Biomedical subjects
S Ghosh
Publications and source records attributed to S Ghosh.
Structural manifestations of the rat Sertoli cell to hypophysectomy: a correlative morphometric and endocrine study.
Although the Sertoli cell is a key cell mediating the actions of FSH- and LH-stimulated testosterone (T) in the testis, there is little information to indicate how this cell responds structurally to hormonal insufficiency. The present study used morphometric techniques to study the structural manifestations of the Sertoli cell in adult rats hypophysectomized for 6 and 28 days. Six days posthypophysectomy, a period when germ cell degeneration is first evident, tubular diameter and length, testis weights, volume of the interstitium, and volume of most parameters that comprise the interstitium (except blood vessels) showed significant regressive features. However, virtually no parameter relating to the volume and surface area of the Sertoli cell or its subcellular components was significantly reduced compared with that in the normal animal. Thus, at a time when germ cell degeneration is seen in the testis, the Sertoli cell showed no significant structural response to the changing endocrine status of the animal. In contrast, 28 days after hypophysectomy, virtually all parameters relating to the Sertoli cell and its organelles were significantly decreased compared with those in normal animals. Plasma and tissue testosterone, PRL, and FSH showed a very significant decrease 6 days after hypophysectomy compared with intact animals, but at 28 days there was no further significant decrease in the levels of these hormones. There was no correlation of most organelle volumes and surface areas with endocrine parameters. The size of the Sertoli cell showed positive and significant correlations with the volumes and surface areas of all of its cytoplasmic organelles, except the lipid volume. Short term hypophysectomy resulted in no significant change in either the concentration (femtomoles per mg protein) or the content (femtomoles per testis) of FSH receptors, nor was there a significant change in the number of FSH receptors per cell. However, 28 days after hypophysectomy only the content, not the concentration, of FSH receptors decreased significantly along with a decrease in the number of FSH receptors per cell. Although the marked degenerative changes that are seen in the testis 6 days after hypophysectomy parallel endocrine decline, the Sertoli cell responded slowly from a structural standpoint compared with the Leydig cell. After long term hypophysectomy, significant morphometric changes were observed in all of its structural parameters.
Structural changes in rat Leydig cells posthypophysectomy: a morphometric and endocrine study.
Short and long term responses of the rat Leydig cell were studied posthypophysectomy, at times when germ cell degeneration was first prominent (6 days) and after long term regression of the testis (28 days). In the short term, virtually all structural parameters relating to the volume and surface area of the Leydig cell and its subcellular organelles were significantly lowered compared with those in control animals. Exceptions were the volumes of the nucleolus, heterochromatin, and lysosomes and the surface areas of the nucleus. Structural decreases were generally on the order of 2- to 5-fold in the 6-day period. A statistical analysis of the percent decreases in the short term was performed to determine whether any particular structural features were more sensitive to hypophysectomy than any others. In most instances, no particular organelles were decreased compared to others. However, lipid, although not commonly seen in rat Leydig cells, showed significantly greater percent decreases compared with several other organelles, indicating that the small amount of lipid present is rapidly lost (used) in the short term. After long term hypophysectomy, all structural parameters of the Leydig cell were significantly lowered compared with those in pituitary-intact animals. Only a few parameters (mitochondrial volume, cell surface area, and the surface areas of inner and outer mitochondrial membranes and smooth endoplasmic reticulum) showed more significant decreases in the long term compared with the short term hypophysectomized animals. Most organelle volumes and surface areas correlated positively and significantly with serum and tissue testosterone levels; the exceptions were the volumes of the nucleolus, heterochromatin, lipid, and lysosomes. Compared with the pituitary-intact animal, the content of LH receptors expressed per testis and per Leydig cell was significantly lower in both hypophysectomized groups; however, the number of receptors per given area of individual Leydig cell plasma membrane remained unchanged. Overall, data show that the Leydig cell manifests marked structural changes during early spermatogenic dysfunction.
Effects of okadaic acid on mitotic HeLa cells.
Mitotic HeLa cells were treated with different concentrations of okadaic acid (OA), known to inhibit phosphatase 1 and 2A activities. The cytological effects on the course of mitosis were studied at the light microscopic, immunoflourescence and electron microscopic levels. At the lowest concentration used (1 nM), OA did not show any effect on mitosis, but at higher concentrations it showed pronounced effects. The mitotic chromosomes became scattered, the mitotic spindle became deranged and the cells failed to enter anaphase. At the electron microscopic level formation of isolated microtubules and regular trilaminar kinetochores were observed. An extensive growth of the endoplasmic reticulum could be noted in these cells. Decondensation of chromatin and nuclear envelope re-formation could be seen only after withdrawal of OA. A high frequency of multinucleate cells could be found after 24 h of recovery. Cells treated with 100 nM OA for 3 hours showed diplochromosomes in over 50% of mitotic cells after 24 h recovery. These were presumably formed due to the failure of sister chromatid separation in the earlier mitosis in the presence of OA. At the electron microscopic level the diplochromosomes showed a quadruplet structure. The role of phosphatase 1 in controlling some late mitotic events, i.e. sister chromatid separation, MPF-inactivation and nuclear envelope re-formation etc., is discussed.
Solitary ectopic intracerebral schwannoma.
Intracerebral Schwannoma is a rare tumour which can mimic meningioma clinically, radiologically and morphologically. Immunohistochemical techniques are necessary to confirm the Schwann cell origin of the tumours. We report such a tumour in the posterior frontal parasagittal region. The origin of Schwann cells in the central nervous system is still speculative and various postulations are discussed.
Expression and cellular distribution of the alpha 1 gap junction gene product in the ocular pigmented ciliary epithelium.
The expression of four different gap junction (GJ) transcripts, corresponding to the alpha 1, alpha 3, beta 1 and beta 2 gene products, has been examined in the ciliary epithelium of human and bovine eyes, and in cultures of ciliary epithelial cells. Northern blot analysis revealed that alpha 1 mRNA, 3.6-kb in size, was the predominant transcript expressed in intact tissue and in cultures of pigmented ciliary epithelial cells (PE). No transcripts from the alpha 3, beta 1 or beta 2 gap junction genes were detected in intact tissue or ciliary epithelial cells as demonstrated by Northern blotting. When the levels of alpha 1 gap junction mRNA were compared between PE and NPE in primary cultures, a striking difference was observed in the level of alpha 1 transcripts: there was about a 6 to 8-fold increase in alpha 1 levels in PE cells, relative to the NPE cells. To verify the differential level of expression of alpha 1 GJ mRNA in the two cell types, indirect immunofluorescence localization studies were performed on semithin cryostat sections of ciliary processes. These studies revealed that alpha 1 gap junctions are present at the apical and lateral borders of PE cells, i.e. at the apical plasma membranes domains of PE-NPE cells, and at the lateral plasma membrane regions of PE-PE cells borders. Further analysis by immunoblotting confirmed that the 43 kD alpha 1 gap junction protein was the major gap junction gene product in the ciliary epithelium.
Impact of lead toxicity on brain metabolisms of nucleic acid and catecholamine in protein malnourished rats.
The brain biochemistry in terms of certain key substances of brain were studied in 18% protein and 6% protein-fed rats following lead ingestion at a level of 1% in the diet. Lead ingestion diminished the protein and increased the RNA content of brain, and, consequently reduced the protein/RNA ratio. The RNA/DNA ratio in brain was elevated in lead toxicity, while the protein/DNA ratio remained unaltered. The RNase and DNase activities of brain were decreased. Lead treatment diminished the glutathione (GSH) level of blood but the GSH level of brain was not altered significantly by the lead treatment. The plasma protein level was also diminished after lead treatment. The effects of lead on some of these parameters were found to be more pronounced in rats receiving the 6% protein diet. The serotonin (5-HT) level of brain was reduced, while the norepinephrine (NE) and dopamine (DA) levels of brain were elevated following lead treatment. The monoamine oxidase (MAO) and tryptophan hydroxylase (TPH) activities and 5-hydroxy-indole acetic acid (5-HIAA) content of brain were elevated in lead-ingested rats. The effects of lead on these parameters were found to be potentiated when the rats were fed on a 6% protein diet. These studies suggest that lead at the present dose affects brain biochemistry in terms of both nucleic acids and amine metabolism, and protein deficiency potentiates some of these lead-induced changes.
The diet and moderate exercise trial (DAMET): results after 24 weeks.
W.H.O. and U.S. Dept. of Health and Human Services advocate a fat-modified, fruits and vegetable-enriched diet in conjunction with mode-rate physical activity for fitness and health. The Diet and Moderate Exercise Trial (DAMET) is a randomized and controlled study and has provided scientific proof, possibly for the first time, to the above hypothesis (based on epidemiologic studies, short clinical trials and experimental studies) that the new approach can cause modulation of risk factors of coronary heart disease (CHD) as well as improve fitness. In the DAMET, 231 group A and 232 group B patients with risk factors of CHD were administered a prudent diet for 4 weeks, group A patients in addition were also given at least 400 g/day of fruits and vegetables that are rich in dietary fibre and antioxidants such as vitamins A, C, E, carotene and copper, selenium and magnesium. Fruits and vegetables were administered in a foods-to-eat approach by asking the patients to eat these foods before meals when they were hungry to allow better nutrient adequacy. After 4 weeks, group A patients also did moderate exercise such as brisk walking and spot running compared to no such advice to group B for another 20 weeks. After a follow-up period of 24 weeks, adding exercise to diet was associated with a significant decrease in blood total cholesterol (8.9%) and LDL-cholesterol (6.7%) and triglycerides (11.9%) and a marked increase in HDL-cholesterol (16.5%). Mean blood pressures, fasting blood glucose, body weight, body mass index, waist-to-hip ratio and subcutaneous fat also showed a significant decrease in group A, leading to a significant decrease in 12-year CHD risk. A long-term follow-up may be necessary to demonstrate the role of this new approach in decreasing cardiovascular morbidity and mortality.
Chemoprophylaxis studies in cholera: a review of selective works.
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It is time we thought of youth.
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Effect of RMI 12,936, an antiprogestational steroid on decidual cell reaction and embryos in rat.
Subcutaneous administration of RMI 12,936 at a dose level of 2 mg/rat on day 5 of unilaterally pregnant rat having trauma-induced decidual cell reaction (DCR) in the contralateral uterine horn, suppresses DCR, induces resorption of implanted embryos and leads to decrease in the plasma level of progesterone. Progesterone replacement (D 5-8) in this situation reverses DCR suppressive effect of RMI 12,936 but fails to prevent resorption of implanted embryos. It is concluded that possibly the drug simultaneously exerts embryotoxic as well as luteolytic effects, but these effects are independent.
Elevation of C-reactive protein in serum of Channa punctatus as an indicator of water pollution.
Effect of some pollutants like heavy metals, non-metals and pesticides on the circulating level of C-reactive protein (CRP) which is an acute phase plasma protein was studied in a freshwater murrel C. punctatus. Fish was exposed to nonlethal doses of these xenobiotics which were apparently safe. But the level of CRP detected by sensitive single radial immunodiffusion (SRID) technique showed that within 12 hr of exposure the nonlethal doses of xenobiotics could initiate the acute phase response in terms of elevated CRP titre. Heavy metals caused the acute phase within 24 hr, nonmetals and Metacid-50 within 48 hr exposure. The carbamate compound, carbaryl demonstrated a biphasic response to CRP level which may be correlated with the reversible type of anticholinesterase property of this compound while Metacid-50 is an irreversible type of anticholinesterase agent. The assessment of the CRP level in the serum of fish may be utilized as a primary bioindicator of a contaminated environment toxic enough to mount an acute phase response.
Chloroquine resistant Plasmodium falciparum malaria in Calcutta.
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Time dependent tissue distribution of 203Hg in the white rat and Anabas testudineus, a freshwater teleost.
The distribution of mercury, an environmentally important toxicant, has been evaluated in a time dependent manner in different tissues of white rat and a freshwater teleost, Anabas testudineus. Sampling was performed at 15 min, 2, 6 and 48 h post injection (im) of 203Hg mercuric nitrate. Radioactivity of the 5% tissue homogenate, serum and bile was measured in a Gamma Counter. The rate of 203Hg accumulation is higher in fish immediately after administration which, however, is more or less of equal rate in the later period of observation in both the experimental animals. Partitioning of 203Hg occurs in a species specific manner with higher levels recorded in the brain and gonad of white rat. Spleen, liver and kidney, however, are the major tissues to accumulate mercury in both the species. The present study highlights that kidney is the target site of mercury retention with a higher kidney/liver ratio of mercury.
Nutritional beliefs among Anganwadi workers.
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Acetylcholinesterase characteristics of termite queen exposed to anticholinesterase compounds.
A regional profile of AChE activity was noted in the Indian termite queen Odontotermes redemanni with the head recording the higher and body the lower range of activity. The enzyme characteristics such as substrate and temperature optima were more or less similar while pH requirement for optimum AChE activity varied from 7.0 to 7.6 In vitro inhibition of head and body AChE was studied using pure and commercial anticholinesterase compounds. Interestingly, the commercial formulations like Metacid-50 and Carbaryl are potent enough at 1 x 10(-8) M to produce 50% in vitro inhibition of AChE of head and body regions within 15 min of preincubation. A 20 min of preincubation (t0.5) was necessary to record 50% in vitro inhibition of AChE with known and pure anticholinesterase compounds such as DFP (3.5 x 10(-10) M) and physostigmine (3.6 x 10(-10) M). It is surmised that (a) the response of the head and body AChE to the commercial formulations of the insecticides may be used as a reliable and sensitive bioindicator of pesticidal contamination of the terrestrial environment and (b) termite control may be successfully done with the application of organophosphate or carbamate compounds.