PubMed Health⌕ Search

Biomedical subjects

A M Saleh

Publications and source records attributed to A M Saleh.

At least 19 recordsLinked to original sources

Paraoxon induces apoptosis in EL4 cells via activation of mitochondrial pathways.

The toxicity of organophosphorus compounds, such as paraoxon (POX), is due to their anticholinesterase action. Recently, we have shown that, at noncholinergic doses (1 to 10 nM), POX (the bioactive metabolite of parathion) causes apoptotic cell death in murine EL4 T-lymphocytic leukemia cell line through activation of caspase-3. In this study, by employing caspase-specific inhibitors, we extend our observations to elucidate the sequence of events involved in POX-stimulated apoptosis. Pretreatment of EL4 cells with the caspase-9-specific inhibitor zLEHD-fmk attenuated POX-induced apoptosis in a dose-dependent manner, whereas the caspase-8 inhibitor zIETD-fmk had no effect. Furthermore, the activation of caspase-9, -8, and -3 in response to POX treatment was completely inhibited in the presence of zLEHD-fmk, implicating the involvement of caspase 9-dependent mitochondrial pathways in POX-stimulated apoptosis. Indeed, under both in vitro and in vivo conditions, POX triggered a dose- and time-dependent translocation of cytochrome c from mitochondria into the cytosol, as assessed by Western blot analysis. Investigation of the mechanism of cytochrome c release revealed that POX disrupted mitochondrial transmembrane potential. Neither this effect nor cytchrome c release was dependent on caspase activation, since the general inhibitor of the caspase family zVAD-fmk did not influence both processes. Finally, POX treatment also resulted in a time-dependent up-regulation and translocation of the proapoptotic molecule Bax to mitochondria. Inhibition of this event by zVAD-fmk suggests that the activation and translocation of Bax to mitochondria is subsequent to activation of the caspase cascades. The results indicate that POX induces apoptosis in EL4 cells through a direct effect on mitochondria by disrupting its transmembrane potential, causing the release of cytochrome c into the cytosol and subsequent activation of caspase-9. Inhibition of this specific pathway might provide a useful strategy to minimize organophosphate-induced poisoning.

Animals↗

Effect of malathion on apoptosis of murine L929 fibroblasts: a possible mechanism for toxicity in low dose exposure.

While acute organophosphorous compound poisoning due to inhibition of acetylcholinesterase is a well-established clinical entity, the existence of chronic poisoning due to exposure to low levels of organophosphorous compounds (below the threshold required for cholinergic clinical symptoms) is a hotly debated issue. In this study, we have evaluated the effects of noncholinergic doses of malathion (0.01-20 microM) on apoptosis of murine L929 fibroblasts. Employing flow cytometric and caspase activation analyses we demonstrate that malathion induces apoptosis in L929 cells in a dose- and time-dependent manner. The initiator caspases (caspase-8 and caspase-9) as well as the effector caspase (caspase-3) were activated by the treatment of L929 cells with malathion. Exposure of L929 cells to malathion in the presence of a general inhibitor of caspase, z-VAD-FMK abolished the apoptotic effect of the compound. In addition, malathion induced an increase in the expression of the pro-apoptotic protein p53. However, the induction of p53 expression was subsequent to activation of the caspase cascades. The present findings suggest, that the cytotoxicity of malathion at noncholinergic doses is mediated through caspase-dependent apoptosis.

Amino Acid Chloromethyl Ketones↗

Increase in neuronal nitric oxide synthase content of the gastroduodenal tract of diabetic rats.

This study examined the changes occurring in the pattern of distribution and expression of neuronal nitric oxide synthase (nNOS)-positive nerves in the gastroduodenal tract of streptozotocin-induced diabetic rats. The ganglion cells of the myenteric plexus of the gastric antrum of normal rats contain nNOS. We also observed nNOS-positive neurons and fibres in the myenteric plexus of the duodenum of normal rats. After the onset of diabetes, the number and intensity of staining of nNOS-positive nerve profiles in the gastric antrum and duodenum did not change significantly. However, Western blotting showed a significant increase in the expression of nNOS after the onset of diabetes. In conclusion, diabetes of 4 and 32 weeks duration induced an increase in the tissue content of nNOS in the gastroduodenum of rat. The increase in the level of nNOS in the gastroduodenum of diabetic rats may explain why impaired gastric emptying is common in patients with diabetes.

Animals↗

Metoclopramide protection of cholinesterase from paraoxon inhibition.

This study evaluated the protective effect of the benzamide compound metoclopramide (MCP) against inhibition by paraoxon (POX) as assessed by red blood cell acetylcholinesterase (RBC-AChE) activity. Three groups of 6 rats each were used. All substances were applied ip daily for 5 d, followed by a 2-d rest. The 7-d cycle was repeated 6 times. Group 1 received 100 nM POX, Group 2 received 50 microM MCP. Group 3 received 100 nM POX + 50 microM MCP. Red blood cell acetylcholinesterase measurements were performed at base line and then after each 7-d cycle. Enzyme activities were compared using the Mann-Whitney rank order test. Metoclopramide conferred significant in vivo protection from inhibition of RBC-AChE by POX.

Acetylcholinesterase↗

Protective effect of folinic acid on low-dose methotrexate genotoxicity.

INTRODUCTION: Methotrexate (MTX) is an antineoplastic agent widely used in low dose to treat patients with rheumatoid arthritis (RA). Its side effects can partly be explained by folate antagonism. Folinic acid (Leucovorin) is generally administered with MTX to decrease MTX-induced toxicity. However information regarding the inhibitory effect of folinic acid against cytogenetic damage caused by MTX is limited. The aim of this study was to assess the protective effect of folinic acid against MTX-genotoxicity. METHODS: This study was done on Wistar albino rats and in patients with RA. Forty rats of both sexes were randomized into four equal groups and dosed in the following way: Group-I, distilled water vehicle; Group-II, 0.5 mg/kg folinic acid; Group-III, 0.5 mg/kg MTX; Group-IV, 0.5 mg/kg folinic acid plus 0.5 mg/kg MTX. Doses were given i.p., once daily for 8 consecutive days. A bone marrow chromosomal study and a micronucleus test were performed for each rat. Twenty patients with RA (5 males and 15 females) on a 10 mg weekly dose of MTX, i.m., for one month, were administered the same dose of MTX in addition to 10 mg of folinic acid as a single dose 4 hours after MTX administration, i.m., every week for another 4 weeks. Chromosomal studies as well as a micronucleus test were evaluated for each patient. RESULTS: MTX produced a significant genetic injury as proved by the increased incidence of chromosomal aberration and micronuclei formation in Group-III animals. Inversely, folinic acid (group IV) produced a significant protection against genetic damages induced by MTX. In RA patients, folinic acid provides satisfactory improvement of MTX-induced genetic damage. CONCLUSION: Folinic acid has a protective affect against MTX genotoxicity in human as well as in animal models.

Adult↗

Laparoscopy versus laparotomy management of tubal pregnancy.

OBJECTIVE: To compare laparoscopy versus laparotomy management of tubal pregnancy and the reproductive outcome. METHODS: A retrospective chart review of 81 patients admitted for management of tubal pregnancy was carried out at Riyadh Armed Forces Hospital from January 1998 until January 2000. The patients were divided according to surgical procedure performed into: Group I (33 patients) laparoscopy and group II (48 patients) laparotomy. We evaluated pre and postoperative serum b-human chorionic gonadotrophin levels, total operating time, total blood loss or blood transfusion or both, duration of hospital stay, recurrence rates of ectopic pregnancy and future fertility outcome for all patients. RESULTS: No differences were found between both groups in patient age, parity, size of adnexal mass, condition at the time of presentation, site of tubal pregnancy, previous history of ectopic, pre and postoperative serum b-human chorionic gonadotrophin and the total operating time. There were significant reductions of total blood loss, number of blood transfusion units, and duration of hospital stay, in the laparoscopic group compared to the laparotomy group. A total of 54 patients desired pregnancy, 23 patients in the laparoscopy and 31 patients in the laparotomy group. No significant differences were found in the fertility outcome between both groups. The rates of subsequent intrauterine pregnancy were 74% (17/23) in the laparoscopy group and 61%, (19/31) in the laparotomy group and the rates of subsequent ectopic pregnancy were 4% (1/23) in the laparoscopy group and 10% (3/31) in the laparotomy group. CONCLUSION: Laparoscopic treatment of ectopic pregnancy in hemodynamically stable patients offers major economic benefits superior to laparotomy in terms of less need for blood transfusion, shorter duration of hospital stay and convalescence.

Adolescent↗

Mechanism of H(+)-coupled formate transport in rabbit renal microvillus membranes.

It has been proposed that a major fraction of Cl- absorption in the mammalian proximal tubule occurs by Cl-/formate exchange across the apical membrane with recycling of formate by nonionic diffusion. The purpose of this study was to characterize the mechanism of formate recycling in rabbit renal microvillus membrane vesicles. Formate uptake was stimulated by an inside-alkaline pH gradient. When external pH (pH alpha) was varied at constant internal pH (pHi), the initial rate of formate uptake was less than predicted for nonionic diffusion of formic acid at constant formic acid permeability. When pHi was varied at constant pHi, the initial rate of formate uptake exhibited cooperative and saturable kinetics with respect to pHi, in contrast to the pHi independence predicted for nonionic diffusion. pH gradient-stimulated [14C]formate uptake was stimulated by internal formate, indicating formate/formate exchange. pH gradient-stimulated formate influx was sensitive to inhibition by 1 mM 4,4'-diisothiocyanostilbene-2, 2'-disulfonic acid but not by furosemide or hydroxycinnamate. We conclude that pH gradient-stimulated formate uptake takes place by a carrier-mediated process of H(+)-formate cotransport, OH-/formate exchange, or facilitated formic acid diffusion, rather than solely by passive nonionic diffusion through the lipid bilayer.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Electrophoretic polymorphism in rabbit tear lysozyme.

Rabbit tears were found to contain two lysozymes which differed in their electrophoretic mobility and were designated tear lysozymes 1 and 2. Rabbit tear lysozyme 1 was purified to homogeneity by conventional purification methods. It was found to be distinct from other known mammalian c-type lysozymes, rabbit tear lysozyme 2 and the major rabbit gastrointestinal lysozyme. The activity profile is centered around the neutral region with an optimum of 7 which is slightly lower than that for chicken lysozyme. The thermal stability as well as inhibition profiles by the substrate analogues, N-acetylglucosamine (NAG) and chitotetraose (NAG)4 are comparable to those of chicken lysozyme. Based on its molecular weight and catalytic properties this isozyme is classified as a c-type lysozyme.

Animals↗

Papillary immature metaplasia of the cervix: a distinct subset of exophytic cervical condyloma associated with HPV-6/11 nucleic acids.

A subset of exophytic cervical precursor lesions are composed of immature metaplastic cells that differ from conventional condylomata by the virtual absence of koilocytotic atypia and the presence of slender filiform papillae. We evaluated a series of exophytic cervical lesions containing this morphology for HPV nucleic acids and compared the associated HPV types with conventional exophytic condylomata of the cervix. Six of six exophytic condylomata and five of six papillary immature metaplasias (PIM), respectively, contained HPV type 6/11 by in situ hybridization. Subtyping of three PIM by polymerase chain reaction combined with direct sequencing revealed nucleic acid sequences consistent with HPV 6/11. PIM were distinguished from high-grade squamous intraepithelial lesions by the rarity of mitoses and by the uniformity of nuclear size and staining intensity with multiple chromocenters. However, these lesions tended to involve the more cephalad region of the cervical transformation zone, and three cases extended deeply into the endocervix with two requiring conization for a definitive diagnosis. Although their bland morphology and association with HPV 6/11 nucleic acids suggest a benign process, their location within the endocervical canal implies that these variants of condyloma may differ biologically from conventional exophytic condylomas of the cervix. The differential diagnosis of PIM and potential explanations for their distinctive morphology, are discussed.

Condylomata Acuminata↗

Intracellular H+ buffering power and its dependency on intracellular pH.

Intracellular hydrogen ion (H+) buffering power, conventionally defined as the amount of acid or base that would have to be introduced into the cell cytosol to decrease or increase ipH by one pH unit, is generally said to increase as intracellular pH (ipH) decreases. This implies that the cell has a lesser capability to resist acute acid or base perturbations at its steady state ipH than at any lower ipH. We re-examined this notion, reasoning that the logarithmic nature of the pH unit could limit the validity of the conventional expression of buffering power in imparting physiologic insight into the mechanisms of cellular H+ homeostasis. The mathematical derivation of the formula, delta i[NH4+]/delta ipH, conventionally used to estimate buffering power using the NH4Cl technique, revealed that this parameter is, by design, inversely proportional to the exponential of ipH. This a priori dependence on pH dictates an increase in buffering power with decreasing ipH, and thereby interferes with the assessment of the physiologic capability of the intracellular milieu to buffer protons at different ipH levels. To circumvent this problem, buffering power was defined as the amount of hydrogen ions that would have to be added to or removed from the cell to effect a change in the concentration of H+ in the cell cytosol of 1 mM (a term heretofore referred to as the cell H+ buffering coefficient). The mathematical derivation of the formula used to calculate the cell H+ buffering coefficient, delta i[NH4+]/delta[H+]i, does not suffer from an a priori dependence on ipH.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid-Base Equilibrium↗

Coexpression of the human papillomavirus type 16 E4 and L1 open reading frames in early cervical neoplasia.

Although the E4 open reading frame (ORF) of human papillomaviruses (HPV) encodes an abundant protein in cutaneous warts, the location and extent of HPV E4 expression in genital precancers, specifically those associated with HPV-16, has not been described. Expression plasmids (pATH) containing segments of the HPV-16 E4 (3401-3620) and L1 (6151-6792) open reading frames (ORFs) were induced and expressed in bacteria and the resulting fusion proteins were used to elicit antisera in rabbits. Antisera reacting to the E4 and L1 components of the fusion proteins were used to screen biopsies from 150 cervical precancers (cervical intraepithelial neoplasia) and condylomata. Six biopsies exhibiting specific immunostaining with the anti-E4 sera. Staining was cytoplasmic, and occurred virtually always in foci containing immunostaining for L1 proteins. Moreover, analysis of these 6 cases and 22 others for HPV-16 RNA by RNA-RNA in situ hybridization demonstrated a similar correlation between E4 immunostaining and the presence of abundant transcripts specific to HPV-16. These data are consistent with the hypothesis that expression of the HPV-16 E4 ORF is dependent upon viral replication and epithelial differentiation, similar to L1 expression, and that the E4 epitopes identified by the rabbit antisera may be unique to HPV-16 relative to other common cervical papillomaviruses.

Condylomata Acuminata↗

Kinetic properties of the Na+/H+ antiporter of lymphocytes from the spontaneously hypertensive rat: role of intracellular pH.

Enhanced activity of the Na+/H+ antiporter is increasingly reported as a feature of cells from hypertensive subjects but the intracellular pH (ipH) dependency of its activity has not been examined. This study was designed to characterize the kinetic properties of the Na+/H+ antiporter in lymphocytes from adult spontaneously hypertensive rats (SHR) and in those from age-matched normotensive Wistar-Kyoto (WKY) controls. Steady-state ipH, estimated from the measurement of BCECF fluorescence, was significantly lower in lymphocytes from the SHR than in those from WKY rats (7.09 +/- 0.02, n = 17 and 7.17 +/- 0.03, n = 19, respectively, P less than 0.025). The velocity of the antiporter determined from the product of the change in intracellular hydrogen ion concentration (i[H+]) by the buffering power measured concurrently at each starting ipH exhibited similar kinetic parameters in SHR and WKY cells: Vmax, 72 +/- 18 vs. 79 +/- 24 mM H+/30 s; pKH, 10.04 +/- 0.87 vs. 8.49 +/- 0.80; and Hill coefficient, 1.67 +/- 0.12 vs. 1.44 +/- 0.10, respectively. Likewise, no significant differences were observed between SHR and WKY cells in either the Km (29 +/- 5 and 32 +/- 8 mM, respectively) or the Vmax (6.0 +/- 1.0 and 5.53 +/- 1.0 mM H+/30 s, respectively) of the sodium activation curve. We conclude that while the ipH of SHR lymphocytes is reduced, the kinetic properties of the Na+/H+ antiporter are virtually identical in SHR and WKY lymphocytes. Consequently, a primary abnormality in the activity of this antiporter is not an inherent feature of lymphocytes from the SHR model of genetic hypertension. We propose that the activity of the Na+/H+ antiporter in SHR cells is apt to be increased as a result of reduction in ipH which dictates a higher set point in its steady-state activity.

Animals↗

Effects of hydrotropic agents on the solubility, precipitation, and protein binding of etoposide.

Etoposide, a commonly used anticancer agent, has an aqueous solubility of 0.2 mg/mL. It is formulated for intravenous use as a more concentrated solution (Vepesid; 20 mg/mL) with polysorbate 80 and with cosolvents. In this work, hydrotropic agents such as sodium benzoate, sodium o-hydroxybenzoate (sodium salicylate), sodium 2,5-dihydroxybenzoate (sodium gentisate), and the sodium salts of 2,4-dihydroxy- and 2,6-dihydroxybenzoic acid and of 2,4,6-trihydroxybenzoic acid have been used as alternative solubilizers of etoposide. The weakest and strongest interactants with etoposide were, respectively, sodium benzoate and sodium 2,4,6-trihydroxybenzoate. The effect of mono- and dihydroxybenzoates on etoposide solubility was intermediate. Although sodium 2,4,6-trihydroxybenzoate is the most efficient solubilizer, its use is limited by its own low aqueous solubility. The effect of sodium salicylate and other formulation ingredients on the in vitro protein binding and precipitation of etoposide upon dilution with normal saline and human plasma has been studied. Etoposide binds to the extent of 94% to human serum albumin (HSA) and human plasma, but only 24% to bovine serum albumin (BSA) in vitro. Sodium salicylate significantly decreased the binding of the drug to both HSA and human plasma, whereas the components of Vepesid did not. Dilution of Vepesid (1:2 and 1:3) with plasma in vitro resulted in immediate precipitation, while the corresponding dilutions of etoposide aqueous solution (20 mg/mL in 2 M sodium salicylate) produced no precipitate for the first hour.

Chemistry, Pharmaceutical↗

The effect of hydrotropic agents on the heat coagulation of bovine serum albumin.

The effect of two hydrotrophic solubilizers on the heat coagulation of bovine serum albumin (BSA) has been investigated. Photon correlation spectroscopy indicated possible unfolding of BSA molecules in solutions of sodium benzoate and sodium salicylate at 25 degrees C. The effect of these hydrotropes on the heat coagulation of BSA was concentration-dependent. Relatively low concentrations stabilized the protein structure as indicated by the increase in the transition temperature(Tm) and induced gelation at temperatures and BSA concentrations lower than those required in the absence of hydrotropes. Higher concentrations of the hydrotropes considerably reduced Tm and inhibited gelation of BSA, the effect of sodium salicylate being more pronounced, as was the lower aggregation rate of BSA. The behaviour of these hydrotropes as protein denaturants differs from that of neutral electrolytes but is similar to that of concentrated solutions of urea.

Benzoates↗

Solubilization of water by hydrotropic salts.

The effect of some electrolytes, nonelectrolytes, surfactants, and hydrotropic salts on the solubility of water in 1-butanol and 1-hexanol was investigated. While sodium chloride and sodium acetate decrease the solubility of water in 1-butanol, urea has no significant effect. The ionic surfactants, sodium lauryl sulfate and cetrimide, cause an initial decrease in the solubility of water in 1-butanol followed by an increase at high surfactant concentrations. The nonionic surfactant, polysorbate 20, does not show the initial decrease in water solubility. On the other hand, the hydrotropic salts, sodium benzoate, sodium salicylate, and sodium gentisate, are shown to be the best water solubilizers in 1-butanol. Sodium salicylate showed the maximum solubilizing power. The effect of sodium benzoate, sodium salicylate, and sodium lauryl sulfate on the solubility of water in 1-hexanol was also investigated. Similar results were obtained.

Chemical Phenomena↗