink & Company, 1877, pp. 121-122.
[27]
Yan, X.; Xie, G.; Zhou, J.; Milne, G.W. Eds.; Traditional chinese medicines: Molecular structures, natural sources and applications; Routledge: London, 2003, p. 1424.
[http://dx.doi.org/10.4324/9781315193441]
[28]
Tovar, R.T.; Petzel, R.M. Herbal toxicity. Dis. Mon., 2009, 55(10), 592-641.
[http://dx.doi.org/10.1016/j.disamonth.2009.05.001] [PMID: 19782820]
[29]
Ghosal, S.; Chauhan, R.B.P.S.; Mehta, R. Alkaloids of Sida cordifolia. Phytochemistry, 1975, 14(3), 830-832.
[http://dx.doi.org/10.1016/0031-9422(75)83057-3]
[30]
Dhalwal, K.; Deshpande, Y.S.; Purohit, A.P.; Kadam, S.S. Evaluation of the antioxidant activity of Sida cordifolia. Pharm. Biol., 2005, 43(9), 754-761.
[http://dx.doi.org/10.1080/13880200500406438]
[31]
Auddy, B.; Ferreira, M.; Blasina, F.; Lafon, L.; Arredondo, F.; Dajas, F.; Tripathi, P.C.; Seal, T.; Mukherjee, B. Screening of antioxidant activity of three Indian medicinal plants, traditionally used for the management of neurodegenerative diseases. J. Ethnopharmacol., 2003, 84(2-3), 131-138.
[http://dx.doi.org/10.1016/S0378-8741(02)00322-7] [PMID: 12648805]
[32]
Olowokudejo, JD; Kadiri, AB; Travih, VA An ethnobotanical survey of herbal markets and medicinal plants in Lagos State of Nigeria. Ethnobot. Leafl, 2008, 12(1), 851-865.
[33]
Nagashayana, N.; Sankarankutty, P.; Nampoothiri, M.R.V.; Mohan, P.K.; Mohanakumar, K.P. Association of l-DOPA with recovery following Ayurveda medication in Parkinson’s disease. J. Neurol. Sci., 2000, 176(2), 124-127.
[http://dx.doi.org/10.1016/S0022-510X(00)00329-4] [PMID: 10930594]
[34]
Swathy, S.S.; Panicker, S.; Nithya, R.S.; Anuja, M.M.; Rejitha, S.; Indira, M. Antiperoxidative and antiinflammatory effect of Sida cordifolia Linn. on quinolinic acid induced neurotoxicity. Neurochem. Res., 2010, 35(9), 1361-1367.
[http://dx.doi.org/10.1007/s11064-010-0192-5] [PMID: 20499166]
[35]
Breitbach, U.B.; Niehues, M.; Lopes, N.P.; Faria, J.E.Q.; Brandão, M.G.L. Amazonian Brazilian medicinal plants described by C.F.P. von Martius in the 19th century. J. Ethnopharmacol., 2013, 147(1), 180-189.
[http://dx.doi.org/10.1016/j.jep.2013.02.030] [PMID: 23500885]
[36]
Brink, M.; Achigan-Dako, E.G. Plant resources of tropical Africa. 16; Fibres; PROTA Foundation/CTA: Wageningen, Netherlands, 2012, pp. 417-419.
[37]
Pieme, C.A.; Penlap, V.N.; Ngogang, J.; Costache, M. In vitro cytotoxicity and antioxidant activities of five medicinal plants of Malvaceae family from Cameroon. Environ. Toxicol. Pharmacol., 2010, 29(3), 223-228.
[http://dx.doi.org/10.1016/j.etap.2010.01.003] [PMID: 21787606]
[38]
Boily, Y.; Van Puyvelde, L. Screening of medicinal plants of Rwanda (Central Africa) for antimicrobial activity. J. Ethnopharmacol., 1986, 16(1), 1-13.
[http://dx.doi.org/10.1016/0378-8741(86)90062-0] [PMID: 3747558]
[39]
Nawaz, A.H.; Hossain, M.; Karim, M.; Khan, M.; Jahan, R.; Rahmatullah, M. An ethnobotanical survey of Rajshahi district in Rajshahi division, Bangladesh. Am.-Eurasian J. Agric. Environ. Sci., 2009, 3(2), 143-150.
[40]
Ballesteros, O.J.; Perea, E.M.; Méndez, J.J.; Arango, W.M.; Noreña, D.A. Quantification, chemical and biological characterization of the saponosides material from Sida cordifolia L. (escobilla). Rev. Cuba. Plantas Med., 2013, 18(2), 298-314.
[41]
Khatoon, S.; Srivastava, M.; Rawat, A.; Mehrotra, S. HPTLC method for chemical standardization of Sida species and estimation of the alkaloid ephedrine. J. Planar Chromatogr. Mod. TLC, 2005, 18(105), 364-367.
[http://dx.doi.org/10.1556/JPC.18.2005.5.5]
[42]
Meena, A.K.; Bansal, P.; Kumar, S. Plants-herbal wealth as a potential source of ayurvedic drugs. Asian J. Tradit. Med., 2009, 4(4), 152-170.
[43]
Lavate, R.A.; Sathe, S.S.; Patil, S.B. Enumaritation of common medicinal plants useful to cure jaundice in and around jath city Maharashtra. Int. J. Chem. Technol., 2015, 5(4), 409-412.
[44]
Aleynova, O.A.; Kiselev, K.V. Interaction of plants and endophytic microorganisms: Molecular aspects, biological functions, community composition, and practical applications. Plants, 2023, 12(4), 714.
[http://dx.doi.org/10.3390/plants12040714] [PMID: 36840062]
[45]
Rajan, D.; George, T.; Divakaran, D.; Rebello, S.; Jisha, M.S. Biomodulatory role of Enterobacter sp: A novel bacterial endophyte of Sida cordifolia and its comparative analysis with plant extract. J. Biol. Act. Prod. Nat., 2016, 6(5-6), 373-382.
[46]
Ghosh, S.; Dutt, A. Chemical examination of Sida cordifolia Linn. J. Indian Chem. Soc., 1930, 7, 825-829.
[47]
Sutradhar, R.K.; Rahman, A.K.M.; Ahmad, M.U.; Chandra, B.S.; Saha, A.; Guha, S.K. Bioactive alkaloid from Sida cordifolia Linn. with analgesic and anti-inflammatory activities Iran J. Pharmacol. Ther., 2006, 5(2), 175-178.
[48]
Sutradhar, R.K.; Rahman, A.K.M.; Ahmad, M.U.; Saha, K. Alkaloids of Sida cordifolia L. Indian J. Chem., 2007, 46(11), 1896-1900.
[49]
Matsui, T.; Sowa, Y.; Murata, H.; Takagi, K.; Nakanishi, R.; Aoki, S.; Yoshikawa, M.; Kobayashi, M.; Sakabe, T.; Kubo, T.; Sakai, T. The plant alkaloid cryptolepine induces p21WAF1/CIP1 and cell cycle arrest in a human osteosarcoma cell line. Int. J. Oncol., 2007, 31(4), 915-922.
[http://dx.doi.org/10.3892/ijo.31.4.915] [PMID: 17786325]
[50]
Sutradhar, R.K.; Rahman, A.K.M.M.; Ahmad, M.U. Three new flavonol C-glycosides from Sida cordifolia Linn. J. Indian Chem. Soc., 2007, 4(2), 175-181.
[http://dx.doi.org/10.1007/BF03245964]
[51]
Sutradhar, R.K.; Rahman, A.K.M.M.; Ahmad, M.U.; Bachar, S.C. Bioactive flavones of Sida cordifolia. Phytochem. Lett., 2008, 1(4), 179-182.
[http://dx.doi.org/10.1016/j.phytol.2008.09.004]
[52]
Iqbal, H.; Wright, C.L.; Jones, S.; da Silva, G.R.; McKillen, J.; Gilmore, B.F.; Kavanagh, O.; Green, B.D. Extracts of Sida cordifolia contain polysaccharides possessing immunomodulatory activity and rosmarinic acid compounds with antibacterial activity. BMC Complement. Med. Ther., 2022, 22(1), 27.
[http://dx.doi.org/10.1186/s12906-022-03502-7] [PMID: 35086541]
[53]
Rao, K.S.; Lakshminarayana, G. Characteristics and composition of six malvaceae seeds and the oils. J. Am. Oil Chem. Soc., 1984, 61(8), 1345-1346.
[http://dx.doi.org/10.1007/BF02542238]
[54]
Tamura, S.; Kaneko, M.; Shiomi, A.; Yang, G.M.; Yamaura, T.; Murakami, N. Unprecedented NES non-antagonistic inhibitor for nuclear export of Rev from Sida cordifolia. Bioorg. Med. Chem. Lett., 2010, 20(6), 1837-1839.
[http://dx.doi.org/10.1016/j.bmcl.2010.01.165] [PMID: 20176483]
[55]
Ahmed, H.; Juraimi, A.S.; Hamdani, M.S.; Rafii, Y.M.; Aslani, F.; Omar, D. Comparative phytotoxic effects of aerial and root aqueous extracts of Sida cordifolia L. on germination and seedling vigour performance of lettuce, tomato and carrot. Bangladesh J. Bot., 2017, 46(1), 323-328.
[56]
Preethidan, D.S.; Arun, G.; Surendran, M.P. Lipoxygenase inhibitory activity of some Sida species due to di (2-ethylhexyl) phthalate. Curr. Sci., 2013, 105(2), 232-237.
[57]
Ghosal, S.; Kaur, R.; Bhattacharya, S. Chemistry and bioactivity of sitoindosides IX and X. Planta Med., 1988, 54(6), 561.
[http://dx.doi.org/10.1055/s-2006-962557] [PMID: 17265345]
[58]
Kumar, S.; Lakshmi, P.K.; Sahi, C.; Pawar, R.S. Sida cordifolia accelerates wound healing process delayed by dexamethasone in rats: Effect on ROS and probable mechanism of action. J. Ethnopharmacol., 2019, 235, 279-292.
[http://dx.doi.org/10.1016/j.jep.2018.07.003] [PMID: 30769040]
[59]
Sahu, B.P.; Gouda, P.; Patnaik, C. Studies on the phytochemistry, spectroscopic characterization and antibacterial efficacy of Sida cordifolia (Linn). Int. J. Sci. Res., 2016, 5(8), 1458-1464.
[60]
Ravi Kanth, V.; Diwan, P.V. Analgesic, antiinflammatory and hypoglycaemic activities of Sida cordifolia. Phytother. Res., 1999, 13(1), 75-77.
[http://dx.doi.org/10.1002/(SICI)1099-1573(199902)13:1<75::AID-PTR387>3.0.CO;2-F] [PMID: 10189958]
[61]
Franzotti, E.M.; Santos, C.V.F.; Rodrigues, H.M.S.L.; Mourão, R.H.V.; Andrade, M.R.; Antoniolli, A.R. Anti-inflammatory, analgesic activity and acute toxicity of Sida cordifolia L. (Malva-branca). J. Ethnopharmacol., 2000, 72(1-2), 273-277.
[http://dx.doi.org/10.1016/S0378-8741(00)00205-1] [PMID: 10967481]
[62]
Ternikar, S.G.; Alagawadi, K.R.; Pasha, I.; Dwivedi, S.; Rafi, M.A.; Sharma, T. Evaluation of antimicrobial and acute anti-inflammatory activity of Sida cordifolia Linn seed oil. J. Cell Tissue Res., 2010, 10(3), 2385-2388.
[63]
Bonjardim, L.R.; Silva, A.M.; Oliveira, M.G.B.; Guimarães, A.G.; Antoniolli, A.R.; Santana, M.F.; Serafini, M.R.; Santos, R.C.; Araújo, A.A.S.; Estevam, C.S.; Santos, M.R.V.; Lyra, A.; Carvalho, R.; Quintans-Júnior, L.J.; Azevedo, E.G.; Botelho, M.A. Sida cordifolia leaf extract reduces the orofacial nociceptive response in mice. Phytother. Res., 2011, 25(8), 1236-1241.
[http://dx.doi.org/10.1002/ptr.3550] [PMID: 21674632]
[64]
Martins, C.; Campos, M.; Irioda, A.; Stremel, D.; Trindade, A.; Pontarolo, R. Anti-inflammatory effect of Malva sylvestris, Sida cordifolia, and Pelargonium graveolens is related to inhibition of prostanoid production. Molecules, 2017, 22(11), 1883.
[http://dx.doi.org/10.3390/molecules22111883] [PMID: 29099738]
[65]
Padhy, I.; Dash, P.; Sahu, R.K.; Saha, G. Anti-inflammatory activity of isolated flavonoid from Sida cordifolia leaves extract. Int. J. Med. Res. Health Sci., 2019, 8(8), 75-81.
[66]
Singh, S.; Panchaksharimath, P.; Devaru, S. Evaluation of anti-inflammatory activities of Sida cordifolia Linn in albino rats. J. Chem. Pharm. Res., 2011, 3(6), 136-142.
[67]
Nunes, X.P.; Maia, G.L.A.; Almeida, J.R.G.S.; Pereira, F.O.; Lima, E.O. Antimicrobial activity of the essential oil of Sida cordifolia L. Rev. Bras. Farmacogn., 2006, 16, 642-644.
[http://dx.doi.org/10.1590/S0102-695X2006000500010]
[68]
Kalaivani, R.; Devi, V.J.; Umarani, R.; Periyanayagam, K.; Kumaraguru, A.K. Antimicrobial activity of some important medicinal plant oils against human pathogens. J. Biol. Active Prod. Nature, 2012, 2(1), 30-37.
[http://dx.doi.org/10.1080/22311866.2012.10719105]
[69]
Prabhakar, T.; Rao, T.S.; Baby, B.; Ramesh, K.; Suresh, B. Antibacterial and antifungal activity of Sida cordifolia Linn. Asian J. Chem., 2007, 19(6), 4649.
[70]
Kumar, S.P.; Kanthal, L.K.; Durga, S.; Satyavati, K. Phytochemical evaluation and screening of cardiotonic, antibacterial and anthelmintic activities of Sida cordifolia L. Int. J. Pharm. Sci. Nanotechnol., 2014, 7(3), 2567-2573.
[http://dx.doi.org/10.37285/ijpsn.2014.7.3.10]
[71]
Venkatachalam, D.; Thavamani, S.; Sebastian, A.C.; Anju, V.B.; Mathew, C.; Leon, D.; Thomas, J.; Muhammed, M.M. Evaluation of antimicrobial activity of Sida cordifolia leaf extract. South Asian J. Res. Microbiol., 2019, 4(1), 1-7.
[http://dx.doi.org/10.9734/sajrm/2019/v4i130096]
[72]
Pallela, P.N.V.K.; Ummey, S.; Ruddaraju, L.K.; Pammi, S.V.N.; Yoon, S.G. Ultra Small, mono dispersed green synthesized silver nanoparticles using aqueous extract of Sida cordifolia plant and investigation of antibacterial activity. Microb. Pathog., 2018, 124, 63-69.
[http://dx.doi.org/10.1016/j.micpath.2018.08.026] [PMID: 30121359]
[73]
Pallela, P.N.V.K.; Ummey, S.; Ruddaraju, L.K.; Gadi, S.; Cherukuri, C.S.; Barla, S.; Pammi, S.V.N. Antibacterial efficacy of green synthesized α-Fe2O3 nanoparticles using Sida cordifolia plant extract. Heliyon, 2019, 5(11), e02765.
[http://dx.doi.org/10.1016/j.heliyon.2019.e02765] [PMID: 31799458]
[74]
Joseph, B.; Ajisha, A.U.; Kumari, S.; Sujatha, S. Effect of bioactive compounds and its pharmaceutical activities of Sida cordifolia (Linn.). Int. J. Biol. Med. Res., 2011, 2(4), 1038-1042.
[75]
Momin, M.A.M.; Bellah, S.F.; Rahman, S.M.R.; Rahman, A.A.; Murshid, G.M.M.; Emran, T.B. Phytopharmacological evaluation of ethanol extract of Sida cordifolia L. roots. Asian Pac. J. Trop. Biomed., 2014, 4(1), 18-24.
[http://dx.doi.org/10.1016/S2221-1691(14)60202-1] [PMID: 24144125]
[76]
Ouédraogo, M.; Konaté, K.; Lepengué, A.N.; Souza, A.; M’Batchi, B.; Sawadogo, L.L. Free radical scavenging capacity, anticandicidal effect of bioactive compounds from Sida Cordifolia L., in combination with nystatin and clotrimazole and their effect on specific immune response in rats. Ann. Clin. Microbiol. Antimicrob., 2012, 11(1), 33.
[http://dx.doi.org/10.1186/1476-0711-11-33] [PMID: 23268761]
[77]
Khare, C.P. Indian herbal remedies: Rational Western therapy, ayurvedic, and other traditional usage, Botany; Springer, 2004, pp. 424-425.
[http://dx.doi.org/10.1007/978-3-642-18659-2]
[78]
Xiong, Y.; Hannon, G.J.; Zhang, H.; Casso, D.; Kobayashi, R.; Beach, D. p21 is a universal inhibitor of cyclin kinases. Nature, 1993, 366(6456), 701-704.
[http://dx.doi.org/10.1038/366701a0] [PMID: 8259214]
[79]
Chen, J.; Saha, P.; Kornbluth, S.; Dynlacht, B.D.; Dutta, A. Cyclinbinding motifs are essential for the function of p21CIP1. Mol. Cell. Biol., 1996, 16(9), 4673-4682.
[http://dx.doi.org/10.1128/MCB.16.9.4673] [PMID: 8756624]
[80]
Mallikarjuna, G.; Reddy, V.J.; Prabakharan, V. Evaluation of anticancer activity of Sida cordifolia L. against aflatoxin B1 induced hepatocellular carcinoma. Int. J. Pharm. Sci. Rev. Res., 2013, 23(2), 126-132.
[81]
Srinithya, B.; Kumar, V.V.; Vadivel, V.; Pemaiah, B.; Anthony, S.P.; Muthuraman, M.S. Synthesis of biofunctionalized AgNPs using medicinally important Sida cordifolia leaf extract for enhanced antioxidant and anticancer activities. Mater. Lett., 2016, 170, 101-104.
[http://dx.doi.org/10.1016/j.matlet.2016.02.019]
[82]
Buthkar, P.M.; Suganthi, V.; Buthkar, M.V.; Kothai, R. in vitro antiproliferative activity of ethanolic extract of Sida cordifolia Linn against various cancer cell lines. Al Ameen J. Med. Sci., 2020, 13(4), 234-241.
[83]
Neal, M.J. Medical Pharmacology at a Glance, 3rd ed; Blackwell Publishing Inc: London, 2003, pp. 30-31.
[84]
Philip, B.K.; Muralidharan, A.; Natarajan, B.; Varadamurthy, S.; Venkataraman, S. Preliminary evaluation of anti-pyretic and anti-ulcerogenic activities of Sida cordifolia methanolic extract. Fitoterapia, 2008, 79(3), 229-231.
[http://dx.doi.org/10.1016/j.fitote.2008.01.001] [PMID: 18325683]
[85]
Akilandeswari, S.; Valarmathi, R.; Indulatha, V.N.; Senthamarai, R. Screening of gastric antiulcer activity of Sida cordifolia. Int. J. Pharm. Chem. Sci., 2013, 2(3), 1288-1292.
[86]
Konaté, K.; Bassolé, I.H.N.; Hilou, A.; Aworet-Samseny, R.R.R.; Souza, A.; Barro, N.; Dicko, M.H.; Datté, J.Y.; M’Batchi, B. Toxicity assessment and analgesic activity investigation of aqueous acetone extracts of Sida acuta Burn f. and Sida cordifolia L. (Malvaceae), medicinal plants of Burkina Faso. BMC Complement. Altern. Med., 2012, 12(1), 120.
[http://dx.doi.org/10.1186/1472-6882-12-120] [PMID: 22883637]
[87]
Medeiros, I.A.; Santos, M.R.V.; Nascimento, N.M.S.; Duarte, J.C. Cardiovascular effects of Sida cordifolia leaves extract in rats. Fitoterapia, 2006, 77(1), 19-27.
[http://dx.doi.org/10.1016/j.fitote.2005.06.003] [PMID: 16257496]
[88]
Santos, M.R.; Nascimento, N.M.; Antoniolli, A.R.; Medeiros, I.A. Endothelium-derived factors and k+ channels are involved in the vasorelaxation induced by Sida cordifolia L. in the rat superior mesenteric artery. Pharmazie, 2006, 61(5), 466-469.
[PMID: 16724548]
[89]
Santos, MR; Moreira, ÍJ Medeiros, IA Contractile effect of Hydroalcoholic extract of Sida cordifolia L. leaves in rat aorta. Sci. Plena., 2013, 9(12), 124601.
[90]
Kubavat, J.B.; Asdaq, S.M.B. Role of Sida cordifolia L. leaves on biochemical and antioxidant profile during myocardial injury. J. Ethnopharmacol., 2009, 124(1), 162-165.
[http://dx.doi.org/10.1016/j.jep.2009.04.004] [PMID: 19527827]
[91]
Dama, G.Y.; Jori, M.P.; Joshi, P.P.; Deore, S.R.; Bidkar, J.S. Comparative cardiotonic activity of Sida cordifolia Linn with digoxin on perfused frog heart. Res. J. Pharm. Technol., 2011, 4(6), 913-916.
[92]
Kaur, G.; Kamboj, P.; Kalia, A.N. Antidiabetic and antihypercholesterolemic effects of aerial parts of Sida cordifolia Linn. on streptozotocin-induced diabetic rats. Indian J. Nat. Prod. Resour., 2011, 2(4), 428-434.
[93]
Ahmad, M.; Prawez, S.; Sultana, M.; Raina, R.; Pankaj, N.K.; Verma, P.K.; Rahman, S. Anti-hyperglycemic, anti-hyperlipidemic and antioxidant potential of alcoholic-extract of Sida cordifolia (areal part) in streptozotocin-induced-diabetes in wistar-rats. Proc. Natl. Acad. Sci., India, Sect. B Biol. Sci., 2014, 84(2), 397-405.
[http://dx.doi.org/10.1007/s40011-013-0218-2]
[94]
Silva, R.L.; Melo, G.B.; Melo, V.A.; Antoniolli, Â.R.; Michellone, P.R.T.; Zucoloto, S.; Picinato, M.A.N.C.; Franco, C.F.F.; Mota, G.A.; Castro e Silva, O. Effect of the aqueous extract of Sida cordifolia on liver regeneration after partial hepatectomy. Acta Cir. Bras., 2006, 21(Suppl. 1), 37-39.
[http://dx.doi.org/10.1590/S0102-86502006000700009] [PMID: 17013511]
[95]
Rejitha, S.; Prathibha, P.; Indira, M. Amelioration of alcoholinduced hepatotoxicity by the administration of ethanolic extract of Sida cordifolia Linn. Br. J. Nutr., 2012, 108(7), 1256-1263.
[http://dx.doi.org/10.1017/S0007114511006568] [PMID: 22289614]
[96]
Rejitha, S.; Prathibha, P.; Indira, M. Nrf2-mediated antioxidant response by ethanolic extract of Sida cordifolia provides protection against alcohol-induced oxidative stress in liver by upregulation of glutathione metabolism. Redox Rep., 2015, 20(2), 75-80.
[http://dx.doi.org/10.1179/1351000214Y.0000000108] [PMID: 25314146]
[97]
Pawa, R.S.; Jain, A.; Sharma, P.; Chaurasiya, P.K.; Singour, P.K. in vitro studies on Sida cordifolia Linn for anthelmintic and antioxidant properties. Chin. Med., 2011, 2(2), 47-52.
[http://dx.doi.org/10.4236/cm.2011.22009]
[98]
Subramanya, M.D.; Pai, S.R.; Upadhya, V.; Ankad, G.M.; Bhagwat, S.S.; Hegde, H.V. Total polyphenolic contents and in vitro antioxidant properties of eight Sida species from Western Ghats, India. J. Ayurveda Integr. Med., 2015, 6(1), 24-28.
[http://dx.doi.org/10.4103/0975-9476.146544] [PMID: 25878460]
[99]
Arshad, S.; Hussain, I.; Ibrahim, M. Biochemical studies on protein, phenolic contents and antioxidant activities of Sida cordifolia extracts. Bull. Chem. Soc. Ethiop., 2020, 34(2), 427-434.
[http://dx.doi.org/10.4314/bcse.v34i2.18]
[100]
Vajha, M. Evaluation of free radical scavenging activity of crude extracts of Sida cordifolia. World J. Pharm. Res., 2017, 6(15), 896-904.
[101]
Gupta, M.; Paul, S.; Karmakar, N.; Sasmal, S.; Chowdhury, S. Free radical scavenging activity of Sida cordifolia Linn. extracts measured by hydrogen peroxide, DPPH, ABTS and ferric reducing antioxidant methods. Int. J. Curr. Res. Biosci. Plant Biol., 2016, 3(8), 114-122.
[http://dx.doi.org/10.20546/ijcrbp.2016.308.018]
[102]
Gupta, M.; Paul, S.; Karmakar, N.; Tarafdar, S.; Chowdhury, S. In vivo Antioxidant Activity of Sida cordifolia Linn. in K2Cr2O7 induced oxidative stress by measurement of reactive oxygen species levels in rats. J. Complement. Altern. Med.Res., 2017, 2(2), 1-10.
[http://dx.doi.org/10.9734/JOCAMR/2017/30916]
[103]
Patel, K.; Mangu, S.V.V.S.R.; Sukhdeo, S.V.; Sharan, K. Ethanolic extract from the root and leaf of Sida cordifolia promotes osteoblast activity and prevents ovariectomy-induced bone loss in mice. Phytomedicine, 2022, 99, 154024.
[http://dx.doi.org/10.1016/j.phymed.2022.154024] [PMID: 35263671]
[104]
Woloszyn, N.; Krabbe, R.D.; Fischer, B.; Bernardi, J.L.; Duarte, P.F.; Puton, B.M.S.; Cansian, R.L.; Paroul, N.; Junges, A. Use of pressurized liquid extraction technique to obtain extracts with biological and antioxidant activity from Mentha pulegium, Equisetum giganteum and Sida cordifolia. Chem. Zvesti, 2022, 76(9), 5775-5788.
[http://dx.doi.org/10.1007/s11696-022-02289-8]
[105]
Franco, C.I.F.; Morais, L.C.S.L.; Quintans-Júnior, L.J.; Almeida, R.N.; Antoniolli, A.R. CNS pharmacological effects of the hydroalcoholic extract of Sida cordifolia L. leaves. J. Ethnopharmacol., 2005, 98(3), 275-279.
[http://dx.doi.org/10.1016/j.jep.2005.01.008] [PMID: 15814259]
[106]
Khurana, N.; Gajbhiye, A. Ameliorative effect of Sida cordifolia in rotenone induced oxidative stress model of Parkinson’s disease. Neurotoxicology, 2013, 39, 57-64.
[http://dx.doi.org/10.1016/j.neuro.2013.08.005] [PMID: 23994302]
[107]
Pujari, G.R.S.; Subramanian, V.; Rao, S.R. Effects of Celastrus paniculatus Willd. and Sida cordifolia Linn. in kainic acid induced hippocampus damage in rats. Indian J. Pharmaceut. Edu. Res., 2019, 53(3), 537-544.
[http://dx.doi.org/10.5530/ijper.53.3.86]
[108]
Biswas, T.K.; Mukherjee, B. Plant medicines of Indian origin for wound healing activity: A review. Int. J. Low. Extrem. Wounds, 2003, 2(1), 25-39.
[http://dx.doi.org/10.1177/1534734603002001006] [PMID: 15866825]
[109]
Tripathy, R.N.; Otta, S.P.; Siddram, A. Bala taila parisheka-A traditional approach in wound healing. Indian J. Tradit. Knowl., 2011, 10(4), 643-650.
[110]
Pawar, R.; Chaurasiya, P.; Rajak, H.; Singour, P.; Toppo, F.; Jain, A. Wound healing activity of Sida cordifolia Linn. in rats. Indian J. Pharmacol., 2013, 45(5), 474-478.
[http://dx.doi.org/10.4103/0253-7613.117759] [PMID: 24130382]
[111]
Pawar, R.S.; Kumar, S.; Toppo, F.A.; Pk, L.; Suryavanshi, P. Sida cordifolia Linn. accelerates wound healing process in type 2 diabetic rats. J. Acute Med., 2016, 6(4), 82-89.
[http://dx.doi.org/10.1016/j.jacme.2016.08.004]
[112]
Gogoi, D.; Arora, N.; Kalita, B.; Sarma, R.; Islam, T.; Ghosh, S.S.; Devi, R.; Mukherjee, A.K. Anticoagulant mechanism, pharmacological activity, and assessment of preclinical safety of a novel fibrin(ogen)olytic serine protease from leaves of Leucas indica. Sci. Rep., 2018, 8(1), 6210.
[http://dx.doi.org/10.1038/s41598-018-24422-y] [PMID: 29670183]
[113]
Gul, H.; Jabeen, Q. Evaluation of Sida cordifolia L. for its potential against thrombosis in experimental models. Pak. J. Pharm. Sci., 2022, 35(1(S1)), 297-303.
[PMID: 35228191]
[114]
Sayana, S.B.; Khanwelkar, C.C.; Nimmagadda, V.R.; Chavan, V.R.; Bh, R. S, N.K. Evalution of antiurolithic activity of alcoholic extract of roots of Cissampelos pareira in albino rats. J. Clin. Diagn. Res., 2014, 8(7), HC01-HC04.
[PMID: 25177580]
[115]
Prabhakar, T.; Ramesh, K.; Rao, T.S.; Lakshman, K.; Suresh, B. Diuretic activity of Sida cordifolia Linn. of nilgiris. Asian J. Chem., 2007, 19(6), 4459.
[116]
Makwana, M.V.; Pandya, N.M.; Darji, D.N.; Desai, S.A.; Bhaskar, V.H. Assessment of nephroprotective potential of Sida cordifolia Linn. in experimental animals. Pharm. Lett., 2012, 4(1), 175-180.
[117]
Bhatia, L.; Bhatia, V.; Grover, M. Nephroprotective effect of fresh leaves extracts of Sida Cordifolia Linn in gentamicin induced nephrotoxicity in rats. Int. J. Res. Pharm. Sci., 2012, 2(2), 151-158.
[118]
Sumanth, M.; Mustafa, S.S. Antistress, adoptogenic activity of Sida cordifolia roots in mice. Indian J. Pharm. Sci., 2009, 71(3), 323-324.
[http://dx.doi.org/10.4103/0250-474X.56027] [PMID: 20490305]
[119]
Shahed-Al-Mahmud, M.; Jahan, T.; Towhidul Islam, M. Antidiarrheal activities of hydroalcoholic extract of Sida cordifolia roots in Wister albino rats. Orient. Pharm. Exp. Med., 2018, 18(1), 51-58.
[http://dx.doi.org/10.1007/s13596-017-0295-5]
[120]
Manimaran, P.; Prithiviraj, M.; Saravanakumar, S.S.; Arthanarieswaran, V.P.; Senthamaraikannan, P. Physicochemical, tensile, and thermal characterization of new natural cellulosic fibers from the stems of Sida cordifolia. J. Nat. Fibers, 2018, 15(6), 860-869.
[http://dx.doi.org/10.1080/15440478.2017.1376301]
[121]
Laougé, Z.B.; Merdun, H. Pyrolysis and combustion kinetics of Sida cordifolia L. using thermogravimetric analysis. Bioresour. Technol., 2020, 299, 122602.
[http://dx.doi.org/10.1016/j.biortech.2019.122602] [PMID: 31869633]
[122]
Ansari, N.; Agrawal, M.; Agrawal, S.B. An assessment of growth, floral morphology, and metabolites of a medicinal plant Sida cordifolia L. under the influence of elevated ozone. Environ. Sci. Pollut. Res. Int., 2021, 28(1), 832-845.
[http://dx.doi.org/10.1007/s11356-020-10340-y] [PMID: 32820442]
[123]
Pokale, S.W. Fish toxicity study of aqueous extract of Sida cordifolia in Poecilia reticulata (guppy). Int. J. Pharm. Pharm. Sci., 2012, 49(3), 76-77.
[124]
Vassou, S.L.; Kusuma, G.; Parani, M. DNA barcoding for species identification from dried and powdered plant parts: A case study with authentication of the raw drug market samples of Sida cordifolia. Gene, 2015, 559(1), 86-93.
[http://dx.doi.org/10.1016/j.gene.2015.01.025] [PMID: 25596347]
[125]
Kumar, J.S.; Krishna, V.; Seethapathy, G.S.; Senthilkumar, U.; Ragupathy, S.; Ganeshaiah, K.N.; Ganesan, R.; Newmaster, S.G.; Ravikanth, G.; Shaanker, R.U. DNA barcoding to assess species adulteration in raw drug trade of “Bala” (genus: Sida L.) herbal products in South India. Biochem. Syst. Ecol., 2015, 61, 501-509.
[http://dx.doi.org/10.1016/j.bse.2015.07.024]
[126]
Abbasi, R.; Shineh, G.; Mobaraki, M.; Doughty, S.; Tayebi, L. Structural parameters of nanoparticles affecting their toxicity for biomedical applications: A review. J. Nanopart. Res., 2023, 25(3), 43.
[http://dx.doi.org/10.1007/s11051-023-05690-w] [PMID: 36875184]
[127]
Pushpangadan, P.; Prakash, D. Custom made herbal health promotive formulation for females/expectant mothers. US patent 6881425B2, 2004.
[128]
Almada, A.L. Methods and compositions for reducing sympathomimetic-induced side effects. US patent 6759063B2, 2004.
[129]
Jain, R.; Jindal, K.C. Composition comprising at least one higher aliphatic alcohol and an extract of Griffonia simplicifolia. US patent 7956067B2, 2011.
[130]
Shetty, M.V. Herbal composition for the treatment and management of cancer and method of preparation thereof. US patent 10478465B2, 2019.
[131]
Perry, D; Shlomo, A; Seth, K Methods, devices and systems for pulmonary delivery of active agents. RU patent 2728689C2, 2020.
[132]
Shetty, M.V. Herbal composition for the treatment and management of Thyroid dysfunction and method of preparation thereof. US patent US 11045512B2, 2021.
[133]
Nirvanashetty, S; Parachur, VA Tri-molecular complex of natural compounds. AU patent 2016373576B2, 2022.
[134]
Bulbul, I.; Ullah, M.; Rahaman, M.; Rahman, K.; Paul, A.; Choudhuri, M. Effect of “Garbha Cintamani Rasa”, an ayurvedic formulation on lipid profile, liver function and kidney function parameters of rat plasma after chronic administration. Eur. J. Sci. Res., 2009, 32(1), 25-32.
[135]
Hamid, K.; Ullah, M.O.; Kabir, M.S.; Paul, A.K.; Alam, M.Z.; Choudhuri, M.S. Changes in lipid profile of rat plasma after chronic administration of Astavarga Kvatha Curna (AST): An Ayurvedic formulation. Biol. Med., 2011, 3(3), 26-31.
[136]
Kumari, K.V.; Trimurthulu, G.; Naidu, M.L. Standardization of Dhanvantari Taila: Medicated oil for female infertility. Int. J. Res. Ayurveda Pharm., 2012, 3(5), 866-867.
[137]
Mishra, R.N. The Vajikaran (aphrodisiac) formulations in Ayurved. Int. J. Res. Pharm. Chem., 2012, 2(1), 197-207.
[138]
Jaideep, S.S.; Nagaraja, D.; Pal, P.K.; Sudhakara, D.; Talakad, S.N. Modulation of cardiac autonomic dysfunction in ischemic stroke following Ayurveda (Indian System of Medicine) treatment. Evid. Based Complement. Altern. Med., 2014, 634695.
[139]
Tiwari, P. Antimicrobial activity of Balarishta prepared by traditional and modern methods. Res. J. Pharm. Tech., 2014, 7(7), 789-791.
[140]
Konda, SR; Rao, MR The antioxidant study of an ayurvedic medicine. Balarishtam. Int. J. Pharm. Sci. Rev. Res., 2017, 42(1), 29-34.
[141]
Shivshankar, R.; Shweta, M.; Dei, L.P.; Harisha, C.R.; Shukla, V.J. Ingredients identification and quality control evaluation of phalakalyan ghrita: An ayurvedic formulation. Indian J. Pharmaceut. Biol. Res., 2015, 3(1), 24-31.
[http://dx.doi.org/10.30750/ijpbr.3.1.5]
[142]
Rathia, S.; Kori, V.K.; Rajagopala, S.; Harisha, C.R.; Shukla, V.J.; Patel, K.S. Ingradients identification and physico-chemical evaluation of Samvardhanaghrita - A ayurvedic polyherbal formulation. Eur. J. Biomed. Pharm. Sci., 2015, 2(3), 871-880.
[143]
Khurana, N.; Sharma, N.; Patil, S.; Gajbhiye, A. Phyto-pharmacological properties of Sida cordifolia: A review of folklore use and pharmacological activities. Asian J. Pharm. Clin. Res., 2016, 9(Suppl. 2), 52-58.
[http://dx.doi.org/10.22159/ajpcr.2016.v9s2.13698]
[144]
Khan, T.; Mallya, R.; Gohel, A. Standardization of marketed Ayurvedic formulation, Balaguloochyadi kashayam-physicochemical, microbial evaluation and ephedrine content. J. Appl. Pharm. Sci., 2016, 6(12), 184-189.
[http://dx.doi.org/10.7324/JAPS.2016.601226]
[145]
Deshpande, A.C. Review of Prasaranyadi Kashay in the treatment of frozen shoulder. Int. Ayurvedic Med. J., 2016, 4(6), 1045-1050.
[146]
Chitra, R.K.; Shah, B. Role of ayurvedic polyherbal formulation Maharishi Amrit Kalash: A review. World J. Pharm. Res., 2016, 59(6), 472-485.
[147]
Suprabha, K.; Dei, L.P.; Harisha, C.R.; Shukla, V.J. pharmacognostical and physico-chemical evaluation of Shatavaryadi ksheerapaka in IUGR. Glob. J. Res. Med. Plants Indig. Med., 2016, 5(9), 244.
[148]
Kumar, H.; Sridurga, C.H.; Rao, D. Clinical efficacy of Baladi Manduram in the management of amlapitta. Ayu, 2017, 38(2), 133-138.
[http://dx.doi.org/10.4103/ayu.AYU_201_17] [PMID: 30254393]
[149]
Sivaraj, S.; Vijayalaxmi, M.; Raj, A.; Shailaja, U. Standardization of Amritaprasha ghrita: A herbal ghee based medicinal preparation. Int. J. Pharm. Sci. Res., 2018, 9(11), 4842-4848.
[150]
Bharath, S; Puniamurthy, N; Nair, MNB Dhanwantharam Kashayam for preventing postpartum complications in cross-bred cows. J. Dairy Sci, 2018, 5(4), 001-005.
[151]
Singh, A.; Desale, V.; Srvastava, P. Review on manufacturing protocol for Mahanaryan oil. World J. Pharm. Pharm. Sci., 2018, 7(4)
[152]
Verma, J.; Mangal, G. New perspectives of Ksheerabala Taila (oil): A critical review. IJATM, 2019, 1(1), 24-30.
[153]
Rajeev, S.R.P. Effect of “Sittamatti (Sida cordifolia Linn.) kudineer (decoction)” in respiratory complaint-cough. Int. J. Res., 2020, 8(8), 24-36.
[http://dx.doi.org/10.29121/granthaalayah.v8.i8.2020.707]
[154]
Prasad, A.B.; Agrawal, S.; Mundhra, V. Characterization and analytical standardization of Agastya Haritaki: A polyherbal ayurvedic formulation. World J. Pharm. Res., 2021, 10(3), 1854-1866.

Rights & Permissions Print Cite
© 2024 Bentham Science Publishers | Privacy Policy