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Current Bioactive Compounds

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ISSN (Print): 1573-4072
ISSN (Online): 1875-6646

Research Article

Phytochemical Analysis and Antimicrobial Activities of Atalantia monophylla (L) Correa and Atalantia racemosa Wight and Arn

Author(s): Mahadevan Subramaniyan, Vijayakumar Subramaniyan* and Arulmozhi Praveenkumar

Volume 15, Issue 4, 2019

Page: [427 - 436] Pages: 10

DOI: 10.2174/1573407214666180521105026

Price: $65

Abstract

Background: Infectious diseases are major leading cause of death in all parts of the world, because of the appearance of new multi drug resistant microbes. Therefore, the discovery of potential drug for effective treatment will help the slaughter of the microbes. The aim of the present study is to evaluate the presence of photochemical and antimicrobial activities of various crude extracts of leaves, fruits and root bark of Atalantia monophylla and Atalantia racemosa against human pathogens by using well diffusion method.

Methods: Antimicrobial properties of the various extracts of Atalantia monophylla and Atalantia racemosa were studied against some human pathogenic microbes such as Gram-positive Bacteria, (Bacillus subtilis, Bacillus cereus, Staphylococcus aureus) Gram-negative Bacteria (Klebsiella pneumoniae, Pseudomonas aeruginosa, Escherichia coli) and human opportunistic fungal pathogens (Candida albicans and Aspergillus niger). All the extracts were comparable with standard drugs (Ciprofloxacin, Gentamicin, Nystatin. and Amphotericin B). Minimum inhibitory concentration (MIC), minimum bactericidal /fungicidal concentration (MBC/MFC) values were determined through a microdilution method. The phytochemical analysis of these plant extracts were carried out using standard mthods.

Results: Methanolic leaf extract of A. monophylla has showed excellent antimicrobial activity against S. aureus (40mm). As well, the A. racemosa methanolic leaf extract shows notable inhibitory activity against S. aureus (38mm). At the same time, the least inhibition was observed in aqueous extract of A. monophylla against E.coli (9mm). The MIC ranged from 0.78 µg/mL to 50 µg/mL and MBC/MFC 1.56 to 50 µg/mL were recorded. Phytochemical analysis of alkaloids, steroids, saponins, flavonoids, tannins, terpenoids, phenolics and cardiae glycoside were recorded in various extracts of A. monophylla and A. racemosa respectively. Flavonoids, phenolics and cardiac glycoside were present only in methonalic leaf extract of A. monophylla.

Conclusion: The result of this study concluded that methanolic leaf extract has possessed novel compounds with significant antimicrobial properties. Hence, we recommend this plant for further studies on the isolation and characterization of that lead antimicrobial potential molecule.

Keywords: Antimicrobial activity, MIC, MBC/MFC, Atalantia monophylla, Atalantia racemosa, dermatology infections.

Graphical Abstract
[1]
Doss, S.; Anand, S.P. Antimicrobial activity of hygrophila auriculata (schumach) heine and pergularia daemia linn. Afr. J. Plant Sci., 2013, 7(4), 137-142.
[2]
World Health Organization Antimicrobial resistance. Antimicrob Resist Glob Rep Surveillance.Genera; WHO Press, 2014.
[3]
Ginovyan, M. Antimicrobial activity of some plant materials used in amarican traditional medicine. BMC complementary and alternative medicine., 2017.
[4]
Zakia, K.; Chew Shwu, W.; Irshad, U. Phytochemical screening and antimicrobial activity of root and stem extracts of wild Eurycoma longifolia Jack (Tongkat Ali). J of King Saud Uni Sci, 2015, 27(1), 23-30.
[5]
Kamal, A.; Hamza, L.F.; Hameed, I.H. Antibacterial activity of secondary metabolites isolated from alternaria alternata sabreen. Afr. J. Biotechnol., 2015, 14(43), 2972-2994.
[6]
Shah, K.; Burange, P.; Singh, S. Phytochemical, antimicrobial and antiadherence analysis of plant and ayurvedic extracts. Int. J. Appl. Biol. Pharm. Technol., 2015, 6(3), 72-79.
[7]
Ullah, N.; Parveen, A.; Bano, R.; Zulfiqar, I.; Maryam, M.; Jabeen, S.; Liaqat, A.; Ahmad, S. In vitro and in vivo protocols of antimicrobial bioassay of medicinal herbal extracts: A review. Asian Pac. J. Trop. Dis., 2016, 6(8), 660-667.
[8]
Gupta, D.; Dubey, J.; Kumar, M. Phytochemical analysis and antimicrobial activity of some medicinal plants against selected common human pathogenic microorganisms. Asian Pac. J. Trop. Dis., 2016, 6(1), 15-20.
[9]
Daihan, S.A. Antibacterial activity and phytochemical screening of some medicinal plants commonly used in Saudi Arabia against selected pathogenic microorganisms. J. Kin. Sau. Uni. Sci., 2013, 25(2), 115-120.
[10]
Paval, J.; Kaitheri, S.K.; Potu, B.K.; Govindan, S.; Kumar, R.S.; Narayanan, S.N.; Moorkoth, S. Anti-arthritic potential of the plant Justicia gendarussa Burm F. Clinics (São Paulo), 2009, 64(4), 357-362.
[11]
Panda, H. Handbook on Medicinal Herbs With Uses; Asia Pacific Business Press Inc., 2004, pp. 166-167.
[12]
Sukumaran, S.; Raj, A.D.S. Medicinal plants of sacred groove in kanyakumari district, southern western ghats. Indian J. Tradit. Knowl., 2010, 9(2), 294-299.
[13]
Arun. K. Das, Suresh Kumar. J, Swamy P.S, Larvicidal activity and leaf essential oil composition of three species of genus Atalantia from south India. International Journal of Mosquito Research, 2015, 2(3), 25-29.
[14]
Sharma, B.; Vasudeva, N. Anti bacterial activity of leaf extracts of plant Elleteria cadamomum Maton Family Zingeferaceae. Int. J. Inno. Pharmaceu. Sci. Res., 2016, 7, 777-783.
[15]
Rios, J.L.; Reco, M.C. Medicinal plants and antimicrobial activity. J. Ethnopharmacol., 2005, 100(1-2), 80-84.
[16]
Valgas, C.; Simone, M.; Elza, F.A. Smânia, Artur Smânia JR. Screening methods to determine antibacterial activity of natural products. Braz. J. Microbiol., 2007, 38(2), 369-380.
[17]
Clinical Laboratory Standard Institute Reference methods for dilution antimicrobial susceptibility tests for bacteria that grow aerobically; Approved standardseventh, edition 2006; Clinical Laboratory Standard Institute, 2008.
[18]
Kokate, C.K. Practical pharmacognosy. Published by Jain MK for Vallabh Prakashan; Pitampura:; New Delhi,. , 2005, p. 107.
[19]
Trease, G.E.; Evans, W.C. Pharmacognosy, 13th ed; ELBS/Bailliere Tindall: London, 1989, pp. 345-346.
[20]
Jaswanth, A.; Jagannathan, K. Jerry heisonrobert, S, Loganathan Manimaran S, and Ruckmani. Antibaterial activity of root extract of trianthema decandra. Anc. Sci. Life, 2002, 21(3), 158-159.
[21]
Singariya, P.; Kumar, P.; Mourya, K.K. Evolution of antimicrobial activity of leaf extracts of winter cheery (withania somnifera). Int. J. Pharm. Tech. Res., 2012, 4(3), 1247-1253.
[22]
Shariff, N.; Sudharshana, M.S.; Umesha, S.; Hariprasad, P. Antimicrobial activity of rauvolifia teraphylla and Physalis minima leaf and extracts. Afr. J. Biotechnol., 2006, 5(10), 946-950.
[23]
Castello, M.; Phatak, A.; Chandra, N.; Sharon, M. Antimicrobial activity of crude extract from plant part and corresponding calli of Bixa orellana L. Indian J. Exp. Biol., 2002, 40(12), 1378-1381.
[24]
Jain, Sc.; Jain, R.; Vlietinck, A. In vivo and in vitro antimicrobial efficiency of mimosa hamata Ind. J. Biotechnol., 2004, 3, 271-273.
[25]
Sivakumar, R.; Alagesaboopathi, C. Antimicrobial activity of two different from of Abrus precatiorius L, J. Adv. Plant Sci. (Muzaffarnagar), 2006, 19, 409-413.
[26]
Kohanski, M.A.; DePristo, M.A.; Collins, J.J. Sublethal antibiotic treatment leads to multidrug resistance via radical-induced mutagenesis. Mol. Cell, 2010, 37(3), 311-320.
[27]
Frank, M.F.; Meyers, R. Antibacterial activity of traditional medicinal plants used by Haudenosaunee peoples of New York State. BMC, 2010, 6, 10-64.
[28]
Arun, M.; Satish, S.; Anima, P. Experimental wound healing aspects of Jasminum grandiflorum Linn: A preclinical study. Afr. J. Tradit. Com. Altern. Med., 2015, 12(3), 135-142.
[29]
Gokhan, Z.; Ahmet, U.; Abdurrahman, A.; Andrei, M.; Adriano, M.; Marcello, L.; Luisa, C.; Nuno, R. Nengf, José M.F. Nogueiraf, Zaahira A, Fawzi M. Euphorbia denticulata Lam.: A promising source of phyto-pharmaceuticals for the development of novel functional formulations. Biomed. Pharmacother., 2017, (87), 27-36.
[30]
Bussmann, R.W.; Malca-García, G.; Glenn, A.; Sharon, D.; Chait, G.; Díaz, D.; Pourmand, K.; Jonat, B.; Somogy, S.; Guardado, G.; Aguirre, C.; Chan, R.; Meyer, K.; Kuhlman, A.; Townesmith, A.; Effio-Carbajal, J.; Frías-Fernandez, F.; Benito, M. Minimum inhibitory concentrations of medicinal plants used in Northern Peru as antibacterial remedies. J. Ethnopharmacol., 2010, 132(1), 101-108.
[31]
Abdallah, E.M. Antibacterial efficiacy of acacia nilotica (l.) pods growing in sudan against some bacterial pathogens. Int. J. Curr. Res. Biosci. Plant Biol., 2016, 3, 6-11.
[32]
Bishnu, P.; Marasini, B.; Baral, P.; Aryal, P.; Kashi, R.; Neupane, G.S.; Dahal, N.; Singh, A.; Ghimire, L.; Shrestha, K. Evaluation of antibacterial activity of some traditionally used medicinal plants against human pathogenic bacteria. BioMed Res. Int., 2015, 6, 265-25.

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