Skip to main content

Camel whey protein improves oxidative stress and histopathological alterations in lymphoid organs through Bcl-XL/Bax expression in a streptozotocin-induced type 1 diabetic mouse model

Research Abstract
Type I diabetes (T1D) is a characterized by the inflammation of pancreatic islets and destruction of β cells. Long and persistent uncontrolled diabetes tends to degenerate the immune system and increase the incidence of infections in diabetic individuals. Most serious diabetic complications are mediated by the free radicals, which damage multiple cellular components through direct effects of the cell cycle regulatory proteins. Camel whey protein (CWP) has antioxidant activity and decreases the effects of free radicals. However, the effects of CWP on lymphoid organs have not been studied in the context of diabetes. Therefore, the present study was designed to investigate the dietary influence of CWP supplementation on the lymphoid organs in streptozotocin (STZ)-induced type 1 diabetic mouse model. Three experimental groups were used: non diabetic control mice, diabetic mice, and diabetic mice treated with CWP. Induction of diabetes was associated with a marked reduction in glutathione (GSH) levels; decreased activities of GSH peroxidase (GSH Px), manganese superoxide dismutase (MnSOD) and catalase; increased reactive oxygen species (ROS) levels and iNOS activity in plasma and lymphoid organs. Furthermore, diabetic mice exhibited alterations in the expression of Bax and Bcl-XL, and subsequently pathological alterations in the architecture of the bone marrow, pancreas, thymus, and spleen. Interestingly, treatment of diabetic mice with CWP robustly restored glucose, insulin, GSH, and ROS levels and the activities of GSH Px, MnSOD, catalase and iNOS. Additionally, supplementation of diabetic mice with CWP improvement in the architecture of lymphoid tissues and rescued from apoptosis through direct effects on the Bax and Bcl-XL proteins. These data revealed the therapeutic potential of CWP against diabetic complications mediated damages of lymphoid organs.
Research Authors
Leila H. Sayed, Gamal Badr, Hossam M. Omar, Ali M. Abd El-Rahim, Mohamed H. Mahmoud
Research Journal
Biomedicine and Pharmacotherapy
Research Pages
542–552
Research Publisher
Elsevier
Research Rank
1
Research Vol
88
Research Website
http://www.sciencedirect.com/science/article/pii/S0753332216320194
Research Year
2017

Bee Venom Accelerates Wound Healing in Diabetic Mice by Suppressing Activating Transcription Factor-3 (ATF-3) and Inducible Nitric Oxide Synthase (iNOS)-Mediated Oxidative Stress and Recruiting Bone Marrow-Derived Endothelial Progenitor Cells.

Research Abstract
Multiple mechanisms contribute to impaired diabetic wound healing including impaired neovascularization and deficient endothelial progenitor cell (EPC) recruitment. Bee venom (BV) has been used as an anti-inflammatory agent for the treatment of several diseases. Nevertheless, the effect of BV on the healing of diabetic wounds has not been studied. Therefore, in this study, we investigated the impact of BV on diabetic wound closure in a type I diabetic mouse model. Three experimental groups were used: group 1, non-diabetic control mice; group 2, diabetic mice; and group 3, diabetic mice treated with BV. We found that the diabetic mice exhibited delayed wound closure characterized by a significant decrease in collagen production and prolonged elevation of inflammatory cytokines levels in wounded tissue compared to control non-diabetic mice. Additionally, wounded tissue in diabetic mice revealed aberrantly up-regulated expression of ATF-3 and iNOS followed by a marked elevation in free radical levels. Impaired diabetic wound healing was also characterized by a significant elevation in caspase-3, -8 and -9 activity and a marked reduction in the expression of TGF-β and VEGF, which led to decreased neovascularization and angiogenesis of the injured tissue by impairing EPC mobilization. Interestingly, BV treatment significantly enhanced wound closure in diabetic mice by increasing collagen production and restoring the levels of inflammatory cytokines, free radical, TGF-β and VEGF. Most importantly, BV-treated diabetic mice exhibited mobilized long-lived EPCs by inhibiting caspase activity in the wounded tissue. Our findings reveal the molecular mechanisms underlying improved diabetic wound healing and closure following BV treatment. This article is protected by copyright. All rights reserved.
Research Authors
Gamal Badr, Hozzein WN, Badr BM, Al Ghamdi A, Saad Eldien HM, Garraud O.
Research Journal
Journal of Cellular Physiology
Research Pages
10-18
Research Publisher
Wiley
Research Rank
1
Research Vol
11(1)
Research Website
http://www.ncbi.nlm.nih.gov/pubmed/26825453
Research Year
2016

Haematological Parameters and Cellular Immune
Response Associated with Administration of Polyvalent Schistosomamansoni Vaccine in Mice

Research Abstract
Schistosomasis is one of the most tropical neglected diseases (NTDs), which have very complex antigenically different life stages. So that studying the effect of each antigen on cellular immune response is required. Three schistosomal antigens were used CAP, SEA and SWAP separately in vivo. Blood parameters and lymphocytes blastogenesis were evaluated. The most changes were reported in WBCs and differential cells with maximum immune response after 33 dpv in CAP and 47 dpv in SEA and SWAP. These changes reflected the defense and cellular immune response for each antigen.
Research Authors
Abdel-Hakeem1, S.S. Abdel-Zaher2, M., Abed1, G. H.
Research Journal
International Journal of Science and Research (IJSR) ISSN (Online)
Research Pages
pp. 1 - 8
Research Publisher
NULL
Research Rank
1
Research Vol
Vol. 5 - Issue. 12
Research Website
NULL
Research Year
2016

Possible Protective Effects of Quercetin and Sodium Gluconate Against Colon Cancer Induction by Dimethylhydrazine in Mice.

Research Abstract
Micronutrients in food have been found to have chemopreventive effects, supporting the conclusions from epidemiologie studies that consumption of fresh fruits and vegetables reduces cancer risk. The present study was carried out to evaluate the role of querctin (Q) and sodium gluconate (GNA) supplementation separately or in combination in ameliorating promotion of colon tumor development by dimethyl-hydrazine (DMH) in mice. Histopathological observation of colons in mice treated with DMH showed goblet cell dysplasia with inlammatory cell iniltration. This pathological inding was associated with signiicant alteration in oxidative stress markers in colon tissues and carcinoembryonic antigen (CEA) levels in plasma. Mice co-treated with GNA and Q showed mild changes of absorptive and goblet cells and inlammatory cell iniltration in lamina properia, with improvement in oxidative stress markers. In conclusion, indings of the present study indicate signiicant roles for reactive oxygen species (ROS) in pathogenesis of DMH-induced colon toxicity and initiation of colon cancer. Also, they suggest that Q, GNA or the combination of both have a positive beneicial effect against DMH induced colonic cancer induction in mice.
Research Authors
TH Saleem
AM Attya
EA Ahmed
SMM Ragab
MA Ali Abdallah
HM Omar
Research Journal
Asian Pacific Journal of Cancer Prevention
Research Pages
5823-5828
Research Publisher
NULL
Research Rank
1
Research Vol
16
Research Website
NULL
Research Year
2015

Histological and physiological studies on flowering and fruiting of some peach
cultivars under Assiut environment.

Research Abstract
NULL
Research Authors
S.Z. El-Agamy; A.M. El-Salhy; T.R. Mohamed and M.M. El-Wasfy
Research Journal
Egyptian Journal of Horticulture
Research Pages
167-186
Research Publisher
NULL
Research Rank
2
Research Vol
29 (1)
Research Website
NULL
Research Year
2002

Pyrene degrading Achromobacter denitrificans ASU-035: growth
rate, enzymes activity, and cell surface properties

Research Abstract
The use of bacteria is a good method for biodegradation of polycyclic aromatic hydrocarbons due to their fast-growing and cost effectiveness. Bacteria can completely mineralize such toxic compounds to harmless by-products. ASU-035 is a bacterial strain, which was isolated from oil contaminated soil. It was identified as Achromobacter denitrificans on the basis of the nucleotide sequence of 16S rRNA gene, and deposited in GenBank under accession number KC342253. Achromobacter denitrificans have been tested for utilization of pyrene as a sole source of carbon and energy. Some pyrene degradative enzymes and ability of this strain for biosurfactants production have been studied. The results illustrated that the strain could utilize 76.5 mg/L of pyrene (100 mg/L) within 18 days with growth rate and mean generation time 0.033 h-1 and 30.3 h, respectively. The maximum specific activities (U/mg protein) of pyrene dioxygenase, catechol 1,2 dioxygenase (C12O), and catechol 2,3 dioxygenase (C23O) were 0.78 ± 0.12, 0.41 ± 0.05, and 0.2 ± 0.01, respectively. Achromobacter denitrificans could enhance the bioavailability of pyrene to get use of it as a sole carbon source by increasing the emulsification activity to 11.5 ± 2.1 U/mg proteins and cell-surface hydrophobicity to 39 ± 1.3 %.
Research Authors
Asmaa M. M. Mawad , Abd El-Latif Hesham , Yasser M. Mostafa and Ahmed Shoriet
Research Journal
Rendiconti Lincei
Research Pages
PP.557–563
Research Publisher
NULL
Research Rank
1
Research Vol
Vol.27,No.3
Research Website
NULL
Research Year
2016

A kernel-based method for fast and accurate computation of PHT in polar coordinates

Research Abstract
A novel kernel-based method is proposed for fast, highly accurate and numerically stable computations of polar harmonic transforms (PHT) in polar coordinates. Euler formula is used to derive a novel trigonometric formula where the later one is used in the kernel generation. The simplified radial and angular kernels are used in efficient computation PHTs. The proposed method removes the numerical approximation errors involved in conventional methods and provides highly accurate PHTs coefficients which results in highly improved image reconstruction capabilities. Numerical experiments are performed where the results are compared with those of the recent existing methods. In addition to the tremendous reduction in computational times, the obtained results of the proposed method clearly show a significant improvement in rotational invariance.
Research Authors
Khalid M Hosny, Mohamed M Darwish
Research Journal
Journal of Real-Time Image Processing
Research Pages
NULL
Research Publisher
NULL
Research Rank
1
Research Vol
1-13
Research Website
NULL
Research Year
2016

Response of Maize to the Integrated Use of Date Palm Compost and Mineral-N Fertilizer

Research Abstract
The study aimed to assess the effect-combined use different of date palm composts amended with ligno-cellulolytic fungi and mineral-N on growth and N, P and K-uptake of maize plants in sandy calcareous soil. Each type of compost was applied either in organic form in dose equivalent to 100% of N fertilization (285 kg ha-1) or in organic form in combination with mineral-N (50% for each). The experiment was constructed in a complete randomized block design (CRBD). Results showed that plant height and dry weight of shoot and root of maize significantly increased as a result of the combined use of compost with mineral-N (1:1, w:w). All types of composts combined with half-dose of mineral-N was effective, however, compost that contained with Aspergillus niger + A. subsessilis + Trichoderma lanuginosus + Bacillus sp. was the best. This type of fertilization increased N-uptake shoot and root of maize more than mineral N-fertilizer by 39.73%-49%. Inaddition, the P-uptake by shoot and root of maize increased by 58.82%-156%. The addition of compost treatments to the soil increased the total N, P and K after harvesting. Regression analysis showed positive and significant linear correlation between the application rate of compost and the availability of P and K in soil.
Research Authors
M Hashem, MMM Ahmed, Khayria M Abdel Gawad, Omaima Abdel Monsef
Research Journal
International Journal of Plant & Soil Science
Research Pages
34-39
Research Publisher
NULL
Research Rank
1
Research Vol
2
Research Website
http://www.sciencedomain.org/
Research Year
2016

A Preliminary Application Study to Measure the Suitability of Two Major Carbonate Reserves (Sad El-Na'am and Umm Rassiess Mountains) in the Cement Industry: An Example From Northeastern Desert, Egypt

Research Abstract
In the last years, a considerable amount of attention has been devoted to the development of the area of northwest of the Gulf of Suez. It is one of the most important areas, which takes considerable attention by the Egyptian government because it hosts one of the MEGA National projects in Egypt. The area presents a great potential for development programs including touristic resorts, industrial zones, a new port and finally the great new second Suez Canal which has been started the implementation in the last quarter of 2014. The water resources in this area play an increasing important role in providing a source of potable water for land reclamation and construction of new settlements. The proposed area forms a part of the great Eocene plateau of the northeastern Desert of Egypt. Two major limestone sections have been selected to evaluate the suitability of the Eocene limestone in Cement Industry. The first section represents the carbonate sequence of Gabal Sad El-Na'am exposed at Bir Gindali district. The second one is measured at Gabal Umm Rassiess. The main purpose of this study is to investigate the suitability of both sections in Cement Industry by creating specific geochemical analyses. By using these geochemical analyses with other parameters, it will be able to determine whether, Gabal Sad El-Na'am or Umm Rassiess is valid in Cement Industry.
Research Authors
Nageh A. Obaidalla, Abdalla M. El Ayyat, Hassan Soltan Hassan & Ayman Abdel-Aal
Research Journal
Journal of Environmental Science, Computer Science and
Engineering & Technology
Research Pages
673-679
Research Publisher
E-ISSN, 2278-179X. Country, India.
Research Rank
1
Research Vol
Sec. A; Vol.4.No.3,
Research Website
www.jecet.org
Research Year
2015

Retina damage after exposure to UVA radiation on
the early developmental stages of the Egyptian
toad Bufo regularis Reuss

Research Abstract
The present study was carried out to investigate the histological and histochemical changes in the retina on different developmental stages of Egyptian toad Bufo regularis. Our experiment started when tadpoles begin to feed. The adapted embryos are divided into 3 large tanks of 200 embryos each, collections of samples started from feeding age every three days. Both histological and histochemical results showed that the general architecture of the retina organ is correlated with the state of development. Therefore, it displayed different characteristic features depending on the investigated developmental stage starting from the larval stage (feeding began, stage 44) and ending with the postmetamorphic stage 66. Also, the present work aimed to study the chronic effects of UVA on the retina structure of B. regularis during development and metamorphosis for the first time
Research Authors
Alaa El-Din H. Sayed a,*
, Ekbal T. Wassif a
, Afaf I. Elballouz
Research Journal
Journal of Radiation Research and Applied
Sciences
Research Pages
1-15
Research Publisher
ElSevier
Research Rank
1
Research Vol
xxx
Research Website
http://ac.els-cdn.com/S1687850716300231/1-s2.0-S1687850716300231-main.pdf?_tid=b7d00a4c-638a-11e6-8c12-00000aab0f6b&acdnat=1471335992_4c94391e36807765f59d3dc4e949e550
Research Year
2016
Subscribe to