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Synergism between calcium-mediated and cyclic AMP-mediated activation of chloride secretion in isolated guinea pig distal colon.

Synergistic effects of Ca2+-mediated secretagogues and cyclic AMP-mediated secretagogues on Cl- secretion by guinea pig distal colon were studied in vitro using Ussing chambers. Short-circuit current (Isc) and bidirectional fluxes of 22Na+ and 36Cl- were measured. Bethanechol (10(-4) M, a Ca2+-mediated secretagogue) caused an increase in Isc, which was enhanced 4-20 fold when the tissue was pretreated with prostaglandin E2 (10(-7)-10(-6) M), vasoactive intestinal polypeptide (5 x 10(-9)-10(-8) M) (cyclic AMP-mediated secretagogues), or 8-bromocyclic AMP (5 x 10(-4)-2 x 10(-3) M). Measurement of 36Cl flux showed that the increase in Isc in the presence of both 8-bromocyclic AMP and bethanechol resulted principally from increased Cl- secretion. On the other hand, the net absorptive flux of 22Na was not influenced under these conditions. Potentiation of the increase in Isc was also elicited by the combination of A23187 (5 x 10(-6) M) and 8-bromocyclic AMP (10(-3) M). The results are consistent with the notion that simultaneous activation of the cyclic AMP-mediated and Ca2+-mediated systems produces a synergistic increase in colonic Cl- secretion.

8-Bromo Cyclic Adenosine Monophosphate↗

Gi-mediated activation of the Syk kinase by the receptor mimetic basic secretagogues of mast cells: role in mediating arachidonic acid/metabolites release.

Syk kinase is essential for FcepsilonRI-mediated signaling and release of inflammatory mediators from mast cells. We now show that activation of rat peritoneal mast cells by the nonimmunological, G(i)-mediated pathway also results in the activation of Syk. We show that compound 48/80 (c48/80), a receptor analogue that activates directly G proteins, activates Syk in a pertussis toxin-sensitive fashion. We further show that Syk activation by c48/80 is blocked by the protein kinase C inhibitor GF109203X, by the phosphatidylinositol 3-kinase inhibitors, wortmannin and LY294002, by EGTA, and by the selective src-like kinase inhibitor PP1. These results suggest that in the nonimmunological, G(i)-mediated pathway, Syk is located downstream from phospholipase C and phosphatidylinositol 3-kinase. However, in common with the FcepsilonRI-mediated pathway, activation of Syk by c48/80 is dependent on a src-like protein tyrosine kinase. Finally, we show that in the nonimmunological pathway, Syk plays a central role in the release of arachidonic acid/eicosanoid metabolites, but not in the release of prestored mediators such as histamine.

Animals↗

Delta-short consensus repeat 4-decay accelerating factor (DAF: CD55) inhibits complement-mediated cytolysis but not NK cell-mediated cytolysis.

NK cells play a critical role in the rejection of xenografts. In this study, we report on an investigation of the effect of complement regulatory protein, a decay accelerating factor (DAF: CD55), in particular, on NK cell-mediated cytolysis. Amelioration of human NK cell-mediated pig endothelial cell (PEC) and pig fibroblast cell lyses by various deletion mutants and point substitutions of DAF was tested, and compared with their complement regulatory function. Although wild-type DAF and the delta-short consensus repeat (SCR) 1-DAF showed clear inhibition of both complement-mediated and NK-mediated PEC lyses, delta-SCR2-DAF and delta-SCR3-DAF failed to suppress either process. However, delta-SCR4-DAF showed a clear complement regulatory effect, but had no effect on NK cells. Conversely, the point substitution of DAF (L147 x F148 to SS and KKK(125-127) to TTT) was half down-regulated in complement inhibitory function, but the inhibition of NK-mediated PEC lysis remained unchanged. Other complement regulatory proteins, such as the cell membrane-bound form factor H, fH-PI, and C1-inactivator, C1-INH-PI, and CD59 were also assessed, but no suppressive effect on NK cell-mediated PEC lysis was found. These data suggest, for DAF to function on NK cells, SCR2-4 is required but no relation to its complement regulatory function exists.

Amino Acid Substitution↗

Beta3 receptors mediate relaxation in stomach fundus whereas a fourth beta receptor mediates tachycardia in atria from transgenic beta3 receptor knockout mice.

Pharmacological studies have revealed a non-beta1, beta2 or beta3 adrenergic receptor that mediates tachycardia in rat and human atria. The present studies utilized transgenic mice that lack the rodent beta3 receptor to explore, in a more definitive fashion, whether a non-beta1, beta2 or beta3 receptor can mediate atrial tachycardia. Insofar as the rat stomach fundus possesses a beta3 receptor mediating relaxation, we examined the stomach fundus from beta3 receptor knockout mice for the presence or absence of the beta3 relaxant receptor. Contractile responses to carbamylcholine were similar in potency and magnitude between mouse stomach fundus from wild type and beta3 receptor knockout animals. However, the classical beta3 receptor agonist CL316243, (10(-8)-10(-6)M) relaxed stomach fundus from wild type mice, but not from the beta3 receptor knockout animals. These data provide functional evidence for the absence of the beta3 receptor in beta3 receptor knockout animals and support the role of beta3 receptors mediating relaxation in mouse stomach fundus. Atria from mice lacking the beta3 receptor responded similarly (in potency and maximal increase in heart rate) to isoproterenol (10(-9)-10(-6)M) as atria from wild type mice. Furthermore, propranolol (3 x 10(-7) M) produced a dextral shift in the concentration response to isoproterenol in atria from both the beta3 receptor knockout and wild type mice with negative log K(B) values of 8.03 and 8.09, respectively. Thus, beta receptors mediating tachycardia to isoproterenol are intact and respond similarly in atria from both knockout and wild type mice. Furthermore, CGP12177, a prototypic 'atypical' beta receptor agonist produced tachycardia with a similar EC50 and maximal response in atria from both the wild type and beta3 receptor knockout mice. Cyanopindolol was a partial agonist relative to CGP12177 in both wild type and beta3 receptor knockout mice. Tachycardia to CGP12177 and cyanopindolol was not blocked by propranolol (3 x 10(-7) M) in atria from either group. These data provide definitive evidence that the receptor mediating tachycardia to CGP12177 and to cyanopindolol in atria from the transgenic beta3 receptor knockout mice is neither the beta1, beta2, nor beta3 adrenergic receptor.

Adrenergic beta-Agonists↗

Rejection of ticks from guinea pigs by anti-hapten-antibody-mediated degranulation of basophils at cutaneous basophil hypersensitivity sites: role of mediators other than histamine.

Previous studies have established that recruitment of basophils to sites of tick feeding in guinea pigs is required to effect immune resistance. In the current study, actively sensitized guinea pigs treated three times daily with H-1 (mepyramine) and H-2 (cimetidine) histamine receptor antagonists, during the challenge tick infestation period, expressed normal resistance to Amblyomma americanum larvae. Similarly, naive guinea pigs treated with anti-histamines four times daily, beginning 7 days before transfer of immune serum and tick challenge and continuing through the tick infestation period, also expressed normal antibody-mediated resistance to A. americanum. These results indicated that histamine was not an important basophil mediator of the resistance response. Ticks allowed to feed on tissue rich in basophils that were induced by sensitization and subsequent local challenge with non-tick protein antigen, keyhole limpet hemocyanin (KLH), expressed normal yield. Ticks that fed on similar tissue rich in basophils induced by sensitization and challenge with KLH, in which the basophils expressed anti-picryl specificity due to systemic passive transfer of anti-picryl antibodies, were rejected when basophils were induced to degranulate by i.v. challenge with picryl antigen at 6 hr (29% rejection), 12 hr (18% rejection), 24 hr (22% rejection), and 48 hr (37% rejection) post-tick attachment. However, basophil degranulation at 18, 72 and 96 hr post-tick attachment had no adverse effect on tick feeding. These hosts were protected from systemic anaphylaxis by treatment with the anti-histamine mepyramine. Release of histamine occurred at tick feeding sites, but vasoactive effects were blocked by mepyramine treatment as evidenced by a lack of increased vascular permeability (bluing) at these sites compared with non-tick-infested tissues, or to cutaneous basophil hypersensitivity (CBH) sites of animals not protected with mepyramine. These results indicate that local recruitment and subsequent degranulation of basophils via immune mechanisms dependent on non-tick antigens can lead to tick rejection, and that basophil-derived mediators other than histamine are involved in this immune resistance response to A. americanum ticks. The identity of the crucial basophil mediator(s) is not known. The significant susceptibility of ticks to basophil-mediator release at 6 to 12 hr and 24 to 48 hr post-attachment coincides with the tick attaching and fast-feeding phases, respectively, suggesting that these phases of tick parasitism are particularly susceptible to the effect of basophil mediators other than histamine.

Animals↗

Comparison between alpha-1 adrenoceptor-mediated and beta adrenoceptor-mediated inotropic components elicited by norepinephrine in failing human ventricular muscle.

The purpose of our study was to investigate the inotropic response to the endogenous agonist norepinephrine mediated through alpha-1 adrenoceptors and to compare this response to that mediated through beta-adrenoceptors in failing human ventricular myocardium. We studied ex vivo the inotropic effect of norepinephrine in isometrically contracting trabecular myocardium from both ventricles of explanted hearts. By studying influence of appropriate adrenoceptor blockers, qualitative characteristics of the inotropic response and sensitivity of the inotropic response to cholinergic stimulation, it was revealed that norepinephrine evoked both alpha-1 and beta adrenoceptor-mediated inotropic effects in failing human ventricle myocardium. Quantitatively the inotropic responses to norepinephrine varied markedly between preparations, but the mean responses elicited through the respective adrenoceptor systems were of comparable magnitude. Concomitant stimulation of alpha-1 and beta adrenoceptors by norepinephrine alone revealed a contribution of an alpha-1 adrenoceptor-mediated component to the final and unopposed inotropic response. Differential sensitivity of the two adrenoceptor systems to norepinephrine depending on etiology of heart failure and possibly also thyroid status was observed. It is concluded that norepinephrine evokes an alpha-1 adrenoceptor-mediated inotropic effect comparable to that evoked through the beta adrenoceptors in failing human ventricular myocardium, and that this alpha-1 adrenoceptor-mediated inotropic effect may be of functional importance.

Adrenergic Antagonists↗

Molecular mechanisms of immune-mediated lysis of murine renal cancer: differential contributions of perforin-dependent versus Fas-mediated pathways in lysis by NK and T cells.

Mice bearing the experimental murine renal cancer Renca can be successfully treated with some forms of immunotherapy. In the present study, we have investigated the molecular pathways used by NK and T cells to lyse Renca cells. Renca cells normally express low levels of Fas that can be substantially enhanced by either IFN-gamma or TNF-alpha, and the combination of IFN-gamma + TNF-alpha synergistically enhances cell-surface Fas expression. In addition, cells pretreated with IFN-gamma and TNF-alpha are sensitive to lysis mediated by Fas ligand (FasL)-expressing hybridomas (dllS), cross-linking of anti-Fas Abs or soluble Fas (FasL). Lysis via Fas occurs by apoptosis, since Renca shows all the typical characteristics of apoptosis. No changes in levels of bcl-2 were observed after cytokine treatments. We also examined cell-mediated cytotoxic effects using activated NK cells and T cells from gld FasL-deficient mice, and perforin-deficient mice, as well as wild-type C57BL/6 and BALB/c mice. Interestingly, the granule-mediated pathway predominated in killing of Renca by activated NK cells, while the Fas/FasL pathway contributed significantly to cell-mediated killing of Renca by activated T cells. These results suggest that killing of Renca tumor cells by immune effector cells can occur by both granule and Fas-mediated cytotoxicity. However, for the Fas-mediated pathway to function, cell surface levels of Fas need to be increased beyond a critical threshold level by proinflammatory cytokines such as IFN-gamma and TNF-alpha.

Animals↗

Time-dependent changes of inflammatory mediators in the lungs of humans exposed to 0.4 ppm ozone for 2 hr: a comparison of mediators found in bronchoalveolar lavage fluid 1 and 18 hr after exposure.

Acute exposure of humans to ozone results in reversible respiratory function decrements and cellular and biochemical changes leading to the production of substances which can mediate inflammation and acute lung injury. While pulmonary function decrements occur almost immediately after ozone exposure, it is not known how quickly the cellular and biochemical changes indicative of inflammation occur in humans. Increased bronchoalveolar lavage (BAL) fluid levels of neutrophils (PMNs) and prostaglandins (PGE2) have been reported in humans as early as 3 hr and as late as 18 hr after exposure. The purpose of this study was to determine whether a broad range of inflammatory mediators are elevated in BAl fluid within 1 hr of exposure. We exposed eight healthy volunteers twice: once to 0.4 ppm ozone and once to filtered air. Each exposure lasted for 2 hr during which the subjects underwent intermittent heavy exercise (66 liters/min). BAL was performed 1 hr after the exposure. Ozone induced rapid increases in PMNs, total protein, LDH, alpha-1 antitrypsin, fibronectin, PGE2, thromboxane B2, C3a, tissue factor, and clotting factor VII. In addition, there was a decrease in the recovery of total cells and alveolar macrophages, and decreased ability of alveolar macrophages to phagocytize Candida albicans. A comparison of these changes with changes observed in an earlier study in which subjects underwent BAL 18 hr after an identical exposure regimen indicates that IL-6 and PGE2 levels were higher 1 hr after exposure than 18 hr after exposure, fibronectin and tissue-plasminogen activator levels were higher 18 hr after exposure, and that PMNs, protein, and C3a were present at essentially the same levels at both times. These results indicate that (i) several inflammatory mediators are already elevated 1 hr after exposure; (ii) some mediators achieve their maximal levels in BAL fluid at different times following exposure. These data suggest that the inflammatory response is complex, depending on a cascade of timed events, and that depending on the mediator of interest one must choose an appropriate sampling time.

Adolescent↗

[Effects of interleukin-10 on expression of inflammatory mediators and anti-inflammatory mediators during acute lung injury in rats].

OBJECTIVE: To investigate the effects of interleukin-10 (IL-10) on expression of inflammatory mediators and anti-inflammatory mediators during acute lung injury (ALI). METHODS: Rat model of ALI was reproduced by intratracheal instillation of lipopolysaccharide (LPS) in a dose of 10 mg/kg. Fifty-four male SD rats were randomly divided into control group, LPS group and LPS+IL-10 group, with 18 rats in each group (6 rats at 2, 6 and 24 hours respectively). Arterial gas analysis, the total protein concentration in bronchoalveolar lavage fluid (BALF), the total cell counts and classification in BALF, the lung coefficient, lung pathology were examined. Reverse transcription-polymerase chain reaction (RT-PCR) method was used to determine the expression of tumor necrosis factor-alpha (TNF-alpha), interleukin-1beta (IL-1beta) and IL-1ra mRNA in lung tissue. RESULTS: (1)In LPS group the partial pressure of oxygen in artery (PaO(2)) was progressively decreased, while the lung coefficient, the total protein concentration, the total cell counts in BALF were greatly increased, and lung pathology showed severe polymorphonuclear leukocytes infiltration with bleeding and hyaline membranes formation. In LPS+IL-10 group the values of all above parameters were alleviated. (2)In LPS group TNF-alpha mRNA expression peaked at 2 hours, then decreased sharply; IL-1beta mRNA expression greatly increased at 2 hours, peaked at 6 hours, then decreased; IL-1ra mRNA expression increased and peaked at 6 hours, remaining higher than control group at 24 hours. IL-10 inhibited TNF-alpha mRNA and IL-1beta mRNA expression but showed no effect on IL-1ra mRNA expression. CONCLUSION: (1)ALI is characterized by overwhelming expression of TNF-alpha mRNA, IL-1beta mRNA, while the expression of IL-1ra mRNA is much delayed than TNF-alpha mRNA and IL-1beta mRNA. It suggests that there is an imbalance between inflammatory/anti-inflammatory mediators in the early phase of ALI. (2)IL-10 can inhibit the expression of inflammatory mediators and has no effect on the expression of anti-inflammatory mediators, thus it contributes to the balance between them, ameliorating ALI in rats.

Acute Lung Injury↗

The efficacy of complement-mediated phagocytosis of Cryptococcus neoformans is dependent on the location of C3 in the polysaccharide capsule and involves both direct and indirect C3-mediated interactions.

Complement component 3 (C3) is the major opsonin for the pathogenic fungus Cryptococcus neoformans in the non-immune host. However, the efficiency of complement-mediated opsonization varies, depending on the strain, through mechanisms that are not understood. Analysis of complement-mediated phagocytosis for 12 strains grown in Sabouraud medium revealed that phagocytic indices were inversely correlated with capsule volume. In contrast, there was no correlation between phagocytic index and capsule volume for IgG1-opsonized cells. When capsule size was increased, the efficacy of complement-mediated phagocytosis decreased, whereas that of antibody-mediated phagocytosis increased. C3 localized inside the capsule and at the outer capsule edge for poorly phagocytozed and well-phagocytozed strains, respectively. Blocking experiments revealed that complement-mediated phagocytosis occurred through complement receptor 3 (CR3), without significant involvement of CR1 or CR4. Blocking experiments with antibodies to C3 did not completely abrogate yeast cell uptake, consistent with phagocytosis through glucuronoxylomannan-CR3 interactions. Our data explain how some large encapsulated cells avoid phagocytosis and suggest a novel strategy for immune evasion whereby a microbial capsule interferes with phagocytosis by modifying the location of C3 deposition.

Complement C3↗

Fas-mediated stimulation induces IL-8 secretion by rheumatoid arthritis synoviocytes independently of CPP32-mediated apoptosis.

In this study, we investigated the IL-1 beta converting enzyme (ICE) family cysteine proteases responsible for the Fas-mediated apoptosis of rheumatoid arthritis (RA) synoviocytes and their involvement in proinflammatory cytokine production. CPP32 inhibitor, but not ICE inhibitor, was capable of inhibiting the Fas-mediated apoptosis of RA synovial cells. CPP32, but not ICE, was activated in response to anti-Fas stimulation. IL-8, but not IL-1 beta, was secreted from the anti-Fas-stimulated RA synoviocytes even in the presence of CPP32 inhibitor. These results demonstrated that CPP32, but not ICE, is the predominant cysteine protease that mediates the Fas-mediated apoptosis of RA synovial cells. We also demonstrated that anti-Fas stimulation of RA synoviocytes leads to IL-8 secretion independently of the CPP32-mediated apoptosis, which would accelerate inflammation.

Apoptosis↗

Glutamate-mediated excitotoxic death of cultured striatal neurons is mediated by non-NMDA receptors.

Considerable interest has focused on the role of glutamate-mediated excitotoxicity in neurodegenerative disorders of the basal ganglia. The in vitro data on the receptor mechanisms involved in this process, however, have been inconclusive. Some studies have indicated that excitotoxins acting at NMDA receptors kill striatal neurons and others have indicated that NMDA receptor-mediated excitotoxic death of striatal neurons is minimal in the absence of cortex. In the present study, we used a pharmacological approach to carefully reexamine this issue in 2-week-old cultures of striatal neurons dissociated from E17 rat embryos. The sensitivity of these neurons to glutamate agonists and antagonists was determined by monitoring cell loss in identified regions of the growth dishes. We found that glutamate killed striatal neurons with an EC50 of 100 microM. This loss was not mediated by NMDA receptors, since it was not reduced by the NMDA receptor antagonist APV (0.1-1.0 mM). Consistent with this result, up to 50 mM NMDA receptor-specific excitotoxin quinolinic acid (QA) did not affect neuronal survival. Depolarizing the QA-exposed neurons with 35 mM potassium chloride to enhance NMDA receptor activation by QA also did not produce neuron loss. The metabotropic glutamate receptor antagonist AP3 (500 microM) also had no effect on the striatal neuron loss produced by 100 microM glutamate. In contrast, the non-NMDA antagonist GYKI 52466 (100 microM) did block the excitotoxic effect of glutamate (100 microM). Specific AMPA and KA receptor agonists and the non-NMDA antagonist GYKI 52466 revealed that the non-NMDA receptor-mediated excitotoxic effect of glutamate was mediated by KA receptors. These results suggest that cultured striatal neurons are directly vulnerable to non-NMDA glutamate agonists, but not to NMDA and metabotropic glutamate agonists. Thus, non-NMDA receptors may play a greater role in the excitotoxic death of striatal neurons in disease and experimental animal models than previously realized.

Animals↗

The putative role of arylsulfatase in interleukin-2-mediated cytotoxicity and interleukin-7-mediated bactericidal activity of natural killer cells.

We have examined the cytolytic and bactericidal activity of resting and cytokine-stimulated natural-killer (NK) cells against K562 and Daudi cell lines and Escherichia coli, respectively. Unstimulated NK cells showed considerable cytolytic activity against K562 (64 +/- 4%) and relatively low activity against the Daudi cell lines (22 +/- 9%). Pretreatment of NK cells with the arylsulfatase (AS) type-II-specific inhibitor NaH2PO4 reduced cytotoxicity towards K562 and Daudi 1.3- and 2.9-fold (p < 0.05; n = 12), respectively, indicating that AS participates in NK-mediated cytotoxicity. Interleukin-2 (IL-2) (200 units/ml) caused a 1.3- and 3.5-fold (p < 0.5; n = 12) enhancement of NK cytotoxic activity against K562 and Daudi, respectively. Pretreatment of these cells with the AS type-II-specific inhibitor NaH2PO4 reduced cytotoxicity 1.1-fold towards K562 (p < 0.05; n = 12) and 1.2-fold towards Daudi (p > 0.05; n = 12) indicating that AS does not participate in IL-2-mediated NK cytolytic activity against these cell lines. IL-7 (3 units/ml) did not cause any enhancement of NK cytolytic activity. Unstimulated NK cells showed considerable bactericidal activity against E. coli (23 +/- 4%). Incubation of resting NK cells with NaH2PO4 reduced the bactericidal effect only by 1.09-fold (p > 0.05; n = 12), indicating that AS does not mediate this effect. IL-2 (200 units/ml) and IL-7 (3 units/ml) enhanced the bactericidal activity 1.5- and 2.2-fold, respectively (p < 0.05; n = 12). This effect was not influenced by incubation of IL-2-stimulated cells with NaH2PO4, indicating that AS does not participate in the IL-2-mediated NK bactericidal effect. IL-2 seems to exert its stimulatory effect upon NK-mediated bactericidal activity by a different, non-AS-dependent mechanism. However, incubation of IL-7-stimulated NK cells with NaH2PO4 reduced the NK bactericidal effect by 1.2-fold (p < 0.05; n = 12), indicating that AS may have a role in this reaction. These data can be further confirmed by detection of AS through degranulation of NK cells, showing that IL-2 induced only mild degranulation of resting and f-MLP-stimulated NK cells (26 +/- 1% vs 22 +/- 2% and 31 +/- 2% vs 29 +/- 2, respectively) (p > 0.05; n = 8). In contrast, IL-7 showed significant enhancement of AS release in resting or f-MLP-induced NK cells (36 +/- 3% vs 22 +/- 2% and 49 +/- 3% vs 29 +/- 2%, respectively) (p < 0.05; n = 8).

Arylsulfatases↗

Murine trophoblast resists cell-mediated lysis. II. Resistance to natural cell-mediated cytotoxicity.

The susceptibility of murine trophoblast cells to natural cell-mediated cytotoxicity has been assessed. Primary short-term cultures of murine trophoblast cells isolated from 14-day placentas were found to be resistant to endogenous and interferon-activated natural killer (NK) cells and natural cytotoxic cells. That the relevant target structures are expressed on the surface of trophoblast cells and accessible to the effectors was demonstrated by their ability to inhibit the lysis of NK-sensitive target cells (YAC-1) in a dose-dependent manner. The lytic resistance of trophoblast cells was unaffected by neuraminidase treatment, inhibition of protein synthesis, or extending the assay time to 12 hr. Moreover, trophoblast cells were resistant to antibody-dependent cell-mediated cytotoxicity when coated with an alloantibody capable of mediating their lysis in the presence of heterologous complement. Neither the preincubation of effector cells in concentrated trophoblast culture supernatants nor the direct exposure of effectors to monolayers of trophoblast cells inhibited their NK lytic activity, indicating that the secretion of a suppressive factor or the direct inactivation of the NK cells was not responsible for the observed resistance to lysis. These observations, together with previous results showing the resistance of trophoblast to cytotoxic T cell-mediated lysis, reveal that murine trophoblast cells possess a resistance mechanism against several forms of cell-mediated lysis. This feature of trophoblast cells at the maternal-fetal interface is likely to play an important role in protecting the fetoplacental allograft from immune rejection.

Animals↗

Comparative studies on chromosome aberrations induced by polycyclic hydrocarbons in cell-mediated and microsome-mediated assay.

Studies were made on chromosome changes in Chinese hamster V79 cells induced by the polycyclic hydrocarbons, benzo[alpha]pyrene (BP), 3-methylchol-anthrene (MC) and 7,12-dimethylbenz[alpha]anthracene (DMBA) in the presence and absence of cell-mediated and microsome-mediated activation systems. In cell-mediated assay, BP, MC and DMBA induced concentration-dependent chromosome aberrations in V79 cells, at concentrations of 0.5--1.0 to 10.0 micrograms/ml in the presence of lethally irradiated Syrian hamster embryonal feeder cells at 2.0 X 10(6) cells/60-mm dish. The highest incidences of cells with aberrant chromosomes, observed at concentrations of 20 micrograms/ml, were 24.0% (BP), 23.0% (MC) and 80.0% (DMBA). In the absence of feeder cells, these chemicals did not induce chromosome aberrations in V79 cells, even at the maximum concentrations tested, only background levels being observed. In microsome-mediated assay, BP, MC and DMBA at 20 micrograms/ml also induced chromosome aberrations when combined with microsomes. However, the highest incidences of aberrations were observed with lower amounts of microsomes than usual, the optimal amount of microsomes ranging from 1 to 10%. In this range, the highest incidences of cells with aberrant chromosomes were 10.0% (BP), 9.0% (MC) and 28.0% (DMBA), that is about half to one-third those observed in cell-mediated assay.

Animals↗

In contrast to AAV-mediated Cntf expression, AAV-mediated Gdnf expression enhances gene replacement therapy in rodent models of retinal degeneration.

While AAV- and lentivirus-mediated gene replacement therapy can produce structural and functional improvements in various animal models of inherited retinal degeneration, this approach often has very limited effects on the rate of photoreceptor cell loss. Neurotrophic factors such as ciliary neurotrophic factor (CNTF) and glial cell line-derived neurotrophic factor (GDNF) have been shown to prolong photoreceptor survival in rodent models of retinal degeneration, but AAV-mediated Cntf expression also results in suppression of electrophysiological responses from the retina. In this study using mice, we show that while the deleterious effects mediated by CNTF are dose-dependent, administering a dose of CNTF that does not adversely affect retinal function precludes its ability to delay photoreceptor cell death. In evaluating GDNF as a neuroprotective agent, we show that AAV-mediated Gdnf expression does not produce adverse effects similar to those of CNTF. In addition, we demonstrate the ability of AAV-mediated delivery of Gdnf to slow cell death in two rodent models of retinitis pigmentosa and to enhance retinal function in combination with the relevant gene replacement therapy. These data show for the first time that a combination of these approaches can provide enhanced rescue over gene replacement or growth factor therapy alone.

Animals↗

A novel cell-permeable cromoglycate derivative inhibits type I Fc epsilon receptor mediated Ca2+ influx and mediator secretion in rat mucosal mast cells.

Type I Fc epsilon receptor (Fc epsilon RI) mediated Ca2+ uptake and secretion of rat serosal mast cells have been shown to be inhibited by disodium 1,3-bis [(2'-carboxylatochromon-5'-yl) oxy]-2-hydroxypropane (disodium cromoglycate, DSCG), which is widely employed in the treatment of allergic asthma [Foreman et al. (1977) Br. J. Pharmacol. 59, 473P-474P; Cox (1967) Nature (London) 216, 1328-1329]. This drug was also found to modify the protein phosphorylation pattern of these mast cells. [Theoharides et al. (1980) Science 207, 80-82]. We have isolated by affinity chromatography on a water-insoluble cromoglycate-carrying matrix a cytosolic enzyme recently identified as a nucleoside 5'-diphosphate kinase. In order to examine a possible intracellular activity of the drug, a cell-permeant cromoglycate derivative, 1,3-bis [[2'-[[(acetoxymethyl)oxy]carbonyl]chromon-5'- yl]oxy]-2-hydroxypropane [bis(acetoxymethyl) cromoglycate, CG/AM], has been synthesized, and its uptake and effect on the Fc epsilon RI-mediated exocytosis of mast cells was investigated. A tritium-labeled CG/AM derivative, used as radioactive tracer, was found to permeate mucosal mast cells of the rat line RBL-2H3 and accumulate intracellularly up to 40-fold its extracellular concentration following hydrolysis by cytoplasmic hydrolases. A CG/AM dose dependent inhibition of the Fc epsilon RI-induced mediator secretion was observed in RBL-2H3 cells loaded with this compound (I50 approximately 40 microM extracellular CG/AM). A similar dose-dependent inhibition was observed for both the Fc epsilon RI-mediated transient rise in the concentration of cytosolic free Ca2+ ions [( Ca2+]i) and the net Ca2+ influx, as monitored by the fluorescent indicator Quin2 and the radioactive tracer 45Ca2+, respectively. These results clearly show that cell-permeant cromoglycate inhibits the Fc epsilon RI-mediated Ca2+ influx into the cell and further underscore the dominant role of this process in the coupling of stimulus to secretion in RBL cells. Furthermore, with the identification of nucleoside 5'-diphosphate kinase as a potential intracellular target for CG activity, distinct mechanisms of action may be inferred for cell-permeant and nonpermeant forms of CG.

Animals↗

The role of mediators in memory retrieval as a function of practice: controlled mediation to direct access.

The role of prior knowledge in retrieval of Spanish-English vocabulary pairs learned using keyword mediators was examined in 4 experiments. Retrieval was tested immediately after learning and after 1-week and 1-month no-practice intervals (Experiment 1), after moderate retrieval practice (Experiment 2), and after extended retrieval practice (Experiments 3 and 4). Using accuracy, latency, and verbal report data, a detailed account of memory retrieval processes was developed. Initial retrieval is an explicit mediation process that involves retrieving keyword mediators into working memory and using them as retrieval cues to access the English equivalents of the Spanish words. After extended vocabulary retrieval practice, this sequential mediation process qualitatively changed to a direct retrieval process in which the English equivalent was accessed in a single working memory step. However, direct retrieval was still influenced by a covert mediation process.

Adult↗