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Mohd. Rashid Khan Shabeena Siddiqui Kehkashan Parveen Saleem Javed Sandhya Diwakar Waseem A. Siddiqui 《Chemico-biological interactions》2010,186(2):228-238
Industrial and occupational exposure to chromium compounds, particularly hexavalent chromium (Cr(VI))-containing compounds are often known to cause acute renal injury (ARI) in humans and animals. Its nephrotoxicity is associated with an increased formation of reactive oxygen species and lipid peroxidation in renal tissue. Recent studies suggest that antioxidants of the vitamin E family have protective effects against metal toxicity. Tocotrienols are known to have greater antioxidant activity than tocopherols and protect more efficiently against some free radical-related diseases than does tocopherols. In the present study, ARI induced by potassium dichromate (K2Cr2O7) has been used as a model to investigate the possible nephroprotective effect of tocotrienol-rich fraction (TRF) from palm oil. Wistar male rats having an average body weight (bw) of 210 g were divided into four groups. The first group was taken as control and injected with vehicle alone while the second group was drug control and ingested with TRF (200 mg/kg, bw, orally, once daily for 21 days); the third group served as toxicant and was pre-treated with saline, followed by a single subcutaneous (SC) injection of K2Cr2O7 (15 mg/kg bw). The fourth group was pre-treated with TRF and subsequently injected with K2Cr2O7 (same dose as for the third group). Renal functions, oxidative and nitrosative stress were evaluated on days 0, 1, 2, 4, 7, 11 and 14 after treatment with K2Cr2O7. The results revealed altered proximal tubular function; decreased glomerular filtration accompanied by oxidative damage 48 h after exposure to dichromate; while in the TRF-treated group proximal reabsorptive function, glomerular function and the cellular redox status were sustained. These results were further supported and confirmed by histological findings. The study suggests that TRF is effective in preventing K2Cr2O7-induced acute renal injury, but more studies are needed to confirm the effects of TRF as a nephroprotective agent. 相似文献
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505.
Permeabilizing soybean protoplasts to macromolecules using electroporation and hypotonic shock
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The percentage of soybean cell culture protoplasts permeabilized by electroporation was dependent on the voltage and the number of successive pulses that were applied. Best results were obtained with two 50 milliseconds, 400 volts per centimeter pulses after which 78% of the surviving protoplasts had been permeabilized to the fluorescent dye calcein. Quantitation of the volume of extracellular fluid taken up was performed using radioactive inulin (molecular weight 5000-5500). Typically between 20 and 40 nanoliters of fluid was taken up by 106 protoplasts. Electroporation and hypotonic shock treatments (M Saleem, AJ Cutler 1986 J Plant Physiol 124: 11-21) were compared with respect to the volume of fluid taken up under optimum conditions. Electroporation produced 10 times more uptake than hypotonic shock treatment. In all experiments there was a direct relationship between the number of protoplasts lysed and both the amount of fluid taken up and the percentage of surviving protoplasts that were permeabilized. 相似文献
506.
Adrian J. Cutler Mohammed Saleem Maxine A. Coffey Mary K. Loewen 《Plant Cell, Tissue and Organ Culture》1989,18(1):113-127
Cereal leaf protoplasts are often extremely unstable in culture and usually lyse within 24 hours. Using the thiobarbituric acid test and the ferrous thiocyanate test we have shown that corn (Zea mays L. cv. Market Beauty) and wheat (Triticum aestivum L. cv. Benito) leaf protoplasts accumulate peroxides and peroxide degradation products during culture. This increase correlated with an increase in lipoxygenase activity. On the other hand, enzymes involved in detoxification of peroxides such as catalase and peroxidase decreased during culture. The occurrence of lipid peroxidation in leaf protoplasts is likely to be a consequence of a temporary imbalance in the enzymes involved in oxygen metabolism. It has previously been shown that the lipoxygenase inhibitor n-propyl gallate stabilizes the protoplasts in culture and so peroxidation is likely to be the cause of leaf protoplast instability. Protoplasts obtained from suspension cultures are stable in culture and do not undergo lipid peroxidation. This stability is due to a decrease in lipoxygenase activity and increases in catalase and peroxidase activity after protoplast isolation.Abbreviations MDA
malonaldehyde
- 2,4-D
2,4-dichlorophenoxyacetic acid
- PVP
polyvinylpolypyrrolidone
Dedicated to Dr. Friedrich Constabel on the occasion of his 60th birthday 相似文献
507.
Saleem Muhammad Hamzah Mfarrej Manar Fawzi Bani Alatawi Aishah Mumtaz Sahar Imran Muhammad Ashraf Muhammad Arslan Rizwan Muhammad Usman Kamal Ahmad Parvaiz Ali Shafaqat 《Journal of Plant Growth Regulation》2023,42(3):2053-2072
Journal of Plant Growth Regulation - Soil contamination with toxic heavy metals [such as arsenic (As)] is becoming a serious global problem due to rapid development of social economy. Silicon (Si),... 相似文献
508.
James Cullen Azeem Saleem Ric Swindell Paul Burt Chris Moore 《Biomedical signal processing and control》2010,5(1):32-36
As cancer therapy becomes more effective, allowing patients to live longer, the long-term morbidity of treatment assumes greater significance. Trastuzumab (Herceptin®), a monoclonal antibody that targets the epidermal growth factor, has proven efficacy in breast cancer patients but is also known to be cardiotoxic. Left ventricular ejection fraction (LVEF), a measure of cardiac function, is commonly used to evaluate patients receiving trastuzumab by Multiple Gated Acquisition (MUGA) isotope scans. In this paper, we have assessed the utility of previously published ventricular synchrony parameters in patients undergoing trastuzumab therapy. In addition, we apply Approximate Entropy (ApEn) to MUGA images, as a new measure of cardiac dysfunction and have evaluated its utility in the same patients. A significant change in LVEF (p = 0.015) and ApEn (p = 0.020) but not ventricular synchrony measures were observed over the course of treatment in these patients. The results suggest that ApEn provides a useful measure of cardiac function and synchrony. 相似文献
509.
Saleem RA Knoblach B Mast FD Smith JJ Boyle J Dobson CM Long-O'Donnell R Rachubinski RA Aitchison JD 《The Journal of cell biology》2008,181(2):281-292
Reversible phosphorylation is the most common posttranslational modification used in the regulation of cellular processes. This study of phosphatases and kinases required for peroxisome biogenesis is the first genome-wide analysis of phosphorylation events controlling organelle biogenesis. We evaluate signaling molecule deletion strains of the yeast Saccharomyces cerevisiae for presence of a green fluorescent protein chimera of peroxisomal thiolase, formation of peroxisomes, and peroxisome functionality. We find that distinct signaling networks involving glucose-mediated gene repression, derepression, oleate-mediated induction, and peroxisome formation promote stages of the biogenesis pathway. Additionally, separate classes of signaling proteins are responsible for the regulation of peroxisome number and size. These signaling networks specify the requirements of early and late events of peroxisome biogenesis. Among the numerous signaling proteins involved, Pho85p is exceptional, with functional involvements in both gene expression and peroxisome formation. Our study represents the first global study of signaling networks regulating the biogenesis of an organelle. 相似文献
510.
A large number of the human microRNAs target lentiviruses, retroviruses, and endogenous retroviruses
Hakim ST Alsayari M McLean DC Saleem S Addanki KC Aggarwal M Mahalingam K Bagasra O 《Biochemical and biophysical research communications》2008,369(2):357-362
Retroelements (including transposons, retrotransposons, retroviruses, and lentiviruses) make up a significant portion of eukaryotic genomes. Given their ability to mutate genes these mobile elements always present a threat to the integrity of the host genomes. Recent studies have revealed complex molecular mechanisms that silence the mutagenic ability of these RE as well strategically express the pieces of the incorporated RE that are utilized to silence human endogenous retroviruses (HERVs) or invading exogenous retroviruses (IERV). We have hypothesized that small endogenous RNA originally evolved to quell “foreign” IERV-genes and subsequently emerged into elaborate silencing systems that include RNA interference, miRNA-based gene regulation and other gene silencing mechanisms. Here, we present evidence that the replication of complex RE are most likely silenced or regulated by homologous miRNA that are found as a part of the cellular repertoire. We analyzed Homo sapiens miRNAs for possible target genetic sequences in selected HERVs and IERV found in humans and other large primates. We identified several miRNAs that have >80% sequence homology with human HERVs; -L, -W, and -K, and IERV like SIVcpz, HTLV-1, and HTLV-2. We found an inverse correlation between the numbers and relative degree of homology of miRNAs to the relative replication capacity of a specific RE. Therefore, larger numbers of miRNAs with greater degree of homology are found against the least active RE and the least numbers of miRNAs with smaller degree of homology are found against the most active RE (i.e. HERV-K). Implications of these observations in RE disease and therapy are discussed. 相似文献