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Cutaneous sensitivity induced by immunization with irradiated Schistosoma mansoni cercariae. II. Autoimmunoregulation of cell-mediated cutaneous sensitivity and its reversal.

C57BL/6 mice sensitized by abdominal, dermal exposure to irradiated (50 kR) Schistosoma mansoni cercariae develop partial protection against subsequent exposure with unattenuated cercariae and express cell-mediated cutaneous sensitivity upon challenge with irradiated cercariae. Autoimmunoregulation occurs as a part of this sensitization, and can be demonstrated by augmentation of cutaneous sensitivity upon use of appropriate regimens of cyclophosphamide. Mice exposed to irradiated cercariae by either intraperitoneal or ear pinna routes developed a transient hyporesponsiveness to cercarial challenge. This unresponsiveness was also reversed by pretreatment with cyclophosphamide. Timed removal of the site of effective sensitization (abdominal skin) 7 days after exposure consistently led to reduced cutaneous responsiveness. This artificially induced hyporesponsiveness was reversed by either cyclophosphamide treatment or systemic administration of anti-I-Jb, but not anti-I-Jk sera. The data indicate the involvement of cyclophosphamide-sensitive, I-J-bearing T-suppressor cells or factors in the autoimmunoregulation that controls this cutaneous sensitivity. Parallel challenge infection studies in immunized mice treated with cyclophosphamide demonstrated that the resultant augmentation of cutaneous sensitivity did not lead to concomitantly elevated levels of resistance. Furthermore, successful adoptive cell transfer of cutaneous responsiveness also did not ensure protection against cercarial challenge. These observations indicate that dermal cell-mediated anti-cercarial responsiveness is not a sufficient mechanism to explain resistance in mice immunized with irradiated cercariae.

Animals↗

Sensitivity to punishment and sensitivity to reward and traffic violations.

The aim of our study consists of contributing information on the relationship between the personality variables derived from Gray's model and the conduct that accompanies the infringement of the road traffic rules. Seven hundred and ninety-two adults of both sexes took part in the study (389 men and 403 women), all of whom had driving licences and drove frequently. The subjects answered "The Sensitivity to Punishment and Sensitivity to Reward Questionnaire", a scale of monotony avoidance, and two Likert scales of attitude and behaviour in connection with traffic violations. We found a high positive relationship between attitude and behaviour, with the men infringing the rules more than the women. Hypotheses regarding a relationship between traffic offences and sensibility to reward and monotony avoidance were confirmed. Those people with high scores in sensitivity to punishment and low ones in sensitivity to reward were those who drove within the law, while those with low sensitivity to punishment and high sensitivity to reward were those who broke it more. Sensitivity to reward was a stronger determinant in encouraging infringement of the rules than was sensitivity to punishment in discouraging the subjects to do so.

Accidents, Traffic↗

Pain catastrophizing, but not injury/illness sensitivity or anxiety sensitivity, enhances attentional interference by pain.

UNLABELLED: Pain draws on attentional resources, thereby disturbing the pursuit of ongoing activities. Several studies have made use of the primary task paradigm to study the disruptive function of pain on attention. In this paradigm, participants perform an attentionally demanding task, while they are occasionally distracted by mild electrical stimulation. Deterioration in task performance (in terms of speed and accuracy) is then taken as an index of attentional interference. One major finding with this paradigm was that pain catastrophizing enhances attentional interference. The current study aimed to replicate this finding and to explore the possible influence of anxiety sensitivity and injury/illness sensitivity on attentional interference. Healthy volunteers (n = 48) performed an auditory discrimination task and were thereby occasionally distracted by low electrocutaneous stimulations. The performance on the discrimination task was subsequently related to participants' scores on the Pain Catastrophizing Scale, the Anxiety Sensitivity Index, and the Injury/illness Sensitivity Index. We were unable to demonstrate an association of either injury/illness sensitivity or anxiety sensitivity with attentional interference. Results did, however, confirm the finding that pain catastrophizing enhances attentional interference. PERSPECTIVE: The present study showed that pain disrupts ongoing activities. This effect is enlarged in those with high levels of pain catastrophizing and is related to the threatening nature of pain stimuli. The role of anxiety sensitivity and injury/illness sensitivity seems to differ from the role of catastrophizing and needs further research.

Adolescent↗

D(3) dopamine receptors are down-regulated in amphetamine sensitized rats and their putative antagonists modulate the locomotor sensitization to amphetamine.

D(3) dopamine receptor agonists inhibit locomotor activity in rodents and modulate the reinforcing effect of psychostimulants; however, their functional role during behavioral sensitization remains unclear. In the present study, we intend to investigate if D(3) dopamine receptors alter during the amphetamine sensitization and test if manipulation of D(3) receptors would affect the development of locomotor sensitization to amphetamine. We have found that D(3) dopamine receptors are down-regulated in the limbic forebrain in chronic amphetamine-treated (5 mg/kg x 7 days) animals. The levels of both D(3) receptor protein (B(max) value) and mRNA decreased significantly in the behaviorally sensitized rats compared to the saline-treated controls. When animals were co-administered a putative D(3) receptor antagonist (U99194A or GR103691; 20 microg x 7 days; intracerebroventricle) and amphetamine (5 mg/kg x 7 days, i.p.), the locomotor sensitization to amphetamine was significantly inhibited. However, when the putative D(3) receptor antagonist U99194A was administered during the amphetamine withdrawal period at day 10, it did not affect the development of locomotor sensitization. Furthermore, pretreatment with the preferential D(3) agonist 7-hydroxydipropylaminotetralin partially blocked the inhibitory effect of U99194A on locomotor sensitization. These data prove the participation of D(3) dopamine receptors in the development of amphetamine sensitization and, in addition, suggest a potential application for D(3) antagonists in the prevention of amphetamine addiction.

Amphetamine↗

The spectral sensitivities of the middle- and long-wavelength-sensitive cones derived from measurements in observers of known genotype.

The spectral sensitivities of middle- (M-) and long- (L-) wavelength-sensitive cones have been measured in dichromats of known genotype: M-cone sensitivities in nine protanopes, and L-cone sensitivities in 20 deuteranopes. We have used these dichromat cone spectral sensitivities, along with new luminous efficiency determinations, and existing spectral sensitivity and color matching data from normal trichromats, to derive estimates of the human M- and L-cone spectral sensitivities for 2 and 10 degrees dia. central targets, and an estimate of the photopic luminosity function [V(lambda)] for 2 degrees dia. targets, which we refer to as V(2)*(lambda). These new estimates are consistent with dichromatic and trichromatic spectral sensitivities and color matches.

Adult↗

Biology of common beta receptor-signaling cytokines: IL-3, IL-5, and GM-CSF.

IL-3, IL-5, and GM-CSF are related hematopoietic cytoines that are important for allergic inflammation. The receptors for human IL-5, IL-3, and GM-CSF are members of the hematopoietin receptor superfamily and are comprised of a cytokine-specific alpha chain and the common beta chain that is shared among these cytokines for signaling. Each of these cytokines contributes to the differentiation and function of leukocyte subpopulations and have clinical importance in protective immunity and in the pathophysiology of a spectrum of immunologic diseases that are as diverse as allergy and asthma, pulmonary alveolar proteinosis, neurodegenerative diseases, and malignancies. Delineating the biology of these cytokines is enabling the development of new strategies for diagnosing and treating these diseases and modulating immune responses.

Animals↗

Subchronic caffeine exposure induces sensitization to caffeine and cross-sensitization to amphetamine ipsilateral turning behavior independent from dopamine release.

We have recently shown that repeated exposure to caffeine sensitizes rats to the motor activating effects of dopamine D(1) and D(2) receptor agonists. In order to study the role of dopamine in this effect, sensitization to caffeine and cross-sensitization between caffeine and amphetamine was evaluated by studying turning behavior and in vivo striatal dopamine release in unilaterally 6-hydroxydopamine-lesioned rats. Administration of caffeine (15 mg/kg) for 2 weeks, on alternate days, induced a significant increase in ipsilateral turning behavior during the course of treatment, indicating that sensitization to caffeine took place in the intact striatum. Caffeine modestly increased dopamine release in the intact dorsa-lateral striatum and no significant difference between the first (+38%) and the last (+51%) injection was observed. Amphetamine (2 mg/kg) induced a significantly higher ipsilateral turning behavior in caffeine-sensitized rats than in vehicle-pretreated rats, however, a similar increase in dopamine release (+900 and +800%) was observed in the two groups. The results are the first demonstration that caffeine pre-exposure sensitizes the motor-stimulant effects of caffeine itself and of amphetamine. Sensitized ipsilateral turning after caffeine and amphetamine are not correlated to modification in striatal dopamine release, rather, postsynaptic modifications in dopamine and adenosine receptor interaction might be involved in the sensitization phenomena observed.

Amphetamine↗

Repeated ethanol intoxication induces behavioral sensitization in the absence of a sensitized accumbens dopamine response in C57BL/6J and DBA/2J mice.

Repeated exposure to drugs of abuse results in an increased sensitivity to their behavioral effects, a phenomena referred to as behavioral sensitization. It has been suggested that the same neuroadaptations underlying behavioral sensitization contribute to the maintenance and reinstatement of addiction. Dysregulation of dopamine (DA) neurotransmission in the mesoaccumbens system is one neuroadaptation that is thought to lead to the compulsive drug-seeking that characterizes addiction. Evidence that sensitization to psychostimulants and opiates is associated with an enhancement of drug-evoked DA levels in the nucleus accumbens has also been obtained. Like other drugs of abuse, the acute administration of ethanol (ETOH) stimulates DA release in this brain region. Moreover, repeated ETOH experience results in an enhanced behavioral response to a subsequent ethanol challenge. Data regarding the influence of repeated ethanol intoxication and withdrawal upon mesoaccumbal DA neurotransmission is limited. Studies examining ETOH-evoked alterations in mesoaccumbal DA neurotransmission as a function of withdrawal duration are lacking. The present experiments quantified basal and ethanol-evoked DA levels 14 days and 24 h following the cessation of a repeated ETOH intoxication protocol, which results in sensitization to the locomotor activating effects of ethanol. Locomotor activity was assessed in parallel groups of animals. Studies were conducted in two mouse strains, C57BL/6J and DBA/2J, which differ in their behavioral responses to ETOH. The results indicate the development of transient tolerance to both ETOH-induced behavioral activation and evoked accumbens DA release at early withdrawal. Moreover, no enhanced DA response to a subsequent ETOH challenge could be demonstrated in ETOH experienced animals 2 weeks after withdrawal, in spite of the observation of clear behavioral sensitization at this time point. These results suggest that, at least in the case of ethanol, sensitization of the DA mesolimbic system may not be necessary for the development of behavioral sensitization.

Alcoholic Intoxication↗

Lymphocyte-sensitivity to glucocorticoid correlates with the sensitivity to cyclosporin A and tacrolimus in chronic renal failure patients.

AIMS: Association between lymphocyte-sensitivity to immunosuppressants in transplant recipients in vitro and clinical outcomes has been demonstrated. In general, renal transplant recipients are treated with a combination of immunosuppressants such as either glucocorticoid/cyclosporin A (CsA) or glucocorticoid/tacrolimus (FK506) but the pharmacological complementarity of these drugs is still controversial. We examined relationships between the lymphocyte-sensitivities to these immunosuppressants. METHODS: We examined lymphocyte-sensitivities to prednisolone (PSL), CsA, and FK506 in vitro in a total of 190 chronic renal failure (CRF) patients and 140 healthy subjects. The lymphocyte-sensitivity was evaluated from the IC50 value against mitogen-stimulated lymphocyte-blastogenesis in vitro. RESULTS: Statistically significant correlations of the IC50 values in CRF patients between the following pairs of drugs were observed: PSL and CsA (P<0.0001; n=129, r=0.419), PSL and FK506 (P<0.001; n=54, r=0. 441), and CsA and FK506 (P<0.0001; n=45, r=0.608). Similar correlations were also observed in lymphocytes from healthy subjects. The population of CRF patients who exhibited high IC50 values (low sensitivities) to PSL and FK506 was significantly larger than that of healthy subjects (P<0.05). CONCLUSIONS: Patients who showed low lymphocyte-sensitivity to either of the drugs also may exhibit low sensitivity to the others, and thus they may have a high risk of unsatisfactory outcome under combination therapy after renal transplantation. To overcome this risk, the selection of immunosuppressants is recommended to be restricted according to individual lymphocyte-sensitivities to these drugs in vitro, or alternatively, by addition of other drugs with different mechanisms for immunosuppression.

Adult↗

The association of skin-sensitizing antibody with the beta 2A-globulins in sera from ragweed-sensitive patients.

1. The removal of the beta(2)A-globulins from three sera from treated ragweed-sensitive individuals by immune absorption was associated with the loss of all detectable skin-sensitizing antibody activity as demonstrated by Prausnitz-Küstner testing. 2. Gel filtration studies, with sephadex G-200, indicated that the fractions containing only macroglobulins were devoid of all detectable skin-sensitizing antibody activity. 3. The immune absorption of the gamma-globulins from a serum fraction containing beta(2)A-globulins, gamma-globulins, and a trace of beta(2)M-globulins had no detectable influence on the skin-sensitizing antibody activity. 4. The removal of a portion of the albumin from the allergic sera by immune absorption, with retention of the skin-sensitizing activity, indicated that the loss of skin-sensitizing antibody was not due to non-specific absorption on an antigen-antibody precipitate. 5. No inhibition of the Prausnitz-Küstner reaction was observed when sheep serum, normal human serum, or normal human gamma-globulins were tested in concentrations described. 6. We conclude that the skin-sensitizing antibody activities in the three sera from treated ragweed-sensitive individuals studied were associated with the beta(2)A-globulins.

Ambrosia↗

Isoflurane sensitizes the cardiac sarcolemmal adenosine triphosphate-sensitive potassium channel to pinacidil.

BACKGROUND: Cardioprotective effects of isoflurane are partially mediated by the sarcolemmal adenosine triphosphate-sensitive potassium (sarcK ATP ) channel. The authors tested the hypothesis that isoflurane sensitizes sarcK ATP channels to a potassium channel opener, pinacidil, adenosine- and phospholipid-mediated pathways. METHODS: Activation by pinacidil of the K ATP current (I KATP ) was monitored in guinea pig ventricular myocytes at 0.5 and 5 mm intracellular ATP in the whole cell configuration of the patch clamp technique. The sensitization effect was evaluated by pretreating each myocyte with isoflurane (0.57 +/- 0.04 mm) before application of pinacidil (5 micro m) in the continued presence of the anesthetic. To investigate whether intracellular signaling pathways may be involved in isoflurane sensitization, the authors used the adenosine receptor antagonist theophylline (100 micro m) and the phosphatidylinositol kinase inhibitor wortmannin (100 micro m). RESULTS: The density of pinacidil-activated I KATP was higher at 0.5 mm ATP (20.7 +/- 3.2 pA/pF) than at 5 mm ATP (2.0 +/- 0.3 pA/pF). At 0.5 mm ATP, pretreatment with isoflurane caused an increase in density of pinacidil-activated I KATP (42.4 +/- 6.2 pA/pF) and accelerated the rate of current activation (from 5.4 +/- 1.2 to 39.0 +/- 7.9 pA. pF(-1). min(-1) ). Theophylline attenuated current activation by pinacidil (9.4 +/- 3.9 pA/pF) and abolished the sensitization effect of isoflurane on I KATP (10.0 +/- 2.5 pA/pF). Wortmannin did not alter pinacidil activation of I KATP (13.2 +/- 1.7 pA/pF) but prevented sensitization by isoflurane (15.8 +/- 4.5 pA/pF). CONCLUSIONS: These results suggest that isoflurane increases sensitivity of cardiac sarcK ATP channels to the potassium channel opener pinacidil. Blockade of adenosine receptors or phosphatidylinositol kinases abolishes the sensitization effect, suggesting that the adenosine and phospholipid signaling pathways may be involved in the actions by isoflurane.

ATP-Binding Cassette Transporters↗

ATP sensitivity of ATP-sensitive K+ channels: role of the gamma phosphate group of ATP and the R50 residue of mouse Kir6.2.

ATP-sensitive K (K(ATP)) channels are composed of Kir6, the pore-forming protein, and the sulphonylurea receptor SUR, a regulatory protein. We and others have previously shown that positively charged residues in the C terminus of Kir6.2, including R201 and K185, interact with the alpha and beta phosphate groups of ATP, respectively, to induce channel closure. A positively charged residue in the N terminus, R50, is also important, and has been proposed to interact with either the gamma or beta phosphate group of ATP. To examine this issue, we systematically mutated R50 to residues of different size, charge and hydropathy, and examined the effects on adenine nucleotide sensitivity in the absence and presence of SUR1. In the absence of SUR1, only the size of residue 50 significantly altered ATP sensitivity, with smaller side chains decreasing ATP sensitivity. In the presence of SUR1, however, hydrophathy and charge also played a role. Hydrophilic residues decreased ATP sensitivity more than hydrophobic residues for small size residues, and, surprisingly, negatively charged residues E and D preserved ATP sensitivity and increased ADP sensitivity relative to the wild-type residue R. These observations suggest that a negative charge near position 50, due to either mutation of R50 or the interaction of the gamma phosphate group of ATP with R50, facilitates closure of the ATP-dependent gate. Mutation of the nearby positively charged residue R54, known to be involved in stabilizing channel opening via electrostatic interactions with phosphatidylinositol 4,5-bisphosphate (PIP2), also caused increased ADP sensitivity as compared with ATP, suggesting a loss of function of ATP's gamma phosphate. Based on these results, we propose that a phosphate group or a negative charge at position 50 initiates channel closure by destabilizing the electrostatic interactions between negative phosphate groups of PIP2 and residues such as R54.

Adenosine Triphosphate↗

Insulin sensitivity of adipocytes from inbred mouse strains resistant or sensitive to diet-induced obesity.

We evaluated insulin sensitivity in epididymal adipocytes from two mouse strains shown to be either sensitive (AKR/J, n = 14) or resistant (SWR/J, n = 12) to the development of obesity when fed a high-fat diet. Half of each strain was fed a chow (CH) diet (12% fat), and half received a sweetened condensed milk (CM) diet (33% fat). After 1 wk, epididymal adipose depots were removed and digested with collagenase, and glucose transport was measured with labeled 2-deoxyglucose. Plasma glucose and insulin were slightly higher in AKR/J than SWR/J mice (glucose: 139.7 vs. 118.8 mg/dl, P < 0.06; insulin: 3.45 vs. 2.99 ng/ml, P < 0.04). One week of high-fat feeding increased adipose depot mass and carcass lipid in both strains to approximately the same extent. Adipocytes from AKR/J mice had greater insulin-stimulated glucose transport compared with SWR/J mice at both submaximal and maximal insulin levels (P < 0.0001). Short-term feeding of the high-fat diet increased AKR/J adipocyte insulin sensitivity but decreased the sensitivity of SWR/J adipocytes to insulin. The differences in adipocyte insulin sensitivity between strains were not explained by differences in adipocyte cell size. Access to the high-fat CM diet for 12 wk increased total dissected adipose depot size by 209% in the AKR/J mice and 82% in the SWR/J mice. These data clearly demonstrate that the two strains differ in adipocyte insulin sensitivity as well as sensitivity to dietary obesity. Increased adipocyte insulin sensitivity could contribute to a predisposition to increase adipose tissue lipid stores with diets high in fat content.

Adipocytes↗

Chronic exposure to MDMA (Ecstasy) elicits behavioral sensitization in rats but fails to induce cross-sensitization to other psychostimulants.

BACKGROUND: The recreational use of 3,4-methylenedioxymethamphetamine (MDMA, ecstasy) among adolescents and young adults has become increasingly prevalent in recent years. While evidence suggests that the long-term consequences of MDMA use include neurodegeneration to serotonergic and, possibly, dopaminergic pathways, little is known about susceptibility, such as behavioral sensitization, to MDMA. METHODS: The objectives of this study were to examine the dose-response characteristics of acute and chronic MDMA administration in rats and to determine whether MDMA elicits behavioral sensitization and whether it cross-sensitizes with amphetamine and methylphenidate. Adult male Sprague-Dawley rats were randomly divided into three MDMA dosage groups (2.5 mg/kg, 5.0 mg/kg, and 10.0 mg/kg) and a saline control group (N = 9/group). All three MDMA groups were treated for six consecutive days, followed by a 5-day washout, and subsequently re-challenged with their respective doses of MDMA (day 13). Rats were then given an additional 25-day washout period, and re-challenged (day 38) with similar MDMA doses as before followed by either 0.6 mg/kg amphetamine or 2.5 mg/kg methylphenidate on the next day (day 39). Open-field locomotor activity was recorded using a computerized automated activity monitoring system. RESULTS: Acute injection of 2.5 mg/kg MDMA showed no significant difference in locomotor activity from rats given saline (control group), while animals receiving acute 5.0 mg/kg or 10.0 mg/kg MDMA showed significant increases in locomotor activity. Rats treated chronically with 5.0 mg/kg and 10.0 mg/kg MDMA doses exhibited an augmented response, i.e., behavioral sensitization, on experimental day 13 in at least one locomotor index. On experimental day 38, all three MDMA groups demonstrated sensitization to MDMA in at least one locomotor index. Amphetamine and methylphenidate administration to MDMA-sensitized animals did not elicit any significant change in locomotor activity compared to control animals. CONCLUSION: MDMA sensitized to its own locomotor activating effects but did not elicit any cross-sensitization with amphetamine or methylphenidate.

Journal Article↗

Halothane sensitivity in replicate mouse lines selected for diazepam sensitivity or resistance.

We have previously shown that mice selected for sensitivity to diazepam are also more sensitive to halothane, and that halothane augments the gamma-aminobutyric acid (GABA)-mediated chloride flux response in brain tissue from diazepam-sensitive (DS) mice to a greater degree than in diazepam-resistant (DR) mice. These findings suggest that the GABAA receptor is an important site of halothane action. To confirm this correlation, halothane requirement was determined in two independently developed replicate lines of DS and DR mice. Association of the traits of diazepam and halothane sensitivity in replicate lines of DS mice diminishes the probability that the original finding was due to a false-positive correlation, and instead suggests that it results from the common action of genes controlling diazepam sensitivity. Halothane median effective concentration (EC50) was determined by using the end-point of loss of righting reflex in two replicate lines of mice selected for diazepam sensitivity (resistant mice = diazepam high performance-1 and -2 [DHP-1 and DHP-2], sensitive mice = diazepam low performance-1 and -2 [DLP-1 and DLP-2]). DLP-1 and DLP-2 mice were sensitive to halothane, whereas DHP-1 and DHP-2 mice were resistant to halothane. Halothane EC50 in the DLP-1 and DHP-1 mice was 0.86 +/- 0.01 (SE) and 1.10 +/- 0.04 atm%, respectively (P < 0.0001), and that in the DLP-2 and DHP-2 mice was 0.88 +/- 0.01 and 0.97 +/- 0.02 atm%, respectively (P < 0.0001).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Direct measure of insulin sensitivity with the hyperinsulinemic-euglycemic clamp and surrogate measures of insulin sensitivity with the oral glucose tolerance test: correlations with aberrant crypt foci promotion in rats.

The similarity in lifestyle risk factors for the development of colorectal cancer (CRC) and type 2 diabetes suggests that there are common underlying pathogenic mechanisms. High-risk lifestyle factors may lead to insulin resistance that, through increased circulating levels of energy substrates, insulin, and insulin-like growth factor-1, may promote the development of CRC. The objective was to determine the extent to which direct and surrogate measures of insulin resistance correlate with multiplicity of aberrant crypt foci, which are putative precursors of CRC. Rats were initiated with the carcinogen azoxymethane, then fed low, intermediate, or high saturated fat diets. Metabolic parameters were assessed at 50 days and ACF at 100 days after initiation. Results indicate that CRC promotion was most strongly correlated with direct measures of insulin sensitivity as assessed with the hyperinsulinemic-euglycemic clamp (r = -0.52, P < 0.009). Practical surrogate measures of insulin resistance such as insulin levels at 180 min after an oral glucose load were strongly correlated with direct measures of insulin sensitivity (r = -0.61, P < 0.001) and with CRC promotion (r = 0.42, P = 0.044) in this animal model. Fasting levels of glucose, insulin, total insulin-like growth factor-1, nonesterified fatty acids, and triglyceride, as well as body weight and insulin sensitivity indices (such as fasting insulin resistance index, quantitative insulin sensitivity check index, homeostasis model assessment formula, insulin sensitivity index of glycemia, oral glucose insulin sensitivity, and composite insulin sensitivity index for the hepatic and peripheral tissues) were all less strongly correlated with direct measures of insulin sensitivity and all poorly correlated with CRC promotion in this animal model. These correlations do not prove causality, however, they suggest possible mechanisms linking diet, insulin resistance with its related parameters, and promotion of CRC.

Animals↗

[Platelet activating factor (PAF)-induced late asthmatic response in sensitized but not in non-sensitized guinea pigs].

We have recently demonstrated that pretreatment with WEB 2086, a specific PAF antagonist or cyclosporine A (CsA), a potent helper T cell suppressant, resulted in preventing the development of late asthmatic response (LAR) and increase of airway hyperreactivity (AH) in guinea pig experimental models of asthma. We have now examined whether exogenously applied PAF causes LAR in these models in vivo. The respiratory resistance (Rrs) of guinea pigs was measured by an oscillation technique and histological studies of the bronchi were also made. Guinea pigs, actively sensitized by repeated antigen (ovalbumin; OA) inhalation, showed a leftward shift of the inhaled PAF dose response curve of Rrs compared with that in control animals, indicating that the sensitized animals were more sensitive to inhaled, PAF. PC200 PAF, which indicate provocative concentrations of PAF aerosols causing a 200% increase in the baseline Rrs, were 3800 +/- 604.9 micrograms/ml and 780 +/- 94.3 micrograms/ml, in the control and sensitized animals, respectively. The same magnitude of immediate bronchoconstriction after 780 and 3800 micrograms/ml of PAF exposure was observed in the actively sensitized and non-sensitized control animals, respectively. However, LAR developed 4 out of 6 animals only in the sensitized guinea pigs. We conclude that both exogenously applied PAF by inhalation and antigen exposure are capable of inducing LAR in sensitized guinea pigs, and thus the priming effect of immunization and PAF may contribute to the development of LAR observed in asthma.

Airway Resistance↗

Estradiol sensitivity test using contact-sensitive plates of confluent BALB/c 3T3 cell monolayers.

We have attempted to develop an in vitro assay system for predicting estradiol sensitivity of clinical cancer cells by measuring the effects of estradiol on the net DNA synthesis of primary culture cells. Superinoculation of neoplastic and normal cells onto confluent monolayers of a contact-sensitive cell line, which have been designated as contact-sensitive plates (CSPs), resulted in both the specific growth of the neoplastic cells and the growth inhibition of contact-sensitive normal cells. The applicability of CSPs to an estradiol sensitivity test was examined in the known estradiol-sensitive, estrogen receptor-possessing cell lines, MCF-7 breast cancer and KSE-1 esophageal cancer cells. The responses of each cancer cell to estradiol were sufficiently evaluated in this assay and clearly demonstrated stimulative and inhibitive growth regulatory effects of the estradiol in MCF-7 and KSE-1 cells, respectively. A total of 38 clinical carcinomas (33 of the breast and 5 of the esophagus) were tested for their estradiol sensitivity. A statistically significant increase of cancer cell growth (P less than 0.1) in nontreated culture from the 48th to the 96th h of the primary culture on CSPs was observed in 28 of 38 overall cases (73.7%), and the evaluable data were obtained within 5 days by a sampling of 5 X 10(3) cancer cells. Most of the breast carcinomas exhibited a positive correlation between the growth-stimulative effect of estradiol in this assay and the estrogen receptor levels in the resected specimens. On the other hand, a clinical case of esophageal cancer with an estrogen receptor showed a growth inhibition of primary carcinoma cells by estradiol treatment. These results therefore indicate the feasibility of predicting individual tumor response to estradiol by using a rapid sensitivity test in vitro.

Animals↗