PubMed Health⌕ Search

Biomedical subjects

Manzoor Ahmad

Publications and source records attributed to Manzoor Ahmad.

12 recordsLinked to original sources

Upregulation of Bcl-2 proteins during the transition to pressure overload-induced heart failure.

BACKGROUND: Cardiomyocyte apoptosis is implicated in the pathogenesis of heart failure and mitochondria play an important role in this mode of cell death. In this study, activity of the Bcl-2 family of mitochondrial apoptotic proteins and their regulator (p53) were assessed during the transition to heart failure. METHODS: Ten adult male sheep were banded with a variable aortic constriction device. This was progressively inflated to increase left ventricular (LV) afterload. The sheep were monitored echocardiographically, measuring LV Mass Index (LVMI), diastolic LV Internal Diameter (LVIDd) and Fractional Shortening (FS). Serial LV endomyocardial biopsies were obtained, to measure expression of p53 and Bcl-2 family proteins by Western blotting. RESULTS: Over the first 3-4 weeks, the sheep developed hypertrophy (LVMI 79.5+/-4.6 vs. 44.0+/-3.0 g/m2, p<0.01), followed by gradual LV dilatation (LVIDd 4.23+/-0.08 vs. 3.39+/-0.07 cm, p<0.01). Ventricular function remained stable until 7-8 weeks post banding, when there was significant deterioration (FS 18.3+/-2.4 vs. 46.9+/-2.6%, p<0.01), associated with clinical heart failure. Upregulation of the Bax/Bcl-2 ratio, associated with increased levels of p53, was demonstrated in each of the echocardiographically defined stages (LV hypertrophy, LV dilatation and LV failure). In parallel, significantly higher levels of anti-apoptotic protein (Bcl-xL) was associated with LV dilatation and failure. CONCLUSIONS: Upregulation of Bax/Bcl-2 ratio occurs during the transition to heart failure and in particular with the initial hypertrophic response. Increase in expression of the anti-apoptotic protein Bcl-xL suggests possible concomitant compensatory mechanisms being activated during the transition to heart failure.

Animals↗

Activation of apoptotic caspase cascade during the transition to pressure overload-induced heart failure.

OBJECTIVES: A pressure overload model was developed to simulate aortic stenosis and assess caspase activity during the transition to heart failure. BACKGROUND: Cardiomyocyte apoptosis is implicated in the pathogenesis of heart failure, and caspase activation is central to this pathophysiological process. METHODS: A total of 10 sheep were banded with variable aortic constriction devices, progressively inflated to increase left ventricular (LV) afterload. Serial LV endomyocardial biopsy samples were obtained to measure caspase activity and presence of apoptosis. RESULTS: Over the first 3 to 4 weeks, hypertrophy developed in the sheep (LV mass index 90.8 +/- 4.9 g/m2 vs. 44.0 +/- 3.0 g/m2, p < 0.01), followed by gradual dilatation of the left ventricle (diastolic LV internal diameter 4.23 +/- 0.08 cm vs. 3.39 +/- 0.07 cm, p < 0.01). Ventricular function remained stable until 7 to 8 weeks after banding, when there was significant deterioration (fractional shortening 18.3 +/- 2.4% vs. 46.9 +/- 2.6%, p < 0.01), associated with clinical heart failure. Serial LV endomyocardial biopsy samples were obtained at each echocardiographically defined stage (LV hypertrophy, LV dilation, and LV failure). Activity of caspases-3, -8, and -9 (measured by specific fluorogenic peptide substrates and immunohistochemistry) increased progressively, particularly with the onset of myocardial dysfunction (caspase-3 7.92 +/- 1.19 vs. 1.00 +/- 0.15, caspase-8 1.94 +/- 0.21 vs. 1.00 +/- 0.04, caspase-9 5.87 +/- 0.97 vs. 1.00 +/- 0.18 relative fluorescent units, p < 0.05). No evidence of deoxyribonucleic acid (DNA) fragmentation, however, was identified by immunohistochemical assays. CONCLUSIONS: Activation of cardiomyocyte caspase enzymes occurs during the transition to heart failure, without completion of apoptotic DNA fragmentation. Increased activity of caspase-8 and -9 suggests both mitochondrial and death-receptor mediated pathways are involved in this pathological process. Further knowledge of these pathways may stimulate development of apoptosis-based strategies for slowing progression of heart failure in aortic stenosis patients.

Animals↗

Antispasmodic effect of Acorus calamus Linn. is mediated through calcium channel blockade.

Acorus calamus Linn. (Araceae) is a native of Central Asia and Eastern Europe and has widespread use in the traditional system of medicine for gastrointestinal disorders such as colic pain and diarrhoea. This study was aimed at providing a possible pharmacological basis to the use of this plant as an antispasmodic and antidiarrhoeal. In the isolated rabbit jejunum preparation the crude extract (Ac.Cr), which tested positive for the presence of alkaloid, saponins and tannins, caused inhibition of spontaneous and high K(+) (80 mm)-induced contractions, with respective EC(50) values of 0.42 +/- 0.06 and 0.13 +/- 0.04 mg/mL (mean +/- SEM; n = 6-8), thus showing spasmolytic activity, mediated possibly through calcium channel blockade (CCB). The CCB activity was confirmed when pre-treatment of the tissue with Ac.Cr (0.3-1.0 mg/mL) caused a rightward shift in the Ca(++) dose-response curves similar to that caused by verapamil, a standard calcium channel blocker. Activity-directed fractionation revealed that the CCB activity was concentrated in the n-hexane fraction while the ethylacetate fraction was less potent. These results suggest that the spasmolytic effect of the plant extract is mediated through the presence of CCB-like constituent(s) which is concentrated in the n-hexane fraction and this study provides a strong mechanistic base for its traditional use in gastrointestinal disorders such as colic pain and diarrhoea.

Acorus↗

Norditerpenoid alkaloids from Delphinium nordhagenii.

Three new norditerpenoid alkaloids, nordhagenine A (1), nordhagenine B (2), and nordhagenine C (3), along with a known alkaloid, lycoctonine, were isolated from the aerial parts of Delphinium nordhagenii. The structures of the new compounds 1 and 2 were also deduced on the basis of single-crystal X-ray diffraction studies.

Aconitine↗

Biological effects of indigenous medicinal plants Curcuma longa and Alpinia galanga.

The ethanolic extracts of Curcuma longa and Alpinia galanga exhibited excellent (100%) phytotoxic activity against Lemma minor. These extracts were also found to possess good antifungal activities against Trichophyton longifusus (65% and 60%, respectively), while in the brine shrimp lethality bioassay were found to be toxic with LD50 of 33 and 109 mincrog/ml, respectively. These extracts were found quite inert in antibacterial bioassay, while the extract from C. longa, tested for insecticidal activity, was also found to be devoid of any activity.

Alpinia↗

Alkaloids of Aconitum laeve and their anti-inflammatory antioxidant and tyrosinase inhibition activities.

A lycoctonine-type norditerpenoid alkaloid, swatinine (1), along with four known norditerpenoid alkaloids, delphatine (3), lappaconitine (4), puberanine (5), and N-acetylsepaconitine (6), and were isolated from the aerial parts of Aconitum laeve Royle. Compound 2 has been isolated for the first time from a natural source. The structure of compound 1 was deduced on the basis of spectral data. The anti-inflammatory, antioxidant and tyrosinase inhibition studies on all six compounds have also been carried out.

Aconitum↗

Enzyme inhibition and radical scavenging activities of aerial parts of Paeonia emodi Wall (Paeoniaceae).

The ethanolic extract derived from aerial parts of an indigenous medicinal plant Paeonia emodi was screened for enzyme inhibition activities against Urease (jack bean and Bacillus pasteurii) and alpha-Chymotrypsin. The extract was also investigated for its radical scavenging activity using DPPH assay. The crude extract was found to possess significant enzyme inhibition activities against jack bean (74%) and Bacillus pasteurii (80%) urease and a moderate activity (54%) against alpha-Chymotrypsin. The extract also displayed excellent (83%) radical scavenging activity. On the basis of these results, the crude extract was subsequently fractionated into n-hexane, chloroform, ethyl acetate, n-butanol and water fractions and tested independently for the aforesaid activities. Significant inhibitory activity against urease enzyme was observed for the ethyl acetate, n-butanol and water fractions while the n-hexane and chloroform fractions were devoid of any such activity. In the alpha-Chymotrypsin enzyme inhibition studies the activity was concentrated into the ethyl acetate fraction. All the fractions displayed potent radical scavenging activity. The crude extract and fractions thereof were also subjected to total phenolic content determination. A correlation between radical scavenging capacities of extracts and total phenolic content was observed in the majority of cases.

Antioxidants↗

In vitro enzyme inhibition activities of crude ethanolic extracts derived from medicinal plants of Pakistan.

Twenty two crude ethanolic extracts from 14 indigenous medicinal plants were subjected to enzyme inhibition screening against acetylcholinesterase (AChE), butyrylcholinesterase (BChE) and lipoxygenase enzymes (LO). Three extracts showed activity against AChE, nine extracts were found to be active against BChE and four extracts inhibited the enzyme LO. The most significant inhibition activities (> or =50%) were found in extracts derived from Aloe vera (leaves), Alpinia galanga (rhizome), Curcuma longa (rhizome), Cymbopogon citratus (leaves), Ocimum americanum (leaves), Ocimum americanum (stem) and Withania somnifera (roots).

Cholinesterase Inhibitors↗

Isolation of onosmins A and B, lipoxygenase inhibitors from Onosma hispida.

Onosmins A (1) and B (2), lipoxygenase inhibitors, have been isolated from Onosma hispida. Their structures were established as 2-[(4-methylbenzyl)amino]benzoic acid (1) and methyl 2-[(4-methylbenzyl)amino]benzoate (2) through spectroscopic studies, including 2D-NMR. The known compounds apigenin (3), 6,4'-dimethoxy-3,5,7-trihydroxyflavone (4), 6,7-dimethoxy-3,5,4'-trihydroxyflavone (5) and apigenin 7-O-beta-D-glucoside (6) are also reported for the first time from this species. Compounds (1) and (2) inhibited lipoxygenase (LOX, EC 1.13.11.12) enzyme in a concentration-dependent fashion with IC50 values of 24.0 and 36.2 microM, respectively. Lineweaver-Burk as well as Dixon plots and their secondary replots indicated that the nature of inhibition was purely a non-competitive type, with K(i) values 22.0 microM and 31.1, respectively.

Benzoates↗

Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and Fas apoptosis in Burkitt's lymphomas with loss of multiple pro-apoptotic proteins.

BACKGROUND AND OBJECTIVES: Normal B-cells in the germinal center (GC) may be exposed to both tumor necrosis factor-related apoptosis inducing ligand (TRAIL) and Fas-L. Whether abrogation of TRAIL apoptosis is a feature in the genesis of B cell lymphomas of GC-phenotype is not known. We assessed the integrity of the TRAIL pathway in Fas-resistant and Fas-sensitive Burkitt s lymphomas (BLs). DESIGN AND METHODS: Expression of TRAIL receptors was determined by flow cytometry and Western blots. The extent of apoptosis following exposure to TRAIL was measured by annexin-V/propidium iodide dual staining. The integrity of the Fas and TRAIL apoptotic pathways was determined by Western blotting to assess cleavage of downstream caspases. Western blot analyses were used to determine the expression of pro- and anti-apoptotic proteins and the profile of expression was correlated with response to TRAIL and CH11. RESULTS: Our results demonstrate that BL expresses both functional and decoy TRAIL receptors. BLs with a functional Fas pathway retained sensitivity to TRAIL: Frequent and compound loss of expression of pro-apoptotic proteins can be identified in BLs resistant to Fas. However, loss of Bax, Bak and Bcl-Xs did not compromise sensitivity to TRAIL: INTERPRETATION AND CONCLUSIONS: Our results indicate that BLs frequently retain sensitivity to the TRAIL pathway. These results underscore the utility of TRAIL-based therapeutic strategies in the treatment of those B-cell lymphomas that may have compromised expression of several pro-apoptotic proteins.

Apoptosis↗

Pleiotropic defects in lymphocyte activation caused by caspase-8 mutations lead to human immunodeficiency.

Apoptosis is a form of programmed cell death that is controlled by aspartate-specific cysteine proteases called caspases. In the immune system, apoptosis counters the proliferation of lymphocytes to achieve a homeostatic balance, which allows potent responses to pathogens but avoids autoimmunity. The CD95 (Fas, Apo-1) receptor triggers lymphocyte apoptosis by recruiting Fas-associated death domain (FADD), caspase-8 and caspase-10 proteins into a death-inducing signalling complex. Heterozygous mutations in CD95, CD95 ligand or caspase-10 underlie most cases of autoimmune lymphoproliferative syndrome (ALPS), a human disorder that is characterized by defective lymphocyte apoptosis, lymphadenopathy, splenomegaly and autoimmunity. Mutations in caspase-8 have not been described in ALPS, and homozygous caspase-8 deficiency causes embryonic lethality in mice. Here we describe a human kindred with an inherited genetic deficiency of caspase-8. Homozygous individuals manifest defective lymphocyte apoptosis and homeostasis but, unlike individuals affected with ALPS, also have defects in their activation of T lymphocytes, B lymphocytes and natural killer cells, which leads to immunodeficiency. Thus, caspase-8 deficiency in humans is compatible with normal development and shows that caspase-8 has a postnatal role in immune activation of naive lymphocytes.

Apoptosis↗

Ground water quality assessment using multi-rectangular diagrams.

A new graphical technique is proposed here for classifying chemical analyses of ground water. In this technique, a diagram is constructed using rectangular coordinates. The new diagram, called a multi-rectangular diagram (MRD), uses adjacent multi-rectangles in which each rectangle represents a specific ground water type. This new diagram has the capability to accommodate a large number of data sets. MRDs have been used to classify chemical analyses of ground water in the Chaj Doab area of Pakistan to illustrate this new approach. Using this graphical method, the differentiated ground water types are calcium bicarbonate, magnesium bicarbonate, sodium bicarbonate, and sodium sulfate. Sodium bicarbonate emerges as the most abundant ground water type. MRDs also offer a visual display of the Chebotarev sequence of ground water quality evolution.

Environmental Monitoring↗