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Fluorescence evidence that a phase transition causes the induction time in the reduction in dynamic tension during surfactant adsorption to a clean air/water interface and a kinetic-diffusive transport model for the phase-induced induction.

An aqueous soluble surfactant adsorbing from solution onto an initially clean air/water interface often exhibits an induction period in the surface tension relaxation in which, as the adsorption begins, the tension remains near the clean interface value for an extended period of time before decreasing rapidly to the equilibrium value. In this study, using a model nonionic soluble surfactant, C14E6(CH3(CH2)13-(OCH2CH2)6-OH), we present direct fluorescence evidence that this induction is due to a first-order phase transition from a gaseous (G) to a liquid expanded (LE) phase that the assembling monolayer undergoes at constant surface pressure. An open channel flow cell is initially filled with water, and onto its air/water interface is spread an insoluble amphiphilic dye that fluoresces upon irradiation in the LE phase and whose fluorescence is quenched in the G phase. An aqueous solution of C14E(6) is then allowed to flow through the channel. We observe the immediate appearance of bright islands of the LE phase growing in a dark (G) background, confirming the presence of the G/LE phase transition. These islands eventually occupy the entire surface, after which the interface remains uniformly bright. We correlate this phase transition to the induction period by simultaneously measuring the tension of the interface of the open channel, and verifying that as the islands grow the tension remains at the clean value until the bright LE phase occupies the entire surface, whereupon the tension rapidly decreases. We further develop a phase transition surfactant transport model for the induction period in which surfactant diffuses toward and kinetically adsorbs onto the surface, and then rapidly equilibrates between the G and LE phases. For our model surfactant C14E6, we independently measure the surface concentration of the nucleating LE phase, the LE phase surfactant equation of state, the kinetic rate constants for adsorption into the LE phase, and the bulk diffusion coefficient. Using these measurements, we predict induction times for adsorption onto a clean surface without convection. We also measure these induction times in tension relaxation for adsorption onto a pendant bubble using axisymmetric shape analysis, and demonstrate agreement with the simulations with no adjustable constants.

Journal Article↗

Electrophysiologic variables characterizing the induction of ventricular tachycardia versus ventricular fibrillation after myocardial infarction: relation between ventricular late potentials and coupling intervals for the induction of sustained ventricular tachyarrhythmias.

OBJECTIVES: The aim of this study was to analyze the relations between the presence of ventricular conduction delay and the necessary coupling intervals for the induction of sustained ventricular tachyarrhythmias. METHODS: The electrophysiologic and signal-averaged electrocardiographic (ECG) data from 83 patients with previous myocardial infarction and inducible sustained monomorphic ventricular tachycardia (n = 71) and ventricular fibrillation (n = 12) were analyzed. RESULTS: The sum of the coupling intervals needed for inducing ventricular tachycardia and ventricular fibrillation was 485 +/- 59 ms and 387 +/- 36 ms, respectively (p < 0.001). The mean difference between the effective refractory period and the second coupling interval for the induction of ventricular tachycardia and ventricular fibrillation was -3 +/- 40 ms and 24 +/- 29 ms, respectively (p < 0.02). QRS duration and duration of terminal low amplitude signals of the QRS complex (p < 0.004) were longer in patients with inducible ventricular tachycardia than in patients with inducible ventricular fibrillation. The root mean square of the voltage during the last 40 ms of QRS complex was lower in patients with inducible ventricular tachycardia than in patients with inducible ventricular fibrillation (p < 0.007). Patients with inducible ventricular tachycardia presented with a greater prevalence of ventricular late potentials than that of patients with inducible ventricular fibrillation (p < 0.007). For arrhythmia induction, significantly shorter coupling intervals were necessary in patients without than in patients with ventricular late potentials. A positive correlation was found between the cycle length of the induced ventricular tachycardia and the filtered QRS duration as well as with the sum of the coupling intervals. CONCLUSIONS: Induction of ventricular fibrillation requires shorter coupling intervals than does induction of ventricular tachycardia. The presence of ventricular conduction delay seems to be a marker of facilitated induction of sustained monomorphic ventricular tachycardia rather than of ventricular fibrillation. The coupling intervals required to induce ventricular tachycardia or fibrillation are longer in patients with than in those without an abnormal signal-averaged ECG.

Adult↗

[Comparison of pre-induction ultrasonographic cervical length and Bishop score in predicting risk of cesarean section after labor induction with prostaglandins].

OBJECTIVE: To compare pre-induction ultrasonographic cervical length and Bishop score in predicting risk of caesarean section after labor induction with prostaglandins. PATIENTS AND METHODS: Assessment of the Bishop score and measurement of the cervical length by transvaginal sonography were performed by two operators, blinded to each other's results among women with singleton pregnancies at between 34(+0) - 41(+3) weeks of gestation requiring induction of labor with prostaglandins for medical indications. Fisher's exact test and regression logistic models were used for statistics analysis. In order to measure the strength of the association between ultrasonographic cervical length or Bishop score on one hand, and the caesarean sections rate (global or for failed induction or failure to progress) on the other hand, we computed odds ratios with 95% confidence interval. RESULTS: Among the 266 patients included in the study, multivariate analysis has shown that only Bishop score was predictive for the global caesarean section risk (OR [95% CI] 0.63 [0.45-0.87] ; P =0.005). However, neither Bishop score (OR [95% CI] 0.68 [0.42-1.09] ; P =0.11), nor ultrasonographic cervical length (OR [95% CI] 1.01 [0.95-1.08] ; P =0.59) was predictive for failed induction or failure to progress caesarean section risk. DISCUSSION AND CONCLUSION: The Bishop score appears to be a better predictor of the global caesarean section risk than ultrasonographic cervical length after induction of labor for medical reasons.

Adult↗

Parallel induction of the formation of dopamine and its metabolites with induction of tyrosine hydroxylase expression in foetal rat and human cerebral cortical cells by brain-derived neurotrophic factor and glial-cell derived neurotrophic factor.

Brain-derived neurotrophic factor (BDNF; 50 ng/ml), dopamine (DA; 10 microM) and forskolin (Fsk; 10 microM) have previously been shown by this and other laboratories to induce the tyrosine hydroxylase (TH) enzyme in foetal human and rat cerebral cortex during specified sensitive developmental periods. In the present study, these findings were extended for human and rat cells by showing that the induced TH+ cells also produce dopamine and its metabolite 3,4-dihydroxyphenylacetic acid (DOPAC). In addition to this, TH induction and DA plus DOPAC production was observed in foetal human and rat cerebral cortex by using glial-cell derived neurotrophic factor (GDNF) in place of BDNF. The degree of induction by GDNF (1-10 ng/ml) was similar to that produced by BDNF and did not increase further when the two neurotrophic factors were used together. The time-course of induction in human cultures was followed: GDNF was found to cause a more rapid induction process than BDNF during the first 2 weeks. However the degree of induction after 3 weeks was the same for both neurotrophic factors. Inhibitors of transcription (actinomycin D) or of translation (cycloheximide) eliminated all the increase in DA+DOPAC contents elicited by these compounds, indicating that de novo transcription and translation were required for increased expression of the TH and other related enzymes. The intracellular pathways by which these molecules exert this dopaminergic phenotype induction effect are discussed. This study indicates a new source of dopaminergic brain tissue for use as transplants to neurosurgically treat Parkinson's disease patients.

3,4-Dihydroxyphenylacetic Acid↗

Metallothionein mRNA induction in HeLa cells in response to zinc or dexamethasone is a primary induction response.

Metallothioneins (MTs) are low molecular weight, heavy metal binding proteins unique in their high cysteine content and high affinity for Zn2+, Cd2+, Hg2+, Ag2+ and Cu2+ (refs 1--3). The synthesis of MTs is induced by zinc or cadmium in the liver and kidney and in cultured cells. More recently MT induction by the steroid hormone dexamethasone (Dex) has been demonstrated in HeLa cells and adrenalectomized rats. Because glucocorticoid hormones lead to an intracellular accumulation of zinc, the question arises of whether the induction of MT gene expression by steroids is a 'primary induction response' (ref. 18), or due to elevated intracellular Zn2+. The glucocorticoid-induced transport of Zn2+ is dependent on concurrent protein synthesis. We now show that, in contrast to glucocorticoid-stimulated Zn2+ transport, the Zn2+ and Dex induction of translatable MT-mRNA is independent of concomitant protein synthesis but not RNA synthesis; that is, MT induction by either agent is a primary induction response.

Biological Transport↗

Propofol auto-co-induction as an alternative to midazolam co-induction for ambulatory surgery.

We propose the use of an intravenous propofol/propofol auto-co-induction technique as an alternative to propofol/midazolam for induction of anaesthesia. We have studied 54 unpremedicated ASA 1 or 2 patients undergoing day-stay anaesthesia for minor orthopaedic surgery. All received 10 micrograms.kg-1 or alfentanil before induction, followed by either midazolam 0.05 mg.kg-1, propofol 0.4 mg.kg-1 or saline, and 2 min later, a propofol infusion at a rate of 50 mg.kg-1.h-1 until loss of eyelash reflex. We compared pre- and postinduction haemodynamic changes, complications at insertion of a laryngeal mask airway and recovery from anaesthesia in the three groups. Both co-induction techniques showed less postinduction hypotension and significant reduction of the total induction dose of propofol when compared to the control group. In the propofol/propofol group there was a decreased incidence of apnoea during induction of anaesthesia. These patients were discharged from hospital 2 h after the end of anaesthesia whereas patients in the midazolam/propofol group were discharged after 2 1/2 h (p < 0.001).

Adult↗

Vital capacity inhalation induction with sevoflurane: an alternative to standard intravenous induction for patients undergoing cardiac surgery.

OBJECTIVE: To determine the respiratory and cardiovascular effects of a high concentration vital capacity induction with sevoflurane compared with an intravenous induction with etomidate in patients scheduled for elective coronary artery bypass graft (CABG) surgery. DESIGN: Prospective, randomized, double-blind, controlled clinical trial. SETTING: Cardiothoracic unit at a university hospital referral center. PARTICIPANTS: Twenty-two patients undergoing elective CABG surgery. INTERVENTIONS: The study group (group S) received a vital capacity gaseous induction with sevoflurane 8% (n = 12) and the control group (group E) were given etomidate, 0.2 to 0.3 mg/kg (n = 10). Anesthesia was supplemented with fentanyl, 8 microg/kg, and vecuronium, 0.1 mg/kg, in both groups. MEASUREMENTS AND MAIN RESULTS: The speed of induction of anesthesia was comparable between the groups. There was a significant increase in minute ventilation after induction of anesthesia in both groups. This increase was associated with a small reduction in PaCO2. There were no clinically significant changes in pH and PaO(2). The incidence of breath-holding and the need for an oropharyngeal airway were similar between the groups. Both groups had similar reductions in mean arterial pressure and cardiac output during the study period; however, a downward trend in mean pulmonary artery pressure was noted in group S, whereas in group E it remained unchanged. Absolute plasma epinephrine and norepinephrine values were low during the precardiopulmonary bypass period in both groups. CONCLUSIONS: The technique of vital capacity inhalation induction with 8% sevoflurane offers a rapid onset of anesthesia, satisfactory airway control, and a good hemodynamic profile. Consideration should be given to the benefits of single-agent anesthesia and lowered pulmonary artery pressure during the precardiopulmonary bypass period. In addition to CABG surgery, this technique could be considered in patients with coronary artery disease undergoing noncardiac surgery, particularly for procedures in which spontaneous ventilation is preferred.

Aged↗

mGluR II agonist inhibition of LTP induction, and mGluR II antagonist inhibition of LTD induction, in the dentate gyrus in vitro.

The effects of the metabotropic glutamate receptor (mGluR) group II agonist (2S,1'R,2'R,3'R)-2-(2',3'-dicarboxycyclopropyl)glycine (DCG-IV) and the antagonist 2S,1S',2S'-2-methyl-2-(2'-carboxycyclopropyl)glycine (MCCG) on the induction of long-term potentiation (LTP) and long-term depression (LTD) of the field excitatory postsynaptic potential (epsp) in the dentate gyrus of the rat hippocampus were investigated in vitro. In control media, high frequency stimulation (HFS) consisting of a series of trains of stimuli at 200 Hz induced LTP, and low frequency stimulation (LFS) consisting of 900 stimuli at 1 Hz induced LTD. DCG-IV (50 nM) strongly inhibited the induction of LTP. The block of LTP induction was not caused by a frequency-dependent inhibition of the epsp during HFS, as the epsps evoked during HFS were not altered by DCG-IV. MCCG (500 microM) did not inhibit the induction of LTP, but did prevent the block of LTP by DCG-IV. MCCG (500 microM) strongly inhibited the induction of LTD. DCG-IV (50 nM) did not inhibit LTD induction.

Amino Acids, Dicarboxylic↗

Interferon induction by viruses. XVI. 2-Aminopurine blocks selectively and reversibly an early stage in interferon induction.

A purine analogue, 2-aminopurine, reported to act as an inhibitor of protein kinase, selectively, reversibly and in a dose-dependent manner blocked a very early stage in interferon induction. With chick embryo cells and mouse L cells as hosts, and different viral inducers of interferon, maximal effects of 2-aminopurine were observed during the first 4 h of induction. At 10 mM-2-aminopurine there was a 20-fold reduction in the yield of interferon from both cell types. 2-Aminopurine and actinomycin D both prevented interferon induction with the same time course, indicating a transcriptional block to induction; however, only the action of the former was reversed upon removal of the drug. Addition of 2-aminopurine to an agarose overlay resulted in high efficiency plaque formation by vesicular stomatitis virus New Jersey (Hazelhurst) under conditions where endogenous induction of interferon and its feedback action on aged chick embryo cells normally prevented plaque formation. Two other inducible systems, representing genes involved in interferon action (both its development and activation), and those of heat shock, were not affected by 2-aminopurine. A model is presented implicating the interferon-inducible dsRNA-dependent protein kinase as an interferon induction receptor which, on interaction with dsRNA, generates an amplified signal via phosphorylation that ultimately derepresses the interferon gene(s).

2-Aminopurine↗

Cell-to-cell contact in primary embryonic induction: effects of lectin on electrical coupling and neural induction.

The effects of lectin (concanavalin A; ConA) on the electrical coupling between inducing chorda-mesoderm and reacting ectoderm cells, and the realization of neural induction were investigated. The electrical coupling between cells of the chorda-mesoderm of the late gastrula (stage 13b) and the competent ectoderm or Con-A-treated ectoderm of the early gastrula (stage 12a) was measured. Neural induction was tested with ectoderm explants which had been combined with the inducing chorda-mesoderm for 1, 3 and 6 h. Electrical coupling was observed after 3 h. By 6 h, the coupling ratio had recovered to the same level as that between the homogeneous germ-layer cells. However, the electrical coupling did not recover in the combinant with Con-A-treated ectoderm. This suggests that Con-A disturbs close cell contact between the ectoderm and chorda-mesoderm cells. Neural induction was realized in the ectoderm which was combined with chorda-mesoderm for more than 3 h; this occurred parallel to the recovery of electrical coupling. In contrast, Con-A treatment (50 micrograms/ml) of the competent ectoderm for 30 min prevented neural induction. After 3 h of contact, the neural induction of Con-A-treated ectoderm was only one-third of that of the control ectoderm. The present study suggests that cellular contact between the inducing mesoderm and the ectoderm target cells plays an important role in the realization of neural induction.

Animals↗

Induction of triglyceride accumulation in the liver of rats by perfluorinated fatty acids with different carbon chain lengths: comparison with induction of peroxisomal beta-oxidation.

The potency to accumulate triglyceride (TG) was compared between perfluorinated fatty acids (PFCAs) with different carbon chain lengths in the liver of male and female rats and induction of peroxisomal beta-oxidation. In male rats, either perfluoroheptanoic acid (C7) or perfluorooctanoic acid (C8) had no effect, although perfluorononanonic acid (C9) and perfluorodecanoic acid (C10) markedly accumulated TG. In female rats, C7, C8, and C9 did not cause TG accumulation, whereas C10 caused TG accumulation at the same level as in male rats. TG accumulation induced by C9 was regulated by the level of testosterone in male rats. In contrast with TG accumulation, peroxisomal beta-oxidation was induced by C8, C9, and C10 in male rats and by C9 and C10 in female rats. Only a slight difference was observed in the induction by C9 between male and female rats. The induction of TG accumulation by these PFCAs occurred in a dose-dependent manner and significantly correlated with hepatic concentrations of PFCA regardless of their carbon chain length, as was observed with induction of peroxisomal beta-oxidation. There is, however, a striking difference in the hepatic concentration of PFCA required to cause induction of TG accumulation and that of peroxisomal beta-oxidation. The concentration of PFCA required to induce TG accumulation is much higher than that to induce peroxisomal beta-oxidation. These results strongly suggest that TG accumulation induced by PFCAs, as well as the induction of peroxisomal beta-oxidation, is dependent only on the number of PFCA molecules in hepatocytes, but is not due to the difference in their chemical structures, and that there is a marked difference in the PFCA threshold to cause distinct biological effects.

Animals↗

Induction of HLA-DR expression on thyroid follicular cells by cytomegalovirus infection in vitro. Evidence for a dual mechanism of induction.

Cytomegalovirus (CMV) infection of primary cultures established from human thyroid nodular and normal (paranodular) tissues resulted in induction of human leukocyte antigen (HLA) DR expression on thyroid follicular cells (TFC), as detected by cell-surface immunofluorescence staining with monoclonal antibodies (MAb). Two distinct modalities of induction were observed. The first type occurred in cultures of normal tissue obtained from CMV-seropositive but not seronegative donors, was detected on 30% to 50% of the TFCs, even though the vast majority of these cells failed to show any morphologic or antigenic evidence of individual CMV infection, and was associated with production of gamma-interferon (gamma-IFN) in vitro. The induced molecules displayed the characteristic DR polypeptide profile on immunoprecipitation and electrophoretic analysis. These results demonstrate that CMV infection of normal thyroid cultures may induce DR expression on TFCs in the absence of pre-existing lymphoid infiltrates and suggest that the induction is the result of an in vitro response to CMV by previously sensitized immunocompetent cells present in these primary cultures. Such a response, associated with the release of gamma-IFN, would induce DR expression on neighboring uninfected cells. The second mode of induction occurred in all CMV-infected cultures, regardless of their tissue origin (nodular or normal) or the serologic status of the donors. Up to 50% of infected TFCs at a late stage of infection, having fully developed CMV antigen-positive intranuclear inclusions, also displayed the cell-surface DR-related determinant recognized by one of the four anti-DR MAbs used. This induction was restricted to TFCs, while CMV-infected fibroblastoid cells present in the monolayers were invariably negative. Induction by CMV of major histocompatibility class II antigens on human epithelial cells may have significant implications in the development of normal immune responses against local viral infection, the enhancement of alloimmune rejection of grafted organs, and the generation of organ-specific autoimmune responses.

Adult↗

Interferon induction by viruses: one molecule of dsRNA as the threshold for interferon induction.

The studies chronicled in this chapter were chosen largely because they contained data amenable to the quantitative analysis of interferon induction dose-response curves and the IFP activity they represented. The interpretation of the data was predicated on the assumption that a single molecule of dsRNA, when properly introduced into a cell, either as a preformed entity or formed therein following some synthetic event, can induce a quantum yield of interferon. This novel view of interferon induction by viruses has provided an explanation for many seemingly discordant results and offers a unifying hypothesis regarding the nature of the interferon inducer moiety for viruses from widely different families. If we note the reluctance of some to accept dsRNA as a common interferon inducer molecule ( McKimm and Rapp , 1977; Kowal and Youngner , 1978; Joklik , 1980) but recognize that the threshold for activating the interferon induction system is one molecule per cell, many aspects of interferon induction heretofore enigmatic are rendered offerpretable . Furthermore, one molecule of dsRNA per cell suffices to induce a quantum yield of interferon, an apparent expression of the "one-shot affair" of interferon production recognized by Ho (1964). In some cases of induction (the r = 1 type dose-response curve) there is an exquisitely responsive modulation of production when a second molecule of dsRNA is simultaneously introduced into the cell. The experimental approach and concepts discussed herein offer a new perspective on the mechanism of interferon induction by viruses and its regulation, and point out the incredible biological potency of a dsRNA molecule--a molecule found to play a key role in viral infection and host defence (Carter and De Clercq , 1974), regulation of the immune system (Johnson, 1980), and perhaps some yet to be defined function in cell growth (Taylor- Papadimitriou , 1980) and differentiation ( Grossberg and Sabran , 1981-2) through its capacity to activate the interferon system.

Animals↗

Is DNA damage the signal for induction of thermal resistance? induction by radiation in yeast.

Yeast, as well as higher eukaryotes, are induced to increase thermal resistance (thermotolerance) by prior exposure to a heat stress. Prior exposure to an acute dose of either 60Co gamma or 254-nm ultraviolet radiation, at sublethal or fractionally lethal doses, is shown to cause a marked increase in the resistance of Saccharomyces cerevisiae to killing by heat. Following a radiation exposure, thermal resistance increased with time during incubation in nutrient medium, and the degree of resistance reached was proportional to the dose received. Partial induction by radiation followed by maximum induction by heat did not produce an additive response when compared to a maximum induction by heat alone, suggesting that the same process was induced by both heat and radiation. Irradiation with 254-nm uv light followed by an immediate, partial photoreversal of the pyrimidine dimers with long-wavelength uv light resulted in a reduced level of resistance compared to cells not exposed to the photoreversal light, indicating that the cells specifically recognized pyrimidine dimers as a signal to increase their thermal resistance. Exposure to 254-nm uv or ionizing radiation induced thermal resistance in mutants defective in either excision repair (rad3, uv-sensitive) or recombinational repair (rad52, gamma-sensitive), suggesting that recognition and repair of DNA damage by these systems are not a part of the signal which initiates an increase in resistance to heat. The amount of induction, per unit dose, was greater in the DNA repair-deficient mutants than in the wild-type cells, suggesting that an increase in the length of time during which damage remains in the DNA results in an increase in the effectiveness of the induction. These data indicate that types of DNA damage as diverse as those produced by ionizing radiation and by ultraviolet light are recognized as a signal by the yeast cell to increase its thermal resistance. It is therefore suggested that heat-induced alterations in DNA or in DNA-dependent chromosomal organization may be the signal for heat induction of thermotolerance in this and other eukaryotes.

Acclimatization↗

Apoptosis induction in peripheral leukemia cells by remission induction treatment in vivo: selective depletion and apoptosis in a CD34+ subpopulation of leukemia cells.

In vitro studies demonstrating the induction of programmed cell death by cytotoxic drugs used in anticancer chemotherapy suggested that antileukemic treatment eliminates leukemia cells by apoptosis. We therefore analyzed apoptosis induction and activation of apoptosis signaling molecules in patients receiving remission induction treatment for AML and ALL during the initial phase of leukemia cell reduction. A coexistence of distinct populations of CD34(+) and CD34(-) leukemia cells could be identified. During chemotherapy, CD34(+) leukemia cells were more rapidly depleted than CD34(-) cells. Furthermore, a significant increase in leukemia cell apoptosis ex vivo was detected in CD34(+) cells, while no such increase was observed in the CD34(-) subpopulation, suggesting that CD34(+) leukemia cells are the main targets for apoptosis induction through antileukemic treatment. No alterations in Bax and Bcl-2 expression were found during in vivo chemotherapy, and CD95 expression and sensitivity remained low, indicating the induction of apoptosis independent of the CD95 system or regulation of protein levels of Bax and Bcl-2. The data suggest that analysis of leukemia cell subpopulations is required for further identification of apoptosis signaling molecules relevant for response to treatment and assessment of drug efficacy in vivo and in vitro.

Adult↗

Induction of heme oxygenase-1 and adaptive protection against the induction of DNA damage after hyperbaric oxygen treatment.

Hyperbaric oxygen (HBO) treatment of human subjects (i.e. exposure to 100% oxygen at a pressure of 2.5 ATA for a total period of 3 x 20 min) caused clear and reproducible DNA damage in lymphocytes, as detected with the comet assay (single cell gel electrophoresis). Induction of DNA damage was found only after the first HBO exposure and not after further treatments of the same individuals. Furthermore, blood taken 24 h after HBO treatment was significantly protected against the induction of DNA damage by hydrogen peroxide (H(2)O(2)) in vitro, indicating that adaptation occurred due to induction of antioxidant defenses. The cells were not significantly protected against the genotoxic effects of gamma-irradiation, suggesting increased scavenging of reactive oxygen species distant from nuclear DNA or an inducible change in the levels of free transition metals. We now demonstrate increased levels of heme oxygenase-1 (HO-1) in lymphocytes 24 h after HBO treatment of volunteers. Under the same conditions, superoxide dismutase, catalase and the DNA repair enzymes apurinic endonuclease and DNA polymerase beta were not enhanced in expression. We also show that protection against the induction of DNA damage by H(2)O(2) in lymphocytes even occurs with a shortened HBO treatment which did not induce significant DNA damage by itself. Our results suggest that increased sequestration of iron as a consequence of induced HO-1 might be involved in the adaptive protection after HBO treatment and that the induction of DNA damage is not the trigger for adaptive protection.

Adaptation, Physiological↗

Endotoxin treatment inhibits glucocorticoid induction of hepatic enzymes at a late induction step.

Bacterial endotoxin inhibits the glucocorticoid induction of several hepatic enzymes including phosphoenolpyruvate carboxykinase (PEPCK). Experiments were performed to elucidate the mechanism of this inhibition by examination of the early events in the glucocorticoid induction process. At a dose of endotoxin 2-to 10-fold greater than that required to inhibit the induction of PEPCK activity, no effect on the entry of glucocorticoids into hepatocytes or their ability to form complexes with glucocorticoid receptors could be measured. Binding data showed no effect of endotoxin treatment on the association or dissociation kinetics of the steroid-receptor binding reaction. Scatchard analysis revealed no effect on the affinity and number of hepatic glucocorticoid receptor binding sites, indicating that down-regulation of receptors is not responsible for inhibition of induction. Finally, activation of receptor complexes was unaffected as well by endotoxin treatment. We conclude from these data that endotoxin does not act at the early events in the glucocorticoid induction process and must therefore intervene at a subsequent step.

Animals↗

Induction of cytochrome P-450 by glucocorticoids in rat liver. II. Evidence that glucocorticoids regulate induction of cytochrome P-450 by a nonclassical receptor mechanism.

In the companion report we used primary cultures of adult rat hepatocytes to demonstrate that glucocorticoids comprise a "class" of compounds that stimulate de novo synthesis of a form of cytochrome P-450 (P450PCN) indistinguishable from that induced by the nonhormonal steroid pregnenolone 16 alpha-carbonitrile (PCN). Because induction of P450PCN is stereospecific for glucocorticoids and is dependent on the concentration of and the length of exposure to steroids it seemed possible that P450PCN represented another of the many genes whose expression is coordinately regulated by glucocorticoids bound to their specific cytoplasmic receptor and translocated into the nucleus. However, in cultured hepatocytes treated with glucocorticoids, synthesis of P450PCN failed to parallel synthesis of a typical glucocorticoid-responsive liver function, tyrosine aminotransferase, in the time course of induction, in the concentrations of glucocorticoids required for half-maximal induction, and in the order of effective steroids ranked by potency. Indeed, two moderately potent inducers of P450PCN either failed to induce tyrosine aminotransferase (spironolactone) or actually antagonized induction of tyrosine aminotransferase synthesis by glucocorticoids (PCN). Moreover, in the same cultures in which glucocorticoid induction of tyrosine aminotransferase was blocked by the presence of PCN or other previously identified antiglucocorticoids, synthesis of P450PCN was actually enhanced. We conclude that synthesis of P450PCN is a specific glucocorticoid-responsive liver function evoked by a novel mechanism readily distinguishable from the classic glucocorticoid receptor pathway.

Animals↗