Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Induction”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 613 records · Page 34Linked to original sources

Use of immortalized human hepatocytes to predict the magnitude of clinical drug-drug interactions caused by CYP3A4 induction.

Cytochrome P4503A4 (CYP3A4) is the principal drug-metabolizing enzyme in human liver. Drug-drug interactions (DDIs) caused by induction of CYP3A4 can result in decreased exposure to coadministered drugs, with potential loss of efficacy. Immortalized hepatocytes (Fa2N-4 cells) have been proposed as a tool to identify CYP3A4 inducers. The purpose of the current studies was to characterize the effect of known inducers on CYP3A4 in Fa2N-4 cells, and to determine whether these in vitro data could reliably project the magnitude of DDIs caused by induction. Twenty-four compounds were chosen for these studies, based on previously published data using primary human hepatocytes. Eighteen compounds had been shown to be positive for induction, and six compounds had been shown to be negative for induction. In Fa2N-4 cells, all 18 positive controls produced greater than 2-fold maximal CYP3A4 induction, and all 6 negative controls produced less than 1.5-fold maximal CYP3A4 induction. Subsequent studies were conducted to determine the relationship between in vitro induction data and in vivo induction response. The approach was to relate in vitro induction data (E(max) and EC(50) values) with efficacious free plasma concentrations to calculate a relative induction score. This score was then correlated with decreases in area under the plasma concentration versus time curve values for coadministered CYP3A4 object drugs (midazolam or ethinylestradiol) from previously published clinical DDI studies. Excellent correlations (r(2) values >0.92) were obtained, suggesting that Fa2N-4 cells can be used for identification of inducers as well as prediction of the magnitude of clinical DDIs.

Algorithms↗

Dissociation of steroid binding to receptors and steroid induction of biological activity in a glucocorticoid-responsive cell.

Glucocorticoid responses in two independently derived lines of rat hepatoma tissue culture cells (HTC and FU5-5) were examined. FU5-5 cells exhibited induction of the enzyme tyrosine aminotransferase (TAT) at concentrations of dexamethasone that were approximately 7-fold lower than that required for HTC cells. FU5-5 cells also displayed substantial TAT induction with steroids that were partial agonists, or antagonists, in HTC cells. The increased sensitivity of FU5-5 cells was not, however, due to an increased affinity of FU5-5 cell receptors for dexamethasone, as determined from cell-free and whole cell binding experiments. The differential steroid sensitivity for TAT induction was observed with three other, structurally different glucocorticoids, thus apparently ruling out steroid metabolism in one of the cell lines as a cause. Also, induction of TAT in FU5-5 cells occurred at approximately 9-fold lower steroid concentrations than were required for the induction of glutamine synthetase (GS) in the same cells. Thus, the dose-response curves for TAT induction in HTC cells and for GS induction in FU5-5 cells are closely correlated with the saturation curve for whole cell steroid binding to receptor sites, while the dose-response curve for TAT induction in FU5-5 cells is shifted to lower steroid concentrations. This represents the first report of dissociation of two supposedly primary, glucocorticoid-induced functions and indicates that identical receptor-mediated processes cannot be utilized by FU5-5 cells for the induction of TAT and GS. The involvement of second messengers or different nuclear processes are possible explanations for the unusual behavior of FU5-5 cells during glucocorticoid induction of TAT.

Animals↗

The loss of morphogenetic potential and induction of phenylalanine ammonia-lyase in suspension cultures of Phaseolus vulgaris.

The loss of morphogenetic potential in bean suspension cultures has been investigated by measuring the amounts of phenylalanine ammonia-lyase activity induced in the cells when they are transferred from a medium in which they are grown and maintained to an induction medium. The tissue has been grown in 2 types of medium: (1) supplemented with 2,4-dichlorophenoxyacetic acid as the only growth hormone, and (2) supplemented with 2,4-dichlorophenoxyacetic acid and coconut milk. When cells were grown in medium with only 2,4-dichlorophenoxyacetic acid for a period of 5--10 subcultures and samples were transferred to the induction medium at intervals during the subcultures, the amounts of phenylalanine ammonia-lyase activity and the number of xylem elements induced progressively declined. Cells grown in the presence of coconut milk did not lose the ability to induce phenylalanine ammonia-lyase or xylem elements. Cells grown in the presence of coconut milk were cloned and clones capable of producing different amounts of phenylalanine ammonia-lyase when transferred to induction medium were obtained. However, clones producing low amounts of activity did not grow faster in the medium lacking coconut milk and no evidence was obtained to show that selective growth of non-inducible cells was responsible for the loss of morphogenetic potential. In addition to the induction brought about by the presence of naphthylacetic acid and kinetin in the induction medium the cells could also be stimulated to produce phenylalanine ammonia-lyase activity by dilution at subculture. This increase in activity occurred within 10 h of the dilution, whereas that produced by the hormones in the induction medium occurred after 120 h. The induction produced by dilution also occurred in these cells which had lost their ability to respond to the hormonal induction. Thus the mechanism that produced the increase in phenylalanine ammonia-lyase activity was intact but had lost its ability to respond to the hormones of the induction medium. The loss of inducibility was therefore probably not due to a genetic change in the cells brought about by continuous growth in a medium lacking coconut milk, but to reversible changes in the hormonal requirements of the cells necessary for induction.

2,4-Dichlorophenoxyacetic Acid↗

The lack of a role for protein kinase C in neurite extension and in the induction of ornithine decarboxylase by nerve growth factor in PC12 cells.

Nerve growth factor (NGF) causes pheochromocytoma cells (PC12) to undergo a number of physiological changes which mimic the differentiated neuronal cell, including neurite extension. We have examined protein kinase C (Ca2+/phospholipid-dependent enzyme) as a potential signaling mechanism in NGF-stimulated neurite outgrowth and induction of the enzyme ornithine decarboxylase. Phorbol 12-myristate 13-acetate (PMA) can activate protein kinase C and induce ornithine decarboxylase in PC12 cells with kinetics which are similar to those of NGF induction, but only to levels about 10-fold lower. The induction of ornithine decarboxylase by both NGF and PMA is inhibited by cycloheximide and actinomycin D suggesting that both agents increase enzyme activity by increasing gene transcription. The evidence presented here, however, shows that the induction produced by the two agents is through two different pathways. First, maximal induction by NGF is increased when PMA is included in the media showing that the two effects are synergistic. Second, NGF does not cause induction of ornithine decarboxylase in the mutant PC12nnr5 cell line (Green, S.H., Rydel, R.E., Connolly, J.L., and Greene, L.A. (1986) J. Cell Biol. 103, 1967-1978) while added PMA does produce an induction of the enzyme. Finally, when protein kinase C is down-regulated by incubating PC12 cells with PMA in serum-containing or serum-free medium for 24 h, the induction by PMA is completely inhibited, while the NGF induction is not affected. A recent study (Hall, F.L., Fernyhough, P., Ishii, D.N., and Vulliet, P.R. (1988) J. Biol. Chem. 263, 4460-4466) using sphingosine inhibition concluded that protein kinase C was required for NGF-stimulated neuritogenesis. In contrast, results presented here show that down-regulation of protein kinase C also has no effect on NGF-mediated neurite extension in PC12 cells grown in serum-free medium. Our data demonstrate that induction of ornithine decarboxylase and formation of neurites in PC12 cells by NGF does not require a protein kinase C-mediated pathway.

Adrenal Gland Neoplasms↗

The effect of phenobarbital and beta-naphthoflavone induction on the metabolism of biphenyl in the rat and mouse.

The effects of induction by beta-naphthoflavone (BNF) and by phenobarbital (PB) on the metabolism of biphenyl were studied in the rat (Sprague-Dawley) and the mouse (C57BL/6Tex and DBA/2Tex). Marked changes were observed after BNF induction. A major pathway of metabolism in C57BL/6 mice after induction was biphenyl leads to 2-hydroxybiphenyl leads to 2,5-dihydroxybiphenyl. This formerly minor pathways replaced biphenyl leads to 4-hydroxybiphenyl as the chief pathway of metabolism. No effect was observed in DBA/2 mice, in accord with observations that these animals lack the cytosolic receptor needed for cytochrome P1-450 induction. In Sprague-Dawley rats, the effect of BNF induction was to increase greatly the biphenyl leads to 4-hydroxybiphenyl leads to 3,4-dihydroxybiphenyl pathway and to decrease the 4-hydroxy leads to 4,4'-dihydroxy conversion. The effects of PB induction were less striking. Both genetic strains of mice showed a slight increase in 4,4'-dihydroxybiphenyl formation, and a slight decrease in 3,4-dihydroxybiphenyl formation. In the Sprague-Dawley rat, a slight increase in hydroxylation leading to 3-hydroxybiphenyl was observed. 2-Hydroxylation of biphenyl was not a specific feature of cytochrome P1-450 induction. The formation of the 2,5-diol as a major product was characteristic of cytochrome P1-450 induction in the C57BL/6 mouse, but not in the Sprague-Dawley rat. In both the mouse and rat, cytochrome P1-450 induction led to second-stage oxidation in the aromatic ring that was oxidized in the first stage, but the major pathways after induction were not in the same in both species.

Animals↗

The duration of induction and species influences the downregulation of cytochrome P450 by the interferon inducer polyinosinic acid-polycytidylic acid.

Interferon (IFN) has long been recognized to downregulate cytochrome P450-mediated drug metabolism. Some investigations have shown that induced P450 enzymes tend to be more resistant to the depressant effect of IFN, whereas constitutive forms of P450 are uniformly depressed by IFN. We examined the effect of varying the period of induction of P450 proteins (CYP1A1, CYP2B, and CYP2E1) in two animal species. In mice, the IFN inducer polyinosinic acid-polycytidylic acid depressed the constitutive and induced enzyme activities of ethoxyresorufin O-deethylase, benzyl-oxyresorufin O-dealkylase, and p-nitrophenol hydroxylase at all levels of induction. The depression of P450 proteins (CYP1A1, CYP2B10, and CYP2E1) was confirmed by immunoblotting. In contrast, the downregulation of the same enzyme activities observed at 0 and 24 hr of induction did not occur after 48 or 72 hr of induction in the rat. Immunoblotting confirmed that CYP1A1, CYP2B1, and CYP2E1 levels were downregulated in control and at low levels of induction, but were not affected at high levels of induction. The response of constitutive enzyme activities to downregulation by IFN was not influenced by any of the induction protocols in rats or mice. Thus, cytochrome P450 induction does not invariably confer resistance to IFN-mediated downregulation of the enzymes, and the mechanism of induction does not determine the response to IFN. It seems that the species and duration or level of induction are the major influences on the observed response of P450 enzymes to IFN-evoked downregulation.

Animals↗

Timed-sequential induction therapy improves postremission outcome in acute myeloid leukemia: a report from the Children's Cancer Group.

Timed sequencing of cycles of induction chemotherapy in acute myeloid leukemia (AML) has been proposed as a way to achieve maximal leukemic cell kill through recruitment and synchronization of residual neoplastic cells. Furthermore, whether intensive induction therapy should be continued in the presence of profound myelosuppression is an important question. The Children's Cancer Group (CCG) conducted a prospective randomized trial in which 589 patients with AML were randomized at diagnosis to one of two induction approaches involving a 4-day cycle of five active chemotherapeutic agents, with the second cycle administered either 10 days after the first cycle, despite low or dropping blood counts (intensive timing), or 14 days or later from the beginning of the first cycle, depending on bone marrow status (standard timing). All patients achieving remission received a total of four cycles of induction therapy. They were then allocated to allogeneic bone marrow transplantation (BMT) if a compatible family donor was present or randomized to aggressive nonmyeloablative therapy or to myeloablative therapy with purged autologous BMT rescue. The three postremission arms remain coded. Induction success and median days to complete induction were similar for the 295 patients randomized to the intensive timing arm (75%, 99 days) compared with the 294 patients randomized to the standard timing arm (70%, 105 days; P = .18 for remission). However, a marked improvement in outcome was demonstrated in patients randomized to the intensive timing arm, with an actuarial event-free survival at 3 years of 42% +/- 7% (95% confidence interval [CI]) versus 27% +/- 6% for patients on the standard timing arm (P = .0005). Disease-free survival results at 3 years from the end of induction were superior for patients receiving intensively timed induction therapy (N = 211), 55% +/- 9% versus 37% +/- 9% for standard timing patients (N = 195, P = .0002), with a median follow-up from achieving remission of 28 months. Superior results were documented for patients receiving intensive timing irrespective of the postremission therapy to which they were allocated. Intensively timed induction therapy for patients with AML markedly improves event-free survival, even for patients undergoing myeloablative therapy with BMT rescue. Without controlling for the type of induction therapy received, results of various BMT studies in AML comparing different preparative regimens will be difficult to interpret.

Acute Disease↗

Refinement of an in vitro cell model for cytochrome P450 induction.

Induction of cytochromes P450 (P450s) by drugs can lead to drug-drug interactions. Primary hepatocytes have been reported to retain inducible P450s. To optimize the use of primary hepatocytes for predicting induction of P450 (CYP 3A and 2B) expression in vivo, both culture conditions and expression of induction potentials were investigated. In rat hepatocytes, basal CYP 3A1/2 expression was better maintained in cells cultured on Matrigel compared with collagen when low concentrations of dexamethasone were used. However, CYP 3A1/2 induction was not affected by either matrix. In contrast, induction of CYP 2B1/2 by phenobarbital was markedly stronger in hepatocytes cultured on Matrigel. To further validate the in vitro model, Sprague-Dawley rats and isolated hepatocytes cultured on Matrigel were exposed to a series of compounds. In an attempt to minimize large variability between experiments, a novel approach for calculating induction potential was applied. In vitro results for CYP 3A1/2 and 2B1/2 induction correlated well with those observed in vivo. In contrast with rat hepatocytes, basal CYP 3A4 expression in human hepatocytes decreased rapidly in cells cultured on either Matrigel or collagen. However, CYP 3A4 inducibility was retained in cells cultured on either matrix. Interestingly, induction of CYP 3A4 in human hepatocytes by several model compounds did not correlate with the induction of CYP 3A1/2 in rat hepatocytes. This in vitro assay should facilitate the demand for a fast and reproducible method for addressing P450 induction by numerous compounds at the drug discovery stage.

Animals↗

Trial of extra amniotic saline infusion with oxytocin versus prostaglandin E2 pessary for induction of labor.

OBJECTIVE: To determine the effectiveness and safety of cost-effective extra-amniotic saline infusion (EASI) and simultaneous intravenous oxytocin infusion versus prostaglandin E2 vaginal pessary (PGE2) for induction of labor. DESIGN: Prospective randomized comparative study. PLACE AND DURATION OF STUDY: Labor room at the Mother and Child Health Centre, PIMS, Islamabad from September 2000 to December 2001. SUBJECTS AND METHODS: Women with singleton alive pregnancies and Bishop score < or =6, requiring induction of labor at > or =37 weeks gestation were randomly assigned to induction either with PGE2 3 mg vaginal pessary in two doses 6 hourly or EASI for 12 hours with simultaneous intravenous oxytocin infusion. Artificial rupture of membranes was done 12 hours post-induction and oxytocin infusion started in PGE2. Main outcome measures were induction delivery interval and the mode of delivery. Secondary outcome measures were the change in modified Bishop score 6 hours postinduction and neonatal outcome in the two induction modes. RESULTS: After 4 exclusions, 100 women were recruited in each arm. Mean induction delivery interval was 11.1 and 14.3 hours (p=.00) in PGE2 and EASI respectively. The cesarean rate was 11% and 15% (p=0.4) in PGE2 and EASI respectively. Mean Bishop score at induction was 3.2 in PGE2 and 3.1 in EASI, while after 6 hours it was 4.8 and 6.8 (p=0.00) respectively. Mean APGAR scores at 1 and 10 minutes were identical that is 6.2 and 8.6 respectively. CONCLUSION: Both the modes of induction were equally safe and effective in terms of the mode of delivery and APGAR score. EASI, however, had more rapid cervical ripening and shorter induction delivery interval.

Adult↗

Sexual intercourse for cervical ripening and induction of labour.

BACKGROUND: The role of prostaglandins for cervical ripening and induction of labour has been examined extensively. Human semen is the biological source that is presumed to contain the highest prostaglandin concentration. The role of sexual intercourse in the initiation of labour is uncertain. The action of sexual intercourse in stimulating labour is unclear, it may in part be due to the physical stimulation of the lower uterine segment, or endogenous release of oxytocin as a result of orgasm or from the direct action of prostaglandins in semen. Furthermore nipple stimulation may be part of the process of initiation. This is one of a series of reviews of methods of cervical ripening and labour induction using standardised methodology. OBJECTIVES: To determine the effects of sexual intercourse for third trimester cervical ripening or induction of labour in comparison with other methods of induction. SEARCH STRATEGY: The Cochrane Pregnancy and Childbirth Group trials register, the Cochrane Controlled Trials Register and bibliographies of relevant papers. Last searched: November 2000. SELECTION CRITERIA: (1) clinical trials comparing sexual intercourse for third trimester cervical ripening or labour induction with placebo/no treatment or other methods listed above it on a predefined list of labour induction methods; (2) random allocation to the treatment or control group; (3) adequate allocation concealment; (4) violations of allocated management not sufficient to materially affect conclusions; (5) clinically meaningful outcome measures reported; (6) data available for analysis according to the random allocation; (7) missing data insufficient to materially affect the conclusion. DATA COLLECTION AND ANALYSIS: A strategy has been developed to deal with the large volume and complexity of trial data relating to labour induction. This involves a two-stage method of data extraction. MAIN RESULTS: There was one included study of 28 women which reported very limited data, from which no meaningful conclusions can be drawn. REVIEWER'S CONCLUSIONS: The role of sexual intercourse as a method of induction of labour is uncertain. Any future trials investigating sexual intercourse as a method of induction need to be of sufficient power to detect clinically relevant differences in standard outcomes. However, it may prove difficult to standardise sexual intercourse as an intervention to allow meaningful comparisons with other methods of induction of labour.

Cervical Ripening↗

Relaxin for cervical ripening and induction of labour.

BACKGROUND: Relaxin is a protein hormone composed of two amino acid chains. The role played by relaxin in human pregnancy and parturition is unclear. Its use and involvement as a cervical ripening agent has been debated since the 1950s. Because the main source of human relaxin is the corpus luteum of pregnancy much of the early work on induction of labour has focused on porcine or bovine preparations. With the advent of DNA recombinant technology human relaxin has become available for evaluation. Relaxin is thought to have a promoting effect on cervical ripening. Due to a possible inhibitory effect on human myometrial activity, relaxin may not be associated with the concomitant increase in the rate of uterine hyperstimulation seen with other induction agents. This is one of a series of reviews of methods of cervical ripening and labour induction using a standardised methodology. OBJECTIVES: To determine the effects of relaxin (both purified porcine and recombinant human) for third trimester cervical ripening or induction of labour in comparison with other methods of induction. SEARCH STRATEGY: The Cochrane Pregnancy and Childbirth Group trials register, the Cochrane Controlled trials register and bibliographies of relevant papers. Last searched: November 2000. SELECTION CRITERIA: (1) clinical trials comparing relaxin used for third trimester cervical ripening or labour induction with placebo/no treatment or other methods listed above it on a predefined list of labour induction methods; (2) random allocation to the treatment or control group; (3) adequate allocation concealment; (4) violations of allocated management not sufficient to materially affect conclusions; (5) clinically meaningful outcome measures reported; (6) data available for analysis according to the random allocation; (7) missing data insufficient to materially affect the conclusion. DATA COLLECTION AND ANALYSIS: A strategy has been developed to deal with the large volume and complexity of trial data relating to labour induction. This involves a two-stage method of data extraction. MAIN RESULTS: In total, nine studies were considered; five have been excluded and four included examining a total of 267 women. There were no reported cases of uterine hyperstimulation with fetal heart rate changes in any of the studies. The rate of caesarean section was not different in those women given relaxin compared with placebo (15.3% versus 14.2%; relative risk (RR) 0.79, 95% confidence interval (CI) 0.42,1.50). There was a reduction in the risk of the cervix remaining unfavourable or unchanged with induction with relaxin (21.9% versus 49.3%; RR 0.45, 95% CI 0.28,0.72). There were no reported cases of uterine hyperstimulation without FHR changes. REVIEWER'S CONCLUSIONS: The place of relaxin, either purified porcine or recombinant human, as an induction or cervical priming agent is unclear. Further trials are needed to estimate the true effect of relaxin within current clinical practice.

Animals↗

Genetic analysis of tissue interactions required for otic placode induction in the zebrafish.

Development of the vertebrate inner ear begins during gastrulation with induction of the otic placode. Several embryonic tissues, including cephalic mesendoderm, notochord, and hindbrain, have been implicated as potential sources of otic-inducing signals. However, the relative contributions of these tissues have not been determined, nor have any genes affecting placode induction been identified. To address these issues, we analyzed otic placode induction in zebrafish mutants that are deficient in prospective otic-inducing tissues. Otic development was monitored by examining mutant embryos for morphological changes and, in some cases, by visualizing expression patterns of dlx-3 or pax-2.1 in preotic cells several hours before otic placode formation. In cyclops (cyc-) mutants, which develop with a partial deficiency of prechordal mesendoderm, otic induction is delayed by up to 1 h. In one-eyed pinhead (oep-) mutants, which are more completely deficient in prechordal mesendoderm, otic induction is delayed by 1.5 h, and morphology of the otic vesicles is abnormal. Expression of marker genes in other regions of the neural plate is normal, suggesting that ablation of prechordal mesendoderm selectively inhibits otic induction. In contrast, the timing and morphology of otic development is not affected by mutations in no tail (ntl) or floating head (flh), which prevent notochord differentiation. Similarly, a mutation in valentino (val), which blocks early differentiation of rhombomeres 5 and 6 in the hindbrain, does not delay otic induction, although subsequent patterning of the otic vesicle is impaired. To test whether inductive signals from one tissue can compensate for loss of another, we generated double or triple mutants with various combinations of the above mutations. In none of the multiple mutants do the flh or val mutations exacerbate delays in placode induction, although val does contribute additively to defects in subsequent patterning of the otic vesicle. In contrast, mutants homozygous for both oep and ntl, which interact synergistically to disrupt differentiation of cephalic and axial mesendoderm, show a delay in otic development of about 3 h. These data suggest that cephalic mesendoderm, including prechordal mesendoderm and anterior paraxial mesendoderm, provides the first otic-inducing signals during gastrulation, whereas chordamesoderm plays no discernible role in this process. Because val- mutants are deficient for only a portion of the hindbrain, we cannot rule out a role for that tissue in otic placode induction. However, if the hindbrain does provide otic-inducing signals, they apparently differ quantitatively or qualitatively from the signals required for vesicle patterning, as val disrupts only the latter.

Animals↗

A sevoflurane induction of anesthesia with gradual reduction of concentration is well tolerated in elderly patients.

PURPOSE: To establish the appropriate inhalation induction technique using a high concentration of sevoflurane in the elderly. METHODS: Forty-five patients, aged 70-79-yr-old, were randomly divided into three groups: 1) Group I: anesthesia was induced with propofol 2 mg x kg(-1) and sevoflurane 2% (n = 15); 2) Group II: anesthesia was induced with a three- minute inhalation of sevoflurane 8%; 3) Group III: anesthesia was induced with inhalation of sevoflurane using a gradual reduction technique (8, 6, 4% for each minute). In Groups II and III, a modified vital capacity inhalation induction was performed. Mean arterial pressure (MAP), heart rate (HR) and oxygen saturation (SpO(2)) were measured continuously during induction. In addition, induction time and adverse events related to anesthetic induction were recorded. RESULTS: The induction time in Group I was significantly shorter than that in Groups II and III (P < 0.05). However, there was no difference in the induction time between Groups II and III. In Groups II and III, the majority of patients required additional breaths. In comparison with the other groups, stability of MAP was maintained in Group III. The variations of HR in all groups were small. During induction, no patient experienced a decrease in SpO(2) below 96%, except for two patients in Group I. Severe respiratory adverse events were not observed. Other adverse events were similar in all groups. CONCLUSIONS: Our results suggest that a high concentration sevoflurane induction using a gradual reduction technique may be an acceptable alternative to standard iv induction in elderly patients.

Aged↗

Immunohistochemical localization of IAA and ABP1 in strawberry shoot apexes during floral induction.

By using an anti-indole-acetic acid (anti-IAA) monoclonal antibody and an anti-auxin-binding protein 1 (anti-ABP1) polyclonal antibody, IAA and ABP1 were immunohistochemically localized in strawberry (Fragaria ananassa Duch.) shoot apexes during floral induction. The spatial distribution patterns of endogenous IAA and ABP1 and their dynamic changes during floral induction were investigated. In addition, the affect of 1-N-naphthylphtalamic acid (NPA) on IAA distribution during floral induction was also analyzed. The results showed that IAA was present in the shoot apexes throughout the floral induction process, gradually concentrating in the shoot apical meristem (SAM). The distribution of ABP1 and its dynamic changes were similar to those of IAA. In addition, the ABP1 immune signal in SAM gradually increased as floral induction developed. On a morphological level, these results indicate both the spatial distribution and dynamic changes in endogenous IAA and ABP1 during the floral induction process. The close correlation found between IAA and ABP1 indicates that a cooperation occurs during the regulation of floral induction. The results also suggest that IAA was the significant agent for floral induction, and that SAM might be the place of the main action. Treatment with NPA during floral induction prevented the accumulation of IAA in the SAM, delayed the process of floral differentiation and induced an abnormal flower development. It is likely that IAA in the shoot apex is produced in young leaves and transported through the vascular tissues to the SAM and other places of function. Finally, an appropriate amount of IAA in the SAM and normal polar auxin transport are essential for floral induction and differentiation in strawberries.

Cell Differentiation↗

ERKs activation and calcium signaling are both required for VEGF induction by vanadium in mouse epidermal Cl41 cells.

The previous studies have demonstrated that vanadium exposure can cause a variety of biological effects. However, the mechanisms involved in the biological effects caused by vanadium are not well understood. Our previous studies have shown that exposure of mouse epidermal Cl 41 cells to vanadate stimulated the phosphorylation of both ERKs and p38K, and calcium signaling leading NFAT activation. In view of the evidence that ERKs and p38 kinase contribute to VEGF induction, we investigated in the present study the potential roles of ERKs, p38K, and calcium signaling in VEGF induction caused by vanadium exposure. Exposure of Cl 41 cells to vanadium led to VEGF induction in both time- and dose-dependent manners. Pre-treatment of Cl 41 cells with PD98059, an inhibitor of MEK1/2-ERKs pathway, but not SB202190, an inhibitor for p38K pathway, resulted in a dramatic inhibition of VEGF induction by vanadium. More interesting, pre-treatment of Cl 41 cells with intracellular calcium chelator, but not calcium channel blocker, resulted in a dramatic decrease in VEGF induction by vanadium. However, both PI-3K inhibitors and overexpression of Deltap85, a dominant negative PI-3K mutant, resulted in only a marginal decrease in VEGF induction by vanadium. Moreover, mTOR, as a downstream molecule of PI-3K, did not attribute to VEGF induction by vanadium because rapamycin pre-treatment did not show any inhibitory effect on VEGF induction. These results indicate that ERKs and intracellular stored calcium release play a critical role in VEGF induction by vanadium. PI-3K is partially involved in VEGF induction by vanadium, while p38K and mTOR are not involved. Those results will help us to understand the molecular mechanisms involved in vanadium-induced biological effects.

Animals↗

Induction of labor with three different techniques at 41 weeks of gestation or spontaneous follow-up until 42 weeks in women with definitely unfavorable cervical scores.

OBJECTIVE: To compare the obstetric outcome of induction of labor at 41 weeks and of follow-up until 42 weeks and induction if the patient has still not given birth at 42 weeks. STUDY DESIGN: Six hundred women at 287+/-1 days of gestation with definitely unfavorable cervical scores were randomized to labor induction (N=300) or spontaneous follow-up (N=300) with twice-weekly nonstress testing and amniotic fluid measurement and once-weekly biophysical scoring. The treatments used in the induction group were (1) vaginal administration of 50 microg misoprostol (n=100), (2) oxytocin induction (n=100), and (3) transcervical insertion of a Foley balloon (n=100). The primary outcome measures were the cesarean delivery rate, whether or not the normal hospital stay had to be extended, and the neonatal outcomes. Secondary outcome measure included number of emergency cesarean deliveries performed for abnormalities of the fetal heart rate (FHR). RESULTS: The abdominal delivery rate was 19.3% in the induction group and 22% in the follow-up group (p=0.4). The mean length of hospital stay in the two main groups was 1.4+/-0.8 days and 1.3+/-1 days, respectively (p=0.1). Significantly higher rates of macrosomia and shoulder dystocia were seen in the follow-up group (24.6 and 2.3%) than in the induction group (7.6%, p<0.001; 0.3%, p=0.03). Meconium-stained amniotic fluid and meconium aspiration syndrome were observed significantly less frequently in the induction group (9.3 and 1.3%) than in the follow-up group (20.3%, p<0.001; 4%, p=0.03). Rates of emergency abdominal delivery in response to worrying FHR traces, neonatal intensive care unit admission, and low umblical artery pH were similar in the two groups. There was one intrauterine fetal death in the follow-up group. CONCLUSION: Induction of labor at 41 weeks of gestation does not increase the cesarean delivery rate or cause a longer stay in hospital than follow-up until 42 weeks, and neonatal morbidity is also lower after induction.

Adult↗

To induce or not to induce: do patients at greatest risk for fatal rejection benefit from cytolytic induction therapy?

BACKGROUND: Induction immunosuppression utilizing lymphocytolytic agents in the early peri-operative period has a number of theoretical and practical advantages and disadvantages. However, the efficacy of cytolytic agents as induction therapy remains unproven. METHODS: To assess the current impact of induction therapy in heart transplantation, we queried a multi-institutional database regarding the frequency of use, type of agent, duration of therapy and outcomes of 6,553 patients transplanted from 1990 to 2001. A study group of 5,897 patients were identified who survived the first 48 hours post-transplant and received either no induction therapy (n = 4,161) or induction with OKT3 or anti-thymocyte preparations (n = 1,736). RESULTS: By multivariate analysis, risk factors for rejection death were identified and then applied to a model of overall mortality. Among patients with a 1-year risk of rejection death at >5%, induction therapy provided a survival advantage, but survival with induction was decreased when the risk of rejection death was <2%. Specific patient sub-sets that received a survival benefit in the current era with induction included younger patients of black race with >/=4 HLA mismatches and long-term (>6 months) support on a ventricular assist device (VAD). CONCLUSIONS: Use and application of induction therapy continues to be controversial in heart transplantation. At present, this approach appears to be beneficial in selected patients who are at high risk for rejection death, but likely detrimental in patients who are at low risk for rejection death. Those with a combination of longer term VAD support, of black ethnicity, and having extensive HLA mismatching are most likely to benefit from cytolytic induction therapy.

Adult↗

Induction of p53 and p21 proteins by gamma radiation in skin fibroblasts derived from breast cancer patients.

PURPOSE: To test the hypothesis that breast cancer patients could have a predisposing defect in the induction of TP53 tumor suppressor protein (known as p53) that could be a marker of genetic instability and increased cancer susceptibility. The accumulation of p53 was triggered by ionizing radiation, and its transcriptional activity was estimated from the induction of CDKN1A (known as p21). METHODS AND MATERIALS: Using Western blot, we studied the radiation induction of p53 and p21 proteins in 28 fibroblast cell strains derived from 7 healthy donors (Control), 3 ataxia telangiectasia (AT), 3 AT heterozygous, and 15 breast cancer patients. Contact-inhibited plateau phase cells were irradiated with 6 Gy, and proteins were assessed 3, 6, and 24 h later. RESULTS: The control group showed a high induction of p53 at 3 h postirradiation followed by a relative decrease at 6 h, and approached the basal level at 24 h. This was associated with a parallel induction in p21. The response of fibroblasts derived from the breast cancer group was not significantly different from the control. Similar results were obtained with the AT heterozygous group at 3 h postirradiation; however, sustainable increase in p53 and p21 induction was observed at 24 h. AT cells showed a statistically significant highly reduced accumulation of p53 and a delayed and reduced induction of p21 (p < or = 0.05). Furthermore, a correlation was observed between these two proteins at the 3-h induction point, confirming the high dependence of p21 on p53. CONCLUSION: Although severe deficiency in p53 and p21 induction was observed in fibroblasts derived from the cancer-prone AT syndrome, these results do not support the assumption that breast cancer patients have a predisposing defective induction in these proteins after ionizing irradiation.

Ataxia Telangiectasia↗