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51.
Dr. Alex M. Landolt Marvin Barker Dennis F. Deen Charles B. Wilson 《Cell and tissue research》1981,221(2):269-277
Summary Human pituitary adenomas proliferate neither in cell culture nor in athymic nude mice. We propose that one or several of the humoral factors necessary for the growth of pituitary adenomas is missing in these experimental environments. The purpose of our experiments was to examine the possible influence of the hypothalamus in supporting cellular proliferation, and thus adenoma growth. Fragments from four human pituitary adenomas (three pituitary prolactinomas; one ACTH-secreting adenoma) were transplanted into the pituitary fossa of total-body irradiated, hypophysectomized rats. The rats were killed after two weeks and perfused with a mixture of formalin and India ink. Histologic examination of serial sagittal sections through the pituitary fossa and the adjacent brain showed: vascularization of the grafts from the pituitary stalk and from the scar tissue in the sphenoid bone; survival of some adenomas; and numerous mitoses in an ACTH-secreting specimen obtained from a patient who had Cushing's disease. We conclude from these experiments that as yet unidentified hypothalamic factors are essential for the growth of certain types of pituitary adenomas.This study was supported by a grant to Dr. Landolt from the Jubiläumsspende of the University of Zürich, Switzerland.The results were presented in part at the Second European Workshop on Pituitary Adenomas, Paris, September 20–22, 1979 相似文献
52.
Acrylonitrile interaction with testicular DNA in rats. 总被引:10,自引:0,他引:10
In the present study we report the in vivo interaction of acrylonitrile (VCN) with testicular tissue in rats. Covalent binding of radioactivity to testicular tissue DNA was examined for a period of 72 hr after a single oral dose (46.5 mg/kg) of [2,3-14C] VCN. Maximal covalent binding was observed at 0.5 hr (8.9 mumol VCN equivalent/mol nucleotide). Binding decreased gradually thereafter but was still detected (2.5 mumol VCN equivalent/mol nucleotide) at 72 hr following VCN administration. Further, we examined the effects of VCN on DNA synthesis and repair in the testes of rats following a single oral dose (46.5 mg/kg) of VCN to clarify the impact of the covalent binding observed on the testicular genetic material. A significant decrease in DNA synthesis (80% of control) was observed at 0.5 hr after treatment. At 24 hr following acrylonitrile administration, testicular DNA synthesis was severely inhibited (38% of control). Testicular DNA repair was increased 1.5-fold at 0.5 hr and more than 3.3-fold at 24 hr following treatment with VCN. These results suggest that VCN can act as a multipotent genotoxic agent by alkylating DNA in testicular tissue and may affect the male reproductive function by interfering with testicular DNA synthesis and repair processes. 相似文献
53.
Routing of the aquaporin-2 water channel in health and disease 总被引:4,自引:0,他引:4
The identification of the first water channel in 1991 opened up a new field in cell biology and physiology that significantly increased our understanding of mammalian water balance regulation. Since then, nine other mammalian aquaporins have been identified. Although the physiological significance of many aquaporins is still to be elucidated, it has been clearly established for aquaporin-2. This water channel, which is expressed in the renal collecting duct, is redistributed to the apical membrane in response to a intracellular signaling cascade, initiated by binding of the antidiuretic hormone vasopressin to its receptor. In pathological conditions, characterized by a reduced reabsorption of water from urine, the expression of aquaporin-2 and the apical targeting is always found to be reduced or absent. Naturally-occurring AQP2 mutations that cause Nephrogenic Diabetes Insipidus, a disease in which the kidney is unable to concentrate urine in response to vasopressin, are extreme examples of this condition. In contrast, in diseases with increased renal water uptake, total and apical membrane expression of aquaporin-2 is increased. Since most aquaporins, including aquaporin-2, are considered to be constitutively open channels, much attention has been given to the regulation of the shuttling of aquaporin-2 to the apical membrane. This review focusses on the present understanding of the regulation of the routing of aquaporin-2 in collecting duct cells and the misrouting of aquaporin-2 mutants in Nephrogenic Diabetes Insipidus. 相似文献
54.
Autocrine loops formed by growth factors and their receptors have been identified in a large number of developmental, physiological, and pathological contexts. In general, the spatially distributed and recursive nature of autocrine signaling systems makes their experimental analysis, and often even their detection, very difficult. Here, we combine Brownian motion theory, Monte Carlo simulations, and reaction-diffusion models to analyze the spatial operation of autocrine loops. Within this modeling framework, the ability of autocrine cells to recapture the endogenous ligand and the distances traveled by autocrine ligands are explicitly related to ligand diffusion coefficients, density of surface receptors, ligand secretion rate, and rate constants of ligand binding and endocytic internalization. Applying our models to study autocrine loops in the epidermal growth factor receptor system, we find that autocrine loops can be highly localized--even at the level of a single cell. We demonstrate how the variations in molecular and cellular parameters may "tune" the spatial range of autocrine signals over several orders of magnitude: from microns to millimeters. We argue that this versatile regulation of the spatial range of autocrine signaling enables autocrine cells to perceive a broad spectrum of environmental information. 相似文献
55.
56.
Kumar R Sharma RK Bansal DD Patel DD Mishra S Miteva L Dobreva Z Gadjeva V Stanilova S 《Cellular immunology》2011,(1):67-75
In the present study, a semiquinone glucoside derivative (SQGD) isolated from a radioresistant bacterium Bacillus sp. INM-1 was evaluated for its immunostimulatory activities. Human peripheral blood mononuclear cells (PBMCs) were stimulated by different doses (30–90 μg/ml) of SQGD for different time (3–12 h) intervals at 37 °C, and IL-12p40, IL-23p19, IL-10, RelA and c-Jun gene expression analysis was carried out by qRT-PCR method. SQGD dose dependent cytokines protein expression kinetic analysis was carried out using western blotting. As the results of SQGD (30 μg/ml) stimulation for 3 h at 37 °C, significant induction in IL-12p40, IL-23p19 and RelA gene expression was observed in PBMCs compared to unstimulated control cells. However, no such induction in IL-10 and c-Jun gene expression was observed. Time dependent protein expression study indicated significant increase in IL-12p40, IL-12p35, IL-23p19 and RelA protein expression at 3–6 h, which was found decrease at 12 h upon SQGD treatment. In contrast, IL-10 protein expression was found to enhance significantly at 12 h after SQGD treatment to the PBMCs. SQGD dose dependent study showed approximately similar level of induction in IL-12p40, IL-12p35, IL-23p19 and RelA proteins expression at all tested concentration (30–90 μg/ml) compared to control. However, no significant change in the IL-10 and c-Jun protein expression was observed at any SQGD concentration. SQGD treatment (0.25 mg/kg b wt.) was also found to enhance anti-keyhole Limpet Hemocynin (KLH) IgM antibodies significantly in the mice immunized by KLH.Thus, SQGD fraction stimulates cellular immunity by inducing immunostimulatory cytokines and humoral immunity by enhancing IgM antibodies and could be a promising immunostimulant. Further studies related to molecular mechanisms offering immunostimulation is underway, will certainly helpful to unravel its mode of action in the biological system. 相似文献
57.
Stewart G. Martin Siwei Zhang Song Yang Behnaz Saidy Suha Deen Sarah J. Storr 《Journal of cellular and molecular medicine》2020,24(16):9165-9175
Dopamine and cyclic‐AMP activated phosphoprotein Mr32kDa (DARPP‐32) is a central signalling protein in neurotransmission. Following DARPP‐32 phosphorylation by protein kinase A (PKA), DARPP‐32 becomes a potent protein phosphatase 1 (PP1) inhibitor. DARPP‐32 can itself inhibit PKA following DARPP‐32 phosphorylation by cyclin‐dependent kinase 5 (Cdk5). Increasing evidence indicates a role for DARPP‐32 and its associated signalling pathways in cancer; however, its role in ovarian cancer remains unclear. Using immunohistochemistry, expression of DARPP‐32, PP1 and Cdk5 was determined in a large cohort of primary tumours from ovarian cancer patients (n = 428, 445 and 434 respectively) to evaluate associations between clinical outcome and clinicopathological criteria. Low cytoplasmic and nuclear DARPP‐32 expression was associated with shorter patient overall survival and progression‐free survival (P = .001, .001, .004 and .037 respectively). Low nuclear and cytoplasmic DARPP‐32 expression remained significantly associated with overall survival in multivariate Cox regression (P = .045, hazard ratio (HR) = 0.734, 95% confidence interval (CI) = 0.542‐0.993 and P = .001, HR = 0.494, 95% CI = 0.325‐0.749, respectively). High cytoplasmic and nuclear PP1 expression was associated with shorter patient overall survival and high cytoplasmic PP1 expression with shorter progression‐free survival (P = .005, .033, and .037, respectively). High Cdk5 expression was associated with shorter progression‐free survival (P = .006). These data suggest a role for DARPP‐32 and associated signalling kinases as prognostic markers with clinical utility in ovarian cancer. 相似文献
58.
King Alison E. Congreves Katelyn A. Deen Bill Dunfield Kari E. Simpson Myrna J. Voroney R. Paul Wagner-Riddle Claudia 《Plant and Soil》2020,454(1-2):207-215
Plant and Soil - There is a trend of increasing woody biomass in tropical savannas. Here we ask what effect this increase may have on soil carbon pools and fluxes. Using a field experiment we... 相似文献
59.
Vaccines are one of the most successful public health achievements of the last century. Systematic immunisation programs have
reduced the burden of infectious diseases on a global scale. However, there are limitations to the current technology, which
often requires costly infrastructure and long lead times for production. Furthermore, the requirement to keep vaccines within
the cold-chain throughout manufacture, transport and storage is often impractical and prohibitively expensive in developing
countries—the very regions where vaccines are most needed. In contrast, plant-made vaccines (PMVs) can be produced at a lower
cost using basic greenhouse agricultural methods, and do not need to be kept within such narrow temperature ranges. This increases
the feasibility of developing countries producing vaccines locally at a small-scale to target the specific needs of the region.
Additionally, the ability of plant-production technologies to rapidly produce large quantities of strain-specific vaccine
demonstrates their potential use in combating pandemics. PMVs are a proven technology that has the potential to play an important
role in increasing global health, both in the context of the 2015 Millennium Development Goals and beyond. 相似文献
60.
Yang SW Smotryski J Matasi J Ho G Tulshian D Greenlee WJ Brusa R Beltramo M Cox K 《Bioorganic & medicinal chemistry letters》2011,21(1):182-185
A series of 2,4-diphenyl-1H-imidazole analogs have been synthesized and displayed potent human CB2 agonist activity. Many of these analogs showed high functional selectivity over human CB1 receptors. The syntheses, structure-activity relationships, and selected pharmacokinetic data of these analogs are described. 相似文献