Desmoplastic fibroma of the proximal ulna.
A young man presented with desmoplastic fibroma in the proximal ulna. This rare tumour was treated by curettage and bone grafting.
Biomedical subjects
Publications and source records attributed to V M Srivastava.
A young man presented with desmoplastic fibroma in the proximal ulna. This rare tumour was treated by curettage and bone grafting.
Alterations in uterine nuclear and cytosolic estradiol (ER) and progesterone (PR) receptor concentration, activities of superoxide dismutase (SOD), peroxidase (POD), catalase (CAT), glucose-6-phosphate dehydrogenase (G-6-PDH) and lactate dehydrogenase (LDH), surface and transmission electron microscopy and histology in relation to the time of secretion of nidatory estrogen and the onset of endometrial sensitivity in the rat were investigated. A significant increase in plasma estradiol (E2) concentration in control rats was observed at 22.00 h on day 4 post-coitum, whereas progesterone (P) concentration increased at 17.00 h on day 4 and was maintained until 17.00 h on day 5. The period of high endometrial sensitivity (10.00 h on day 5) was characterized by elevated uterine cytosolic ER and nuclear and cytosolic PR concentration and POD activity, low columnar luminal epithelium with undulating surface and intercellular membranes, covered with short microvilli and pinopods, and containing numerous electron-transparent apical vesicles, mitochondria, polyribosomes, rough (RER) and smooth (SER) endoplasmic reticulum, well developed Golgi, few lysosomes and lipid droplets and loose edematous antimesometrial stroma. Inhibition in endometrial sensitivity by post-coital centchroman was associated with a marked depletion in uterine cytosolic ER and an increase in nuclear ER concentration, a decrease in POD and G-6-PDH activities, compact fibroblastic stroma, an increase in luminal epithelial cell height with decreased RER, SER, polyribosomes, Golgi, straightening of intercellular membranes, reduced surface undulations and absence of pinopods. Electron-transparent vesicles appeared flattened and clumped in the apical portion of cells, tight junctions were more prominent and lipid droplets were translucent. Nuclear and cytosolic PR and the pattern of secretion or plasma E2 and P remained unaffected. CAT, SOD and LDH activities, although high throughout pre-implantation, did not vary in relation to the secretion of nidatory estrogen, endometrial sensitivity or centchroman treatment.
We have previously reported that Ca2+ influx into the mitochondria of Hymenolepis diminuta, a rat intestinal cestode, takes place through an electrophoretic uniport system. Sodium and lithium were found to induce efflux of 45Ca2+ from the mitochondria of H. diminuta. The two cations induced the efflux in a hyperbolic and linear fashion, respectively. The efflux as well as an exchange of external Ca2+ with internal 45Ca2+ was inhibited by lanthanum. The type of Ca2+ transport system in the cestode organelle has been discussed and compared with that of the host (mammalian) counterpart.
Ca2+ and Mg2+ caused a concentration-dependent activation of ATP hydrolysis by mitochondrial membranes of Hymenolepis diminuta, a rat intestinal cestode. Ca2+ was the more potent, but Mg2+ the more effective. The Lineweaver-Burk plot yielded Km and Vmax values of 1.15 nM and 217.4 nmol Pi min-1 mg-1 protein for Ca(2+)-dependent activity, and 1.86 mM and 333.3 nmol Pi min-1 mg-1 protein for Mg(2+)-dependent activity, respectively. Neither Na+ nor K+, nor a combination of the two cations, induced the hydrolysis of ATP. Ouabain, a specific inhibitor of Na+/K+ ATPase, did not affect the rate of ATP hydrolysis induced by Mg2+ alone or in combination with Na+ or K+. The membrane-bound enzyme was not affected by neuraminidase and concanavalin A. Ca2+ and Mg2+ also induced appreciable hydrolysis of other nucleoside triphosphates by the membranes. Some known anthelmintics, e.g. niclosamide, praziquantel and mebendazole, had no effect on ATPase activities. In addition to other compounds including respiratory inhibitors and uncouplers of phosphorylation, ruthenium red, which blocks Ca2+ influx into the cestode mitochondria, had no influence on the rate of ATP hydrolysis induced by the cations. Triton X-100 was found most suitable for solubilization of both activities. The differences between cestode ATPase and its mammalian counterpart have been discussed.
A mitochondria-rich fraction isolated from the cuticle-hypodermis-muscle system of Setaria cervi, a bovine filarial parasite, possessed substrate-coupled cytochrome c reductases and cytochrome c oxidase in appreciable activities. All these activities were located predominantly in the membranes. NADH-coupled cytochrome c reductase was more prominent than NADPH- and succinate-coupled reductases. All the three reductases exhibited marked sensitivity to rotenone and antimycin A. Salicylhydroxamic acid strongly inhibited succinate requiring reductase and cytochrome c oxidase, but the other two reductases only mildly. Sodium azide activated the reductases but substantially inhibited the oxidase activity. Potassium cyanide activated the succinate requiring reductase but did not cause any noticeable change in the activities of pyridine nucleotide linked reductases. Anthelmintics also influenced these activities but no definite correlation could be drawn regarding their mode of action.
A case of pulmonary mucormycosis with spontaneous resolution is presented. The patient had no known underlying predisposing disease.
To delineate mechanisms involved in the prophylactic action of methyl [5-[[4-(2-pyridinyl)-1-piperazinyl]-carbonyl]-1H-benzimidazol-2 yl] carbamate (compound 81/470) in hamster against Ancylostoma ceylanicum infection, plasma level of the compound and status of reactive oxygen metabolites in jejunum at different periods of the drug treatment were examined. The compound was found to enhance the generation of both O2- and H2O2 by the jejunum possibly by activating xanthine oxidase. This stimulation was found to be both time and dose dependent. At 100 mg/kg dose the increase in O2- production could be recorded at least upto 50 days, whereas at 25 mg/kg the stimulation remained effective upto 20 days only, and at 5 mg/kg there was no change in the activity. This correlated well with the reported prophylactic pattern of the compound i.e. upto 45 and 7 days by 100 and 25 mg/kg doses, respectively. Plasma level of the compound also exhibited dose dependent variation. The compound given at 100 mg/kg dose could be detected in significant concentration upto at least 42 days while that given in 25 and 5 mg/kg doses was present in equivalent concentration upto 14 days and 1 day, respectively. It is concluded that the activation of respiratory burst in the jejunum induced by the persistent presence of compound 81/470 may represent one of the important mechanisms for the chemoprophylactic activity of this anthelmintic.
The enzymes involved in the catabolism of malate namely fumarate reductase, NADH oxidase, "malic" enzyme, succinate dehydrogenase and fumarase as well as NADPH:NAD transhydrogenase, which is involved in the electron transport chain, were studied in Hymenolepis diminuta, a rat intestinal tapeworm. Among cations, K+ had no effect on any enzyme whereas Ca2+ and Mg2+ showed an increase or decrease of varying degrees of different enzyme activities. Most of the compounds, which have been synthesized by the Central Drug Research Institute, Lucknow (India) and found to possess some anthelmintic properties, strongly inhibited the above enzymes except malic enzyme.
Two antifilarial compounds, viz., 90/55 (7-oxo-1-phenyl-8, 14-dihydropyrido (3,4-b) imidazo (1,2-c) quinazolo (4,5-g) and 87/639 (6-Nitro-1-phenyl-9H-pyrido (3,4-b) indole at 0.5 and 2.0 micron concentrations substantially inhibited glucose uptake and increased lactate production by L. carinii during in vitro incubation for 2 hr. The treated parasites, showed increased activities of glycogen phosphorylase, phosphofructokinase and pyruvate kinase. Hexokinase and fumarate reductase activities level in the worms were significantly lowered. Therefore it appears that both the compounds kill adult L. carinii by interfering with its carbohydrate metabolism.
Methyl [5-[[4-(2-pyridinyl-1-piperazinyl] carbonyl]-1H- benzimidazol-2-yl] carbamate (CDRI Compound 81-470) exhibits a long prophylactic action against experimental ancylostomiasis, when given parenterally but not orally. To find out an explanation for such a behaviour, metabolic disposition studies were performed in hamsters using [3H] compound 81-470. Following intramuscular administration, the compound was found to form a depot at the site of injection and to remain there in substantial amount for more than 7 weeks. The compound was fairly distributed in all the organs studied and the presence of radioactivity could be easily detected up to 7 weeks of observation period. The compound was very slowly eliminated from the body and only 38% of the radioactivity could be recovered in the urine and faeces during 14 days. The oral dose, to the contrary, was poorly absorbed and more than 62.8% was excreted in the faeces within 48 hr. Consequently, this dose yielded lesser area under plasma curve. More than 95% of the oral dose was eliminated within a week and hardly and radioactivity could be detected in the tissues after day 14. In accord with this pattern, in blood also the im dose was detected up to 7 weeks while the orally given compound reached undetectable level within 6 days only. The lower clearance and prolonged stay in the body of the im dose compared to quick elimination of the oral dose may be responsible for the long chemoprophylactic action of compound 81-470 when given through im route.
Acanthocheilonema viteae, Litomosoides carinii and Setaria cervi were found to actively synthesize proteins in vitro. Different centrifugation fractions and their TCA-precipitable fractions were assessed for the distribution of newly synthesized proteins. Penicillin and streptomycin inhibited the process in A. viteae. The synthesis in S. cervi was susceptible to puromycin, chloramphenicol, cycloheximide, neomycin and polymyxin B. The process in L. carinii was strongly blocked by puromycin while chloramphenicol had no significant effect.
To understand the mechanism for the expulsion of Nippostrongylus brasiliensis from rats, age-dependent variations in the metabolism of reactive oxygen species in the parasite and the host intestines were examined. N. brasiliensis showed an age-dependent increase in its susceptibility to xanthine-xanthine oxidase and t-butyl hydroperoxide generated oxidants as well as to H2O2. Protection obtained with several scavengers suggested that the worms were damaged by the combined action of oxidants generated by the in vitro systems employed. The level of superoxide dismutase in the nematode and its release into the surroundings exhibited a marked depression with advancement of age. No such alteration was, however, recorded for catalase and glutathione peroxidase. An appreciable decrease in the level of reduced glutathione in older N. brasiliensis appears to render them prone to oxidant attack. The rat intestines, on the other hand, exhibited an appreciable depression in catalase and a reduced glutathione content with progress of the infection. Vitamin E levels were elevated. The release of O2-. and H2O2 by the intestines was also found to be greater during later stages of the infection. The combined effect of the changes observed in N. brasiliensis and in the rat intestines may be at least partly responsible for expulsion of the nematode from the rats after day 10.
Helminth parasitic infestations are of great concern to the health of man and other animals. Limited studies have been carried out on the process of protein synthesis which, apart from having academic importance, could possibly provide a target for drug attack. In the present study distribution pattern of newly synthesized proteins in Hymenolepis diminuta, a rat intestinal cestode, has been worked out. The worms absorbed and incorporated about 21% and 3.8% of the amino acids added to the incubation medium, respectively. In other words, 18.3% of the absorbed amino acids was incorporated into proteins. Absorbed amino acids were distributed between washed cell debris (unbroken cells, nuclei, etc.) and crude extract in a ratio of 1:12. Cytosolic, microsomal and mitochondrial fractions received 72%, 3.2% and 6.6% amino acids, respectively. The mitochondrial membranes and the matrix shared equally the absorbed amino acids. The distribution pattern of amino acid incorporation was, however, different from that of absorption. The incorporation ratio between washed cell debris and crude extract was 1:3.7. The cytosolic, microsomal and mitochondrial fractions received 32.8%, 8.6% and 18.4% of the incorporated amino acids, respectively. Within mitochondria incorporation was more in membranes than in the matrix. The ratios of incorporated versus free-pool amino acids in different fractions varied widely from 1:0.54 to 1:11.
Intraperitoneal administration of tuftsin-M [Thr-Lys-Pro-Arg-NH-(CH2)2-NH-CO-C15H31] to Balb/C mice has been shown to induce a respiratory burst in the peritoneal exudate cells. The macrophages exhibited enhanced levels of O2-, H2O2, NADPH oxidase and myeloperoxidase, but the activities of superoxide dismutase, catalase and glutathione peroxidase remained virtually unchanged. The magnitude of the oxidative burst depended directly on the dose of tuftsin-M; higher activity was observed at higher doses of the peptide. Tuftsin-M enhanced the generation of both O2- and H2O2 under in vitro conditions, as did phorbol myristate acetate. These results suggest that tuftsin-M could enhance non-specific defence against infections by activating the macrophages.
The effect of the macrofilaricidal agent of 2,2'-dicarbomethoxylamino-5,5'-dibenzimidazolyl ketone (C.D.R.I. compound 82/437), on the metabolism of reactive oxygen species (ROs) in Acanthocheilonema viteae and Mastomys natalensis was measured following intraperitoneal administration at therapeutic doses. The recovered worms possessed substantially reduced levels of catalase and glutathione peroxidase (GPx), and thus were less able to detoxify H2O2. Nonetheless, the subcutaneous and adjoining muscle tissues, in which the parasites were lodged, exhibited elevated levels of antioxidant enzymes and reduced glutathione. It is concluded that compound 82/437 kills the filariid by paralysing its H2O2 detoxifying capacity without altering ROs metabolism in the tissue in which the parasite resides. Furthermore, since catalase and GPx of the liver and lungs do not show sign of inhibition, a difference appears to exist in the enzymes of the parasite and the host.
To understand the mode of anthelmintic action of thiabendazole and methyl-[5-[[4-(2-pyridinyl)-l-piperazinyl]carbonyl]-1H-benzimidazole- 2-yl] carbamate (C.D.R.I. compound 81/470) against Nippostrongylus brasiliensis, their effect on the metabolism of reactive oxygen species in the parasite as well as in rat intestine was examined. Both drugs produced a significant depression in the levels of superoxide dismutase (SOD) and reduced glutathione (GSH) of the parasite. Release of antioxidant enzymes by the drug-treated worms was also found to be appreciably lowered. Both thiabendazole and compound 81/470 induced a depression in the levels of all five constituents of the antioxidant system of rat intestine but significant alterations were detected only in the GSH content of infected and the SOD activity of normal intestine. The production of O2- by treated intestine was, on the other hand, markedly enhanced. Increased formation of O2- by the host intestine accompanied with the reduced level of SOD and GSH in N. brasiliensis appear to have a deleterious effect on the parasite. Consequently, the drug-treated worms are unable to retain themselves in situ and are ultimately expelled. The greater effect produced on these parameters by thiabendazole compared to compound 81/470 is consistent with the relative efficacy of these anthelmintics.
Aerobically but not anaerobically, amino acids can sustain motility as well as glycogen and ATP levels of N. brasiliensis as effectively as glucose can. Proline is the most active amino acid and in combination with lysine, cysteine and phenylalanine, can completely replace glucose.
Filarial parasites, Litomosoides carinii and Setaria cervi, showed great susceptibility to the oxidants generated in vitro by the xanthine/xanthine-oxidase system. In order to counteract such injurious effects, both the filariids possessed an active antioxidant enzymes system. Superoxide dismutase, catalase and glutathione peroxidase were detected in appreciable amounts but glutathione reductase and glucose-6-phosphate dehydrogenase in very low quantities. The former three enzymes were also found to be released by the parasites into the ambient medium. The released enzymes may be responsible for scavenging the host-generated oxidants present in the immediate surroundings of the parasites and thereby enabling them to live comfortably in the host. This Institute-based antifilarial agent namely Compound 82/437 which is 2,2'-dicarbomethoxylamino-5,5'-dibenzimidazolylketone, markedly inhibited catalase and glutathione peroxidase of both L. carinii and S. cervi. The compound, therefore, appears to render the filariids prone to H2O2 toxicity leading to penultimate damage.