Green fabrication of Moringa oleifera seed as efficient biosorbent for selective enrichment of triazole fungicides in environmental water, honey and fruit juice samples

2022 ◽  
pp. 107194
Author(s):  
Rawikan Kachangoon ◽  
Jitlada Vichapong ◽  
Yanawath Santaladchaiyakit ◽  
Supalax Srijaranai
2016 ◽  
Vol 23 (7) ◽  
pp. 645-649 ◽  
Author(s):  
José H.E.S. Freitas ◽  
Keissy V. de Santana ◽  
Pollyanna M. da Silva ◽  
Maiara C. de Moura ◽  
Luana C.B.B. Coelho ◽  
...  

2017 ◽  
Vol 329 ◽  
pp. 102-109 ◽  
Author(s):  
William K. Garde ◽  
Steven G. Buchberger ◽  
David Wendell ◽  
Margaret J. Kupferle

2020 ◽  
Vol 15 (3) ◽  
pp. 15-23
Author(s):  
J.B. Hussein ◽  
J.O.Y. Ilesanmi ◽  
H.M Aliyu ◽  
V. Akogwu

The possible combination of cowpea with moringa seed flour for the production of nutrient dense moimoi (steamed cowpea paste) and akara (deep-fat fried balls) were investigated. Composite blends of cowpea and moringa seed flour in different proportions (98:2, 96:4 and 94:6) were used in moimoi and akara production while 100% cowpea flour served as control. The proximate and sensory analyses of the products were determined using standard methods. The results showed a positive influence in the proximate compositions of these products as the proportion of moringa seed flour substitution increased. The moimoi samples ranged between 10.77 – 26.92%, 18.27 – 21.16%, 8.12 – 10.72%, 1.80 – 2.19%, 0.76 – 0.84%, 44.07 – 53.99% and 269.87 – 335.18 Kcal/100g while akara samples ranged between 9.73 – 10.77%, 19.51 – 22.12%, 7.41 – 9.90%, 2.39 – 2.71%, 0.87 – 0.93%, 54.69 – 59.00% and 320.26 – 332.08 Kcal/100g respectively for moisture contents, protein contents, crude fats, ash, crude fibers, carbohydrates and energy values. The sensory evaluation results of these products favourably competed with the control except samples D (94:6) which showed a slight difference in all parameters tested. Thus, the substitution of cowpea with moringa seed flour up to 2% and 4% proportions are adequate to produce acceptable moimoi and akara, respectively.The possible combination of cowpea with moringa seed flour for the production of nutrient dense moimoi (steamed cowpea paste) and akara (deep-fat fried balls) were investigated. Composite blends of cowpea and moringa seed flour in different proportions (98:2, 96:4 and 94:6) were used in moimoi and akara production while 100% cowpea flour served as control. The proximate and sensory analyses of the products were determined using standard methods. The results showed a positive influence in the proximate compositions of these products as the proportion of moringa seed flour substitution increased. The moimoi samples ranged between 10.77 – 26.92%, 18.27 – 21.16%, 8.12 – 10.72%, 1.80 – 2.19%, 0.76 – 0.84%, 44.07 – 53.99% and 269.87 – 335.18 Kcal/100g while akara samples ranged between 9.73 – 10.77%, 19.51 – 22.12%, 7.41 – 9.90%, 2.39 – 2.71%, 0.87 – 0.93%, 54.69 – 59.00% and 320.26 – 332.08 Kcal/100g respectively for moisture contents, protein contents, crude fats, ash, crude fibers, carbohydrates and energy values. The sensory evaluation results of these products favourably competed with the control except samples D (94:6) which showed a slight difference in all parameters tested. Thus, the substitution of cowpea with moringa seed flour up to 2% and 4% proportions are adequate to produce acceptable moimoi and akara, respectively. Keywords: Moimoi, Akara, Cowpea flour, Moringa oleifera seed flour and Sensory properties: Moimoi, Akara, Cowpea flour, Moringa oleifera seed flour and Sensory properties


2021 ◽  
pp. 1-47
Author(s):  
Alessandra Marjorie de Oliveira ◽  
Márcia Maria dos Anjos Szczerepa ◽  
Maria Cristina Bronharo Tognim ◽  
Benício Alves de Abreu Filho ◽  
Lúcio Cardozo-Filho ◽  
...  

2016 ◽  
Vol 78 (5) ◽  
Author(s):  
Ardini Pangastuti ◽  
Ihya Fakhrurizal Amin ◽  
Ahya Zhilalikbar Amin ◽  
Mohammad Amin

Cancer is the leading cause of death in the world. More than 10 million people worldwide are expected to be diagnosed with cancer, a disease commonly believed to be preventable. Moringa oleifera is one of the well known as a local plant as food and health plant in Indonesia. Anticancer is one of potential treatment found in Moringa oleifera seed, leaves, and pods extracts. This study aimed to discover natural bioactivity compound from Moringa oleifera for anticancer. Niazimicin is one of bioactive compound found in Moringa oleifera reported have potent antitumor promoting activity. The bioinformatics tool used in this study were: Pubchem compound database, protein target prediction database Pharmmapper and Chemmapper, molecular docking software PyRx 0,8, ligand docking and binding site analysis with PyMOL and LigPlus software. To check for compound’s drug-likeness were applied using DruLiTo software. Based on our previous steps, we found that niazimicin interacted with glycosyltransferase via hydrogen bond and hydrophobic interactions. Niazimicin is the best Glycosiltransferase inhibitor based on binding afinity (-7,3 kcal/mol) that is more negative than existing glycosiltransferase inhibitor, such as tert-Butyl 4-(5-formyl-2-thienyl)piperazine-1-carboxylate, sialic acid and fucose. According to Lipinski's rule parameter we discover that Niazimicin is a potential anticancer drug.


2018 ◽  
Vol 5 (11) ◽  
pp. 699-707 ◽  
Author(s):  
Tânia Maria de Andrade ◽  
Krystyna Gorlach-Lira

White lily Moringa oleifera seed powder acts as a natural coagulant promoting the reduction of water turbidity by the coagulation and sedimentation of the suspended particles, also eliminating the microorganisms by sedimentation. The aqueous extract of M. oleifera presented an inhibitory capacity for the growth of Staphylococcus aureus, whereas the hydroalcoholic extract inhibited S. aureus, Salmonella typhimurium and Vibrio cholerae, using the agar diffusion test. Standard strains of Pseudomonas aeruginosa, Escherichia coli and Enterococcus faecalis were resistant to the extracts. The water treatment through the aqueous extract of M. oleifera seeds at 0.02% and 0.01% concentrations was evaluated with the water samples collected in the Sinibu River, Paraíba State, Brazil, using the jar test. The water samples analyzed in this work were characterized by low turbidity (2.8-3.0 NTU), and pH and alkalinity between 5.8-7.3 and 10-30 mg CaCO3/L, respectively. After water treatment with M. oleifera aqueous extract, it was observed that pH, turbidity and alkalinity did not change significantly. Total heterotrophic bacteria counts in the crude water samples were between 1.9 x 10^5 UFC/100 mL and 1.1 x 10^6 CFU/100 mL, while the number of fecal coliforms was between 2.3 x 10^2 NMP/100 mL and 2.4 x 10^3 NMP/100 mL. The counts of total bacteria and fecal coliforms in the water samples treated with aqueous white lily extract at both concentrations tested (0.02% and 0.01%) during the 1.5-hour period did not differ significantly when compared to the untreated water. The results obtained in this work indicate that low turbidity of water influenced the efficacy of M. oleifera extract in the removal of bacteria in the treated water, since the level of coagulation depends on water turbidity.


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