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41.
Farrukh Sobia Shahazad Niwazi Qurashi Khalid Yasir Ghailan 《Saudi Journal of Biological Sciences》2021,28(9):5408
This study was intended to identify the genes responsible for ESBL- and carbapenemase-producing bacterial isolates obtained from Jizan region. A hospital-based cross-sectional study was conducted over a period of 3 months (15th November 2018–15th February 2019). Fifty non-duplicate, 3rd-generation cephalosporin and carbapenem-resistant isolates were collected from microbiology lab of a tertiary care hospital in Jizan province and were screened for ESBLs and MBLs by phenotypic methods (CDT). The positive isolates (by phenotypic method) were then scanned for the presence of blaESBLs and blaNDM-1 genes, respectively, by PCR.As a result, 10% isolates showed imipenem-cephalosporin co-resistance whereas 92% (46/50) of isolates were found to be ESBL producers by CDT. The maximum occurrence was observed for blaCTX-M (70%), followed by blaSHV (16%) and least occurrence was noted for blaTEM (12%). Moreover, 97% isolates (34/35) were of blaCTX-MGroup1 but one isolate showed the presence of blaCTX-M Group26. Despite the co-resistance of cephalosporin and carbapenem, 14% (7/50) were found to be MBL producer on phenotypic detection by Combination Disc Test (CDT), whereas all the isolates were found to be negative for blaNDM-1. Hence blaCTX-MGroup1 is present in quite high fraction followed by blaSHV in the bacterial isolates of Jizan region. Moreover, the occurrence of blaCTX-M Group1 and blaCTX-M Group26 in clinical isolates from the Jizan region of Saudi Arabia has been reported for the first time. 相似文献
42.
Modified-release multiple-unit tablets of loratadine and pseudoephedrine hydrochloride with different release profiles were
prepared from the immediate-release pellets comprising the above two drugs and prolonged-release pellets containing only pseudoephedrine
hydrochloride. The immediate-release pellets containing pseudoephedrine hydrochloride alone or in combination with loratadine
were prepared using extrusion–spheronization method. The pellets of pseudoephedrine hydrochloride were coated to prolong the
drug release up to 12 h. Both immediate- and prolonged-release pellets were filled into hard gelatin capsule and also compressed
into tablets using inert tabletting granules of microcrystalline cellulose Ceolus KG-801. The in vitro drug dissolution study conducted using high-performance liquid chromatography method showed that both multiple-unit capsules
and multiple-unit tablets released loratadine completely within a time period of 2 h, whereas the immediate-release portion
of pseudoephedrine hydrochloride was liberated completely within the first 10 min of dissolution study. On the other hand,
the release of pseudoephedrine hydrochloride from the prolonged release coated pellets was prolonged up to 12 hr and followed
zero-order release kinetic. The drug dissolution profiles of multiple-unit tablets and multiple-unit capsules were found to
be closely similar, indicating that the integrity of pellets remained unaffected during the compression process. Moreover,
the friability, hardness, and disintegration time of multiple-unit tablets were found to be within BP specifications. In conclusion,
modified-release pellet-based tablet system for the delivery of loratadine and pseudoephedrine hydrochloride was successfully
developed and evaluated. 相似文献
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Crataegus azarolus var. sharania from Dohuk, Iraq is described as a new variety new to science. Morphological characteristics of twig, leaf, inflorescence, and infructescence are studied. Chromosome counting proved to be N= X=17. Results are compared with that of local varieties of C. azarolus. 相似文献
46.
Arti Tripathi Pooja C. Dewan Shahbaz A. Siddique Raghavan Varadarajan 《The Journal of biological chemistry》2014,289(7):4191-4205
Toxin-antitoxin systems are ubiquitous in nature and present on the chromosomes of both bacteria and archaea. MazEF is a type II toxin-antitoxin system present on the chromosome of Escherichia coli and other bacteria. Whether MazEF is involved in programmed cell death or reversible growth inhibition and bacterial persistence is a matter of debate. In the present work the role of MazF in bacterial physiology was studied by using an inactive, active-site mutant of MazF, E24A, to activate WT MazF expression from its own promoter. The ectopic expression of E24A MazF in a strain containing WT mazEF resulted in reversible growth arrest. Normal growth resumed on inhibiting the expression of E24A MazF. MazF-mediated growth arrest resulted in an increase in survival of bacterial cells during antibiotic stress. This was studied by activation of mazEF either by overexpression of an inactive, active-site mutant or pre-exposure to a sublethal dose of antibiotic. The MazF-mediated persistence phenotype was found to be independent of RecA and dependent on the presence of the ClpP and Lon proteases. This study confirms the role of MazEF in reversible growth inhibition and persistence. 相似文献
47.
Ethanol modulates the VR-1 variant amiloride-insensitive salt taste receptor. II. Effect on chorda tympani salt responses
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Lyall V Heck GL Phan TH Mummalaneni S Malik SA Vinnikova AK Desimone JA 《The Journal of general physiology》2005,125(6):587-600
The effect of ethanol on the amiloride- and benzamil (Bz)-insensitive salt taste receptor was investigated by direct measurement of intracellular Na(+) activity ([Na(+)](i)) using fluorescence imaging in polarized fungiform taste receptor cells (TRCs) and by chorda tympani (CT) taste nerve recordings. CT responses to KCl and NaCl were recorded in Sprague-Dawley rats, and in wild-type (WT) and vanilloid receptor-1 (VR-1) knockout mice (KO). CT responses were monitored in the presence of Bz, a specific blocker of the epithelial Na(+) channel (ENaC). CT responses were also recorded in the presence of agonists (resiniferatoxin and elevated temperature) and antagonists (capsazepine and SB-366791) of VR-1 that similarly modulate the Bz-insensitive VR-1 variant salt taste receptor. In the absence of mineral salts, ethanol induced a transient decrease in TRC volume and elicited only transient phasic CT responses. In the presence of mineral salts, ethanol increased the apical cation flux in TRCs without a change in volume, increased transepithelial electrical resistance across the tongue, and elicited CT responses that were similar to salt responses, consisting of both a phasic component and a sustained tonic component. At concentrations <50%, ethanol enhanced responses to KCl and NaCl, while at ethanol concentrations >50%, those CT responses were inhibited. Resiniferatoxin and elevated temperature increased the sensitivity of the CT response to ethanol in salt-containing media, and SB-366791 inhibited the effect of ethanol, resiniferatoxin, and elevated temperature on the CT responses to mineral salts. VR-1 KO mice demonstrated no Bz-insensitive CT response to NaCl and no sensitivity to ethanol. We conclude that ethanol increases salt taste sensitivity by its direct action on the Bz-insensitive VR-1 variant salt taste receptor. 相似文献
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49.
Harish Chandra Pal Samriti Sharma Leah Ray Strickland Santosh K. Katiyar Mary E. Ballestas Mohammad Athar Craig A. Elmets Farrukh Afaq 《PloS one》2014,9(1)
Malignant melanoma is responsible for approximately 75% of skin cancer-related deaths. BRAF plays an important role in regulating the mitogen-activated protein kinase (MAPK) signaling cascade in melanoma with activating mutations in the serine/threonine kinase BRAF occurring in 60–70% of malignant melanomas. The BRAF-MEK-ERK (MAPK) pathway is a key regulator of melanoma cell invasion. In addition, activation of NFκB via the MAPK pathway is regulated through MEK-induced activation of IKK. These pathways are potential targets for prevention and treatment of melanoma. In this study, we investigated the effect of fisetin, a phytochemical present in fruits and vegetables, on melanoma cell invasion and epithelial-mesenchymal transition, and delineated the underlying molecular mechanism. Treatment of multiple human malignant melanoma cell lines with fisetin (5–20 µM) resulted in inhibition of cell invasion. BRAF mutated melanoma cells were more sensitive to fisetin treatment, and this was associated with a decrease in the phosphorylation of MEK1/2 and ERK1/2. In addition, fisetin inhibited the activation of IKK leading to a reduction in the activation of the NFκB signaling pathway. Treatment of cells with an inhibitor of MEK1/2 (PD98059) or of NFκB (caffeic acid phenethyl ester) also reduced melanoma cell invasion. Furthermore, treatment of fisetin promoted mesenchymal to epithelial transition in melanoma cells, which was associated with a decrease in mesenchymal markers (N-cadherin, vimentin, snail and fibronectin) and an increase in epithelial markers (E-cadherin and desmoglein). Employing three dimensional skin equivalents consisting of A375 cells admixed with normal human keratinocytes embedded onto a collagen-constricted fibroblast matrix, we found that treatment of fisetin reduced the invasive potential of melanoma cells into the dermis and increased the expression of E-cadherin with a concomitant decrease in vimentin. These results indicate that fisetin inhibits melanoma cell invasion through promotion of mesenchymal to epithelial transition and by targeting MAPK and NFκB signaling pathways. 相似文献
50.
Hanif Sajid Saleem Muhammad Farrukh Sarwar Muhammad Irshad Muhammad Shakoor Abdul Wahid Muhammad Ashfaq Khan Haroon Zaman 《Journal of Plant Growth Regulation》2021,40(1):305-312
Journal of Plant Growth Regulation - Abiotic stresses are the prime coercion to sustainable crop production in changing climate scenario. Heat and drought stresses at reproductive as well as... 相似文献