-
The Combinatorial Of M.oleifera And J. Curcas On Bacteria And Fungi
REFRENCES -- [Total Page(s) 2]
Page 2 of 2
-
-
-
Kemp W (1991a). Ultraviolet and visible spectroscopy. In Organic
spectroscopy, Edn Kemp, W Macmillan Press Ltd, London. pp 243-252.
Kemp W. (1991). Energy and electromagnetic spectrum. In Organic spectroscopy, Edn Kemp, W Macmillan Press Ltd, London. pp 1-7.
Lawrence
R, Tripathi P, Jeyakumar E (2009). Isolation, purification and
evaluation of antibacterial agents from Aloe vera. Brazilian Journal of
Microbiology. 40: 906-915.
Malecka M (2002). Antioxidant properties
of the unsaponifiable matter isolated from tomato seeds, oat grains and
wheat germ oil. Food Chemistry. 79: 327-332.
Martin J G P, Porto E ,
Corrêa C B , de Alencar S M, da Gloria E M , Cabral I S R ,de Aquino L M
(2012). Antimicrobial potential and chemical composition of
agro-industrial wastes. Journal of Natural Products. 5: 27-36.
Nair
R, Chanda S (2008). Antimicrobial activity of Terminalia catappa,
Manilkara zapota and Piper betel leaf extract. Indian Journal of
Pharmaceutical Sciences. 70: 390-393.
Nalina T, Rahim Z H A (2007).
The crude aqueous extract of Piper betle L . and its antibacterial
effect towards Streptococcus mutans. American Journal of Biotechnology
and Biochemistry. 3: 10-15.
Ogunleye D S, Ibitoye S F (2003). Studies
of antimicrobial activity and chemical constituents of Ximenia
americana. Tropical Journal of Pharmaceutical Research. 2: 239-241.
Oreopoulou
C V, Tzia C (2007). In:Utilization of by-products and treatment of
waste in the food, C.V. Oreopoulou and W. Russ (Eds). Springer. USA. pp
209-232.
Pan X, Niu G, Liu H (2003). Microwave-assisted extraction of
tea polyphenols and tea caffeine from green tea leaves. Chemical
Engineering and Processing. 42: 129–133.
Parekh J, Chanda S V (2007).
In vitro antimicrobial activity and phytochemical analysis of some
Indian medicinal plants. Turkish Journal of Biology. 31: 53-58.
Rodrigues
E M G, Pessoa-Jr, Milagres A M F (1999). Screening of variables in
xylanase recovery using BDBAC reversed micelles. Applied Biochemistry
Biotechnology. 77: 779–788.
Rodriguez de Sotillo D, Hadley M,
Wolf-Hall C (2007). Potato peel extract a nonmutagenic antioxidant with
potential antimicrobial activity. Journal of Food Science. 63: 907–910.
Salah
S M (2012). Antibacterial activity and uv protection property of some
Egyptian cotton fabrics treated with aqueous extract from Banana peel.
International Journal of Clothing Science. 1: 1-6.
Saldana M D A,
Mohamed R S, Baer M G, Mazzafera P (1999). Extraction of purine
alkaloids from mate (Ilex paraguariensis) using supercritical CO2.
Journal of Agricultural and Food Chemistry. 47: 3804–3808.
Tang J, Meng X, Liu H, Zhao J, Zhou L, Qiu M, Zhang X, Yu Z, Yang F (2010).
Tenover
F C, Swenson J M, O’Hara C M, Stocker S A (1995). Ability of commercial
and reference antimicrobial susceptibility testing methods to detect
vancomycin resistance in Enterococci. Journal of Clinical Microbiology.
33: 1524-1527.\
Vasan A (2009). Extraction of bio-active components
from fruit and vegetable processing wastes: using grape waste from the
wine processing industry as a model. Thesis. Oklahoma State University.
Veldhuizen
E J A, Bokhoven J L M V, Zweijtzer C, Burt S A, Haagsman H P (2006).
Structural requirements for the antimicrobial activity of carvacrol.
Journal of Agricultural and Food Chemistry. 54: 1874-1879.
Wolfe K L,
Liu R H (2003). Apple peels as a value-added food ingredient. Journal
of Agricultural and Food Chemistry. 51: 1676–1683.
Wright J M (1951).
Phytotoxic effects of some antibiotics. Annals of Botany (London).15:
493. Xu B J, Chang S K (2007). A comparative study on phenolic profiles
and antioxidant activities of legumes as affected by extraction
solvents. Journal of Food Science.72: 159-166.
Ye M, Han J, Chen H,
Zheng J, Guo D (2007). Analysis of phenolic compounds in rhubarbs using
liquid chromatography coupled with electrospray ionization mass
spectrometry. Journal of the American Society for Mass Spectrometry. 18:
82–91.
Zeeshan M, Rizvi S M D, Khan M S, Kumar A (2012). Isolation,
partial purification and evaluation of bioactive compounds from leaves
of Ageratum houstonianum.
REFRENCES -- [Total Page(s) 2]
Page 2 of 2
-
-
ABSRACT - [ Total Page(s): 1 ]ABSTRACT WILL COME SOON ... Continue reading---
CHAPTER ONE - [ Total Page(s): 2 ]CHAPTER ONE1.0 INTRODUCTION 1.1 BACKGROUND OF THE STUDY Plants have been used for centuries before the advent of Orthodox medicine. Leaves, flowers, stems, roots, seeds, fruit and bark can all be constituents of herbal medicines. The medicinal values of these plants depend on their phytochemical components, which produces definite physiological actions on the human body. The most important of these phytochemicals are alkaloids, tannins, flavonoids and phenolic compounds ... Continue reading---
CHAPTER TWO - [ Total Page(s): 8 ]Usually for extraction solvents from nonpolar to polar are used. But solvents such as methanol, ethanol, acetone, ethyl acetate, acetic acid, petroleum ether, chloroform, benzene (Fuleki et al., 1997; Jayaprakasha et al. 2003; Ozkan et al., 2004; Xu and Chang 2007) and their combinations have been used for the extraction of phenolics from plant materials, often with different proportions of water. Since nearly all of the identified antimicrobial compounds from plants are aromatic or saturated or ... Continue reading---
CHAPTER THREE - [ Total Page(s): 2 ]CHAPTER THREE3.0 MATERIALS AND METHODS Collection and Identification of plant leaves Healthy leaves of Jatropha curcas and Moringa oleifera were harvested from saw-mill area garden Moniya Ibadan,Nigeria in October 2017.the taxonomical identification of the plant was confirmed by a plant taxonomist Mr Bolu Ajayi University Ilorin, Kwara State .voucher number UILH/001/1008/UILH/002/1018The fresh leaves of Jatropha curcas and Moringa oleifera were harvested, rinsed with tap water and air-drie ... Continue reading---
CHAPTER FOUR - [ Total Page(s): 6 ]Figure 4: Figure a lower zone of inhibition on Jatropha curcas with different concentration that were subjected to it at 1.0, 0.5, 0.25, 0.125 and 0.0625mg/ml in which it showed 16.0mm at 1.0mg/ml, 12.0mm at 0.5mg/ml, 08mm at 0.25mg/ml, 04mm at 0.125mg/ml and 0.0 at 0.0625mg/ml in which are significant lower than other concentration of crude extract of Jatropha curcas from other group in Aspergilus niger. Control showed 16mm ... Continue reading---
CHAPTER FIVE - [ Total Page(s): 1 ]CHAPTER FIVE5.1 DISCUSSIONThe result of this investigation revealed that the leaf extracts of Moringa oleifera and Jatropha curcas possesses appreciable antimicrobial activity against Staphylococcus aureus and Escherichia coli. The extracts inhibited the growth of E.coli and S.sureus of various concentrations. The minimum inhibitory concentration of both leaf extracts on the test organisms ranged between 0.250mg.ml and 0.125.g/ml. Jabovska et al. (2003) reported that antimicrobials of plan ... Continue reading---