Phytochemical Screening of Leaves from Mangifera indica and Morus alba for Bioactive Compounds

Dr. Muhammadi, Shabina Shafiq, Faisal Hussain

Abstract


The aqueous, methanol and DMSO extracts from leaves of Mangifera indica and Morus alba were screened for bioactive compounds. Antimicrobial activity and MIC (mg/ml) were determined using agar-well diffusion and serial dilution methods respectively against human pathogenic bacteria and fungi. Antioxidant activities (%) were determined against DPPH free radicals, superoxide anion and Fe+2 whereas antiurease activity (%) was by indophenol method. The time taken to set paralysis and death of Pheritima posthuma was observed after released into extract. Phytochemical analysis detected carbohydrates, alkaloids, phenols, flavonoids, terpenoids, saponins, tannins, steroids, resins, anthraquinones, cardiac glycosides and phlobatannins. All extracts more or less showed the activity against Gram-positive and -negative bacteria producing zone of inhibition 15±0.57 to 43.66±0.66 mm and MIC values 13±1.64 to 100±0.35 mg/ml. Similarly, for fungi, zone of inhibition and MIC values were 9±0.57 to 34±0.57 mm and 23±1.25 115±0.55 g/ml respectively. Activities against DPPH, superoxide anion and Fe+2 free radicals were found 13.68±0.74 to 93.70±0.76 %, 50.23±0.43 to 95.7±0.21 % and 52.76±0.23 to 98.82±0.42% respectively, of these, the maximum activities surpassed the n-propyl gallate (91.31 %) and EDTA (98.05 %). Similarly, urease was also inhibited (33 to 95.23%) by all extracts. All extracts were also caused paralysis followed by subsequent death (13.5/26.87 to 39/60.06 min) of P. posthuma, of these methanolic extract from M. indica was least than that by albendazole (30.45/52 min) and piperazine citrate (14.35/36 min). The results provide scientific basis for traditional use of these extracts as affordable strategies for treatments of infectious, inflammatory and degenerative diseases, caused by bacteria, fungi, free radicals, urease and helminths.

Keywords


Antimicrobial; Antioxidant; Antiurease; Anthelmintic; Phytochemical

Full Text:

PDF

References


Ajaiyeoba, E.O., P.A. Onocha, and O.T. Olarenwaju. 2001. In-vitro anthelmintic properties of Buchholzia coriaceae and Gynandropsis gynandra extract. Pharmaceutical biology, 39(3): 217-220.

Akharaiyi, F.C. and B. Boboye. 2010. Antibacterial and phytochemical evaluation of three medicinal plants. Journal of Natural Products, 3: 27-34.

Aliyu, A.B., A.M. Musa, M.A. Ibrahim, H. Ibrahim and A.O. Oyewale. .2009. Preliminary phytochemical screening and antioxidant activity of leave extract of Albizia chevalieri harms (Leguminoseae-mimosoideae). Bayero Journal of Pure and Applied Sciences, 2(1): 149 -153.

Al-Mamun, M., K. Yamaki, T. Masumizu, Y. Nakai, K. Saito, H. Sano and Y. Tamura. 2007. Superoxide anion radical scavenging activities of herbs and pastures in Northern Japan determined using electron spin resonance spectrometry. International Journal of Biological Sciences, 3(6): 349-355.

Anyasor, G.N., K.O. Ogunwenmo, O.A. Oyelana and B.E. Akpofunure. 2010. Phytochemical constituents and antioxidant activities of aqueous and methanol stem extracts of Costus afer Ker Gawl. (Costaceae), African Journal of Biotechnology, 9(31): 4880-4884.

Coolborn, A.F. and B. Bolatito. 2010. Antibacterial and phytochemical evaluation of three medicinal plants. Journal of Natural Products, 3: 27-34.

Cunha, B. 1998. Antibiotic resistance: control strategies, Critical Care Clinics, 14(2): 309-327.

De, N. and N.E. James. 2002. Antibacterial spectrum of ectracts of Ocimum gratissimum L (Basil) ND Xylopia aetiopica A. Rich (Dunal). Nigerian Journal or Basic and Applied Sciences, 11: 165-175.

Devi, K., S. Indumathy, V. Rathinambal, S. Uma, S. Kavimani and V. Balu. 2009. Anthelminthic activity of Asta Churna. International Journal of Health Research, 2(1): 101-103.

Doughari, J.H. and S. Manzara. 2008. In-vitro antibacterial activity of crude leaf extracts of Mangifera indica Lin, African Journal of Microbiology Research, 2(4): 67-72.

Duru, C.M. and N.E. Oyedineke. 2010. In-vitro study on antimicrobial activity and phytochemical analysis of ethanolic extracts of the mesocarp pf Voacanga Africana, American Journal of Plant Physiology, 5(4): 63-169.

Estiu, G. and K.M. Merz. 2004. The Hydrolysis of urea and the proficiency of urease. Journal of the American Chemical Society, 126(22): 6932-6944.

Fazly-Bazzaz, B.S., M. Khajehkaramadin and H.R. Shokooheizadeh. 2005. In vitro antibacterial activity of Rheum ribes extract obtained from various plant parts against clinical isolates of Gram-negative pathogens. Iranian Journal of Pharmaceutical Research, 2: 87- 91.

Ferda, C. 2003. Effect of Rhus coriaria (anacardiaceae) on superoxide radical scavenging and xanthine oxidase activity. Journal of Enzyme Inhibition and Medicinal Chemistry, 18(1): 59-62.

Gaill, W. and A.W. Jon. 1995. Antimicrobial susceptibility test; dilution and disc diffusion methods, Manual of Clinical Microbiology, sixth ed.1327-1332.

Tahseen, G., A. Kalsoom, N. Faiz-ul-Hassan and M.A. Choudhry. 2010. Screening of selected medicinal plants for urease inhibitory activity. Biology and Medicine, 2(4): 64-69.

Hu, F.B. 2000. Role of antioxidants in preventing cardiovascular disease. Current Opinion in Lipidology, 13: 3.

Idris, S., G.I. Ndukwe and C.E. Gimba. 2009. Preliminary phytochemical screening and antimicrobial activity of seed extracts of Persea americana (Avocado pear). Bayero Journal of Pure and Applied Sciences, 2(1): 173-176.

Iwu, M.W., A.R. Duncan and C.O. OKunji. 1999. New antimicrobials of plant origin. In: Janick J. (Ed.), Perspectives on New Crops and New Uses, ASHS Press, Alexandria, VA, 457–462.

Jeljaszewicz, J., G. Mlynarczyk and A. Mlynarczyk. 2000. Antibiotic resistance in Gram-positive cocci. International journal of antimicrobial agents, 16(4): 473-478.

Kanwal, Q., I. Hussain, H.L. Siddiqui and A. Javaid. 2010. Antifungal activity of flavonoids isolated from mango (Mangifera indica L.) leaves. Natural Product Research, 24(20): 1907-1914.

Karnath, L. 2002. The new paradigm of botanical drugs. European Pharmaceutical Review. 7(1): 19-20.

Kexue, Z., Z. Huiming and Q. Haifeng. 2006. Process Biochemistry, 41: 1296-1203.

Khan, I., S. Ali, S. Hameed, N.H. Rama, M.T. Hussain, A. Wadood, R. Uddin, Z. Ul-Haq, A. Khan, S. Ali and M.I. Choudhary. 2010. Synthesis, antioxidant activities and urease inhibition of some new 1,2,4-triazole and 1,3,4-thiadiazole derivatives. European journal of medicinal chemistry, 45(11): 5200-5207.

Kulkarni, G.K., R.V. Kadolkar and A.B. Maisale. 2010. Anthelmintic activity of Drynaria quercifolia (L.) J. Smith. Journal of Pharmacy Research, 3(5): 975-977.

Mallikharjuna, P.B., L.N. Rajanna, Y.N. Seetharam and G.K. Sharanabasappa. 2007. Phytochemical studies of Strychnos potatorum L.f. A medicinal plant. E-Journal of Chemistry, 4(4): 510-518.

Mathur, A., S.K. Verma, S.K. Singh, G.B.K.S. Prasad and V.K. Dua. 2010. Phytochemical investigation and in vitro antioxidant activities of some plants of uttarakhand. IJPI’S. Journal of Pharmacognosy and Herbal Formulations, 1(1): 1-7.

Muanda, F.N., J. Bouayed, A. Djilani, C. Yao, R. Soulimani and A. Dicko. 2011. Chemical composition and, cellular evaluation of the antioxidant activity of Desmodium adscendens leaves. Evidence-Based Complementary and Alternative Medicine, Article ID 620862, p. 9.

Ndukwe, K.C., I.N. Okeke, A. Lamikanra, S.K. Adesina and O. Aboderin. 2005. Antibacterial activity of aqueous extracts of selected chewing sticks. Journal of Contemporary Dental Practice, 6(3): 86-94.

Ospina, S., M.P. Arbeláez, L.A. Paniagua, M.C. Peláez, J.C. Ramírez and L.C. Sánchez. 2002. Factores de riezgo para infección intrahospitalaria por bacterias multiresistentes a los antibioticos. Enfermedades infecciosasy microbiologia. Infecciones nosocomiales, 22: 127.

Pourmorad, F., S.J. Hosseinimehr and N. Shahabimajd. 2006. Antioxidant activity, phenol, and flavonoid contents of some selected Iranian medicinal plants. African Journal of Biotechnology, 5(11): 1142-1145.

Radhika, P.B., S. Sastry and B.M. Harika. 1989. Antimicrobial screening of Andrographis paniculata (Acanthaceae) root extracts. Research Journal of Biotechnology, 3(3): 62-63.

Radhika, P.B., S. Sastry and B.M. Harika. 2008. Antimicrobial screening of Andrographis paniculata (Acanthaceae) root extracts. Research Journal of Biotechnology, 3(3): 62-63.

Rajendran, N.K. and J, Ramakrishnan. 2009. In-vitro evaluation of antimicrobial activity of crude extracts of medicinal plants against multi drug resistant pathogens. Biyoloji Bilimleri Araştırma Dergisi, 2(2): 97-101.

Roy, H. 2010. Preliminary phytochemical investigation and anthelmintic activity of Acanthospermum hispidum DC. Journal of Pharmaceutical Science and Technology, 2(5): 217-221.

Sahm, D.F. and J.A. Washington. 1990. Antibacterial susceptibility test dilutions methods, in: Manuals of clinical Microbiology, 1105-1116.

Sieradzki, K., R.B. Roberts, S.W. Haber and A. Tomasz. 1999. The development of vancomycin resistance in a patient with methicillin-resistant Staphylococcus aureus infection. The New England Journal of Medicine, 340(7): 517-523.

Sofowora. A. 1993. Medicinal plants and traditional medicine in Africa, Spectrum Books, Ibadan, p. 150.

Tiwari, P., B. Kumar, M. Kaur, G. Kaur and H. Kaur. 2011a. Phytochemical screening and extraction: A Review. International Journal of Pharmacy and Pharmaceutical Sciences, 1(1): 98-106.

Tiwari, P., B. Kumar, M. Kumar, M. Kaur, J. Debnath and P. Sharma. 2011b. Comparative anthelmintic activity of aqueous and ethanolic stem extract of Tinospora cordifolia. International Journal of Drug Development & Research, 3(1): 70-83.

Vaghasya, Y., R. Dave and S. Chanda. 2011. Phytochemical analysis of some medicinal plants from western region of India. Research Journal of Medicinal Plants, 5(5): 567-76.

Wang, J., H. Liu, J. Zhao, H. Gao, L. Zhou, Z. Liu, Y. Chen and P. Sui. 2010. Antimicrobial and antioxidant activities of the root bark essential oil of Periploca sepium and its main component 2-hydroxy-4-methoxybenzaldehyde. Molecules, 15(8): 5807-5817.

Weatherburn, M.W. 1967. Phenol-hypochlorite reaction for determination of ammonia. Analytical Chemistry, 39(8): 971-974.

WHO. 1995. The World Health Reports, Bridging the gap WHO, Geneva 1: 118.




DOI: https://doi.org/10.33687/jpe.002.02.3478

Refbacks

  • There are currently no refbacks.


Copyright (c) 2020 Dr. Muhammadi, Shabina Shafiq, Faisal Hussain

Journal of Plant and Environment
ISSN: 2710-1665 (Online), 2710-1657 (Print)
© EScience Press. All Rights Reserved.