1.Induction of Systemic Resistance of Benzothiadiazole and Humic Acid in Soybean Plants Against Fusarium Wilt Disease.
Montaser Fawzy ABDEL-MONAIM ; Mamdoh Ewis ISMAIL ; Kadry Mohamed MORSY
Mycobiology 2011;39(4):290-298
The ability of benzothiadiazole (BTH) and/or humic acid (HA) used as seed soaking to induce systemic resistance against a pathogenic strain of Fusarium oxysporum was examined in four soybean cultivars under greenhouse conditions. Alone and in combination the inducers were able to protect soybean plants against damping-off and wilt diseases compared with check treatment. These results were confirmed under field conditions in two different locations (Minia and New Valley governorates). The tested treatments significantly reduced damping-off and wilt diseases and increased growth parameters, except the number of branches per plant and also increased seed yield. Application of BTH (0.25 g/L) + HA (4 g/L) was the most potent in this respect. Soybean seed soaking in BTH + HA produced the highest activities of the testes of oxidative enzymes followed by BTH in the four soybean cultivars. HA treatment resulted in the lowest increases of these oxidative enzymes. Similar results were obtained with total phenol but HA increased total phenol more than did BTH in all tested cultivars.
Fusarium
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Phenol
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Plants
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Seeds
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Soybeans
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Sprains and Strains
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Testis
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Thiadiazoles
2.Genome Shuffling of Mangrove Endophytic Aspergillus luchuensis MERV10 for Improving the Cholesterol-Lowering Agent Lovastatin under Solid State Fermentation.
Mervat Morsy Abbas Ahmed EL-GENDY ; Hind A A AL-ZAHRANI ; Ahmed Mohamed Ahmed EL-BONDKLY
Mycobiology 2016;44(3):171-179
In the screening of marine mangrove derived fungi for lovastatin productivity, endophytic Aspergillus luchuensis MERV10 exhibited the highest lovastatin productivity (9.5 mg/gds) in solid state fermentation (SSF) using rice bran. Aspergillus luchuensis MERV10 was used as the parental strain in which to induce genetic variabilities after application of different mixtures as well as doses of mutagens followed by three successive rounds of genome shuffling. Four potent mutants, UN6, UN28, NE11, and NE23, with lovastatin productivity equal to 2.0-, 2.11-, 1.95-, and 2.11-fold higher than the parental strain, respectively, were applied for three rounds of genome shuffling as the initial mutants. Four hereditarily stable recombinants (F3/3, F3/7, F3/9, and F3/13) were obtained with lovastatin productivity equal to 50.8, 57.0, 49.7, and 51.0 mg/gds, respectively. Recombinant strain F3/7 yielded 57.0 mg/gds of lovastatin, which is 6-fold and 2.85-fold higher, respectively, than the initial parental strain and the highest mutants UN28 and NE23. It was therefore selected for the optimization of lovastatin production through improvement of SSF parameters. Lovastatin productivity was increased 32-fold through strain improvement methods, including mutations and three successive rounds of genome shuffling followed by optimizing SSF factors.
Aspergillus*
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Efficiency
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Fermentation*
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Fungi
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Genome*
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Humans
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Lovastatin*
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Mass Screening
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Mutagens
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Parents
3.Protective effects of lutein against vancomycin-induced acute renal injury in mice via upregulation of peroxisome proliferatoractivated receptor gammauclear factor erythroid 2-related factor 2 and inhibition nuclear factor-kappaB/caspase 3
Promise M. EMEKA ; Sahibzada T. RASOOL ; Mohamed A. MORSY ; Mohamed I. HAIRUL ISLAM ; Muhammad S. CHOHAN
The Korean Journal of Physiology and Pharmacology 2021;25(4):321-331
Vancomycin, an antibiotic used occasionally as a last line of treatment for methicillin-resistant Staphylococcus aureus, is reportedly associated with nephrotoxicity. This study aimed at evaluating the protective effects of lutein against vancomycin-induced acute renal injury. Peroxisome proliferator-activated receptor gamma (PPARγ) and its associated role in renoprotection by lutein was also examined. Male BALB/c mice were divided into six treatment groups: control with normal saline, lutein (200 mg/kg), vancomycin (250 mg/kg), vancomycin (500 mg/kg), vancomycin (250 mg/kg) with lutein, and vancomycin (500 mg/kg) with lutein groups; they were euthanized after 7 days of treatment. Thereafter, samples of blood, urine, and kidney tissue of the mice were analyzed, followed by the determination of levels of N-acetyl-β-D-glucosaminidase (NAG) in the urine, renal creatine kinase; protein carbonyl, malondialdehyde, and caspase-3 in the kidney; and the expression of PPARγ, nuclear factor erythroid 2-related factor 2 (Nrf2), and nuclear factor-kappaB (NF-κB) in renal tissue. Results showed that the levels of protein carbonyl and malondialdehyde, and the activity of NAG, creatine kinase and caspase-3, were significantly increased in the vancomycin-treatment groups. Moreover, the levels of Nrf2 significantly decreased, while NF-κB expression increased. Lutein ameliorated these effects, and significantly increased PPARγ expression. Furthermore, it attenuated vancomycin-induced histological alterations such as, tissue necrosis and hypertrophy. Therefore, we conclude that lutein protects against vancomycin-induced renal injury by potentially upregulating PPARγ/Nrf2 expression in the renal tissues, and consequently downregulating the pathways: inflammation by NF-κB and apoptosis by caspase-3.
4.Corrigendum to: Protective effects of lutein against vancomycininduced acute renal injury in mice via upregulation of peroxisome proliferator-activated receptor gammauclear factor erythroid 2-related factor 2 and inhibition of nuclear factor-kappaB/ caspase 3
Promise M. EMEKA ; Sahibzada T. RASOOL ; Mohamed A. MORSY ; Mohamed I. HAIRUL ISLAM ; Muhammad S. CHOHAN
The Korean Journal of Physiology and Pharmacology 2021;25(5):495-
5.Protective effects of lutein against vancomycin-induced acute renal injury in mice via upregulation of peroxisome proliferatoractivated receptor gammauclear factor erythroid 2-related factor 2 and inhibition nuclear factor-kappaB/caspase 3
Promise M. EMEKA ; Sahibzada T. RASOOL ; Mohamed A. MORSY ; Mohamed I. HAIRUL ISLAM ; Muhammad S. CHOHAN
The Korean Journal of Physiology and Pharmacology 2021;25(4):321-331
Vancomycin, an antibiotic used occasionally as a last line of treatment for methicillin-resistant Staphylococcus aureus, is reportedly associated with nephrotoxicity. This study aimed at evaluating the protective effects of lutein against vancomycin-induced acute renal injury. Peroxisome proliferator-activated receptor gamma (PPARγ) and its associated role in renoprotection by lutein was also examined. Male BALB/c mice were divided into six treatment groups: control with normal saline, lutein (200 mg/kg), vancomycin (250 mg/kg), vancomycin (500 mg/kg), vancomycin (250 mg/kg) with lutein, and vancomycin (500 mg/kg) with lutein groups; they were euthanized after 7 days of treatment. Thereafter, samples of blood, urine, and kidney tissue of the mice were analyzed, followed by the determination of levels of N-acetyl-β-D-glucosaminidase (NAG) in the urine, renal creatine kinase; protein carbonyl, malondialdehyde, and caspase-3 in the kidney; and the expression of PPARγ, nuclear factor erythroid 2-related factor 2 (Nrf2), and nuclear factor-kappaB (NF-κB) in renal tissue. Results showed that the levels of protein carbonyl and malondialdehyde, and the activity of NAG, creatine kinase and caspase-3, were significantly increased in the vancomycin-treatment groups. Moreover, the levels of Nrf2 significantly decreased, while NF-κB expression increased. Lutein ameliorated these effects, and significantly increased PPARγ expression. Furthermore, it attenuated vancomycin-induced histological alterations such as, tissue necrosis and hypertrophy. Therefore, we conclude that lutein protects against vancomycin-induced renal injury by potentially upregulating PPARγ/Nrf2 expression in the renal tissues, and consequently downregulating the pathways: inflammation by NF-κB and apoptosis by caspase-3.
6.Corrigendum to: Protective effects of lutein against vancomycininduced acute renal injury in mice via upregulation of peroxisome proliferator-activated receptor gammauclear factor erythroid 2-related factor 2 and inhibition of nuclear factor-kappaB/ caspase 3
Promise M. EMEKA ; Sahibzada T. RASOOL ; Mohamed A. MORSY ; Mohamed I. HAIRUL ISLAM ; Muhammad S. CHOHAN
The Korean Journal of Physiology and Pharmacology 2021;25(5):495-
7. Allolobophora caliginosa coelomic fluid ameliorates gentamicin-induced hepatorenal toxicity in rats
Saad DAJEM ; Kareem MORSY ; Sara ALI ; Omar ABDELRADY ; Nouraldin SALAHALDIN ; Ahmed SOLIMAN ; Yasmin KAMAL ; Ammar ABDELAZIM ; Aya MOHAMED ; Kareem MORSY ; Ayman MOHAMED ; Sohair FAHMY
Asian Pacific Journal of Tropical Biomedicine 2020;10(9):411-416
Objective: To explore the efficacy of earthworm's coelomic fluid against gentamicin-induced hepatic and renal toxicity in rats. Methods: The animals were divided randomly into three groups (n = 6 per group): control, gentamicin, and Allolobophora caliginosa coelomic fluid-treated groups. Toxicity was established after injection of gentamicin daily for 8 days at a dose of 100 mg/kg. Aspartate aminotransferase, alanine aminotransferase, alkaline phosphatase, total proteins, albumin, creatinine, urea, uric acid, malondialdehyde, glutathione, catalase and histopathology of tissues were investigated in the study. Results: Allolobophora caliginosa coelomic fluid significantly decreased urea, creatinine, uric acid, alanine aminotransferase, aspartate aminotransferase, alkaline phosphatase, and malondialdehyde levels while significantly increasing levels of total proteins, albumin, glutathione and catalase. The histopathological investigation showed partial restoration of renal and hepatic architecture. Conclusions: This study shows the potency of Allolobophora caliginosa coelomic fluid in improving the biochemical and histopathological changes induced by gentamicin in the liver and kidney of the rats.