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p27 small interfering RNA induces cell death through elevating cell cycle activity in cultured cortical neurons: a proof-of-concept study.

Recent research has demonstrated that cell cycle-associated molecules are activated in multiple forms of cell death in mature neurons, and raised a hypothesis that unscheduled cell cycle activity leads to neuronal cell death. But there is little evidence that changes in endogenous level of these molecules are causally associated with neuronal cell death. Here we transfected small interfering RNA (siRNA) targeting cyclin-dependent kinase (CDK) inhibitor p27, which plays an important role in cell cycle arrest at G1-S phase, into cultured cortical neurons. Transfection of p27 siRNA reduced neuronal viability in a time-dependent manner. p27 siRNA induced phosphorylation of retinoblastoma protein (Rb), a marker of cell cycle progression at late G1 phase. Moreover, phosphorylation of Rb and neuronal cell death provoked by p27 siRNA were abrogated by pharmacological CDK inhibitors, olomoucine and purvalanol A. Our data demonstrate that a decrease in endogenous p27 induces neuronal cell death through elevating cell cycle activity.

Animals↗

Basic rest activity cycle and stereotyped behavior of a mentally defective child.

Stereotyped acts of a mentally defective girl, 6 1/2 years old, were observed from 6 a.m. til 8 p.m. during 16 days. Alternating phases of more or less frequent hand waving showed intervals of about 1 1/2 hours. Sleep stages were also determined by polygraphic recordings during 10 nights. As statistically proved the mean peak-to-peak interval of stereotyped activity at days corresponded with the mean REM-to-REM period of consecutive nights. This suggests, that the stereotyped hand waving of this child was driven by the BASIC REST ACTIVITY CYCLE (BRAC) already described by Kleitman. The mean periodicity of sleep cycles was represented by model rhythms adapted to the scored sleep stages. If the model rhythms of all 10 nights were extended backward to the preceding days, they paralleled the stereotyped activity. Thereby half periods found in phase with REM-stages approximatly corresponded to maxima of stereotyped activity. It will be discussed that the BRAC triggers motor and sensory mechanisms characterizing both the phases of enhanced stereotyped activity at day and REM stages at night.

Activity Cycles↗

The protective mechanisms of the basic rest-activity cycle as an indirect manifestation of this rhythm in waking: preliminary report.

The hypothesis of the Basic Rest Activity Cycle (BRAC), that underlies approximately 90-min fluctuations in states of consciousness, has gained strong documentation during sleep in cyclical occurrence of its REM and NON-REM stages, however, there is no convicting evidence of this rhythm in waking. According to the concept of protective mechanisms of BRAC (Kokoszka, 1990), the rest phase of the BRAC manifests in states of consciousness with domination of passive state of mind and spontaneous activity of imagination, as well as domination contemplation over goal oriented activity, that occur during some socially accepted everyday activities. In order to verify this, 30 persons (21 women and 9 men) aged between 19-52 (M = 29.1; SD = 10.08) answered specially designed sets of questions three times a day (at noon, at 5 p.m., and before sleep) over 2 consecutive days. The results indicate that states considered as mechanisms of information metabolism were reported by all subjects and with a mean frequency of 9.0 (SD = 1.5) on the first day, and 8 (SD = 1.65) on the second day. Most often they were classified as purposeful overstimulation, thoughtlessness, and fatigue.

Adult↗

Statistical methods for analyzing data on daily activity cycles of primates.

Many field studies on primates have recently been carried out in which quantitative data have been collected using instantaneous scan sampling techniques. However, data collected in this manner are difficult to analyze statistically because of the problem of independence of samples, and a number of investigators have analyzed such data incorrectly. In this paper, we evaluate such analyses and suggest alternative techniques that may be more appropriate. Examples are drawn from data on daily activity cycles of Lemur catta and Lemur fulvus.

Activity Cycles↗

High-efficiency retroviral gene transfer into murine high-proliferative-potential cells cycle-activated by cytosine arabinoside.

We investigated cytosine arabinoside (Ara-C) as a potential agent for in vivo cycle activation of hematopoietic progenitors for the purpose of retroviral-mediated gene transfer. C57Bl mice were treated intraperitoneally with one of three regimens of Ara-C: a single 1,750 mg/kg dose (regimen 1), a 1,750 mg/kg dose on day 0, and a 1,500 mg/kg dose on day 2 (LD50) (regimen 2), or a 1,750 mg/kg dose on day 0 and a 1,500 mg/kg dose on day 3 (regimen 3). The high-proliferative-potential cells (HPPC)/10(5) cells were 47.0 +/- 7.5 pretreatment. The post-treatment HPPC cloning efficiencies were 40.6 +/- 3.4, 83.6 +/- 6.1, and 20.4 +/- 3.2 HPPC/10(5) cells on days 1, 2, and 4, respectively, with regimen 1; 60.0 +/- 7.9, 194.0 +/- 9.6, and 103.0 +/- 11.0 HPPC/10(5) cells 1, 2, and 4 days after the second Ara-C dose, respectively, with regimen 2; and 266 +/- 13.4, 132 +/- 23.9, and 118.0 +/- 5.7/10(5) cells 1, 2, and 4 days after the second Ara-C dose, respectively, with regimen 3. The transduction efficiency of HPPC from untreated animals with N2 viral supernatant was 4.9 +/- 5.8%.(ABSTRACT TRUNCATED AT 250 WORDS)

3T3 Cells↗

Glutathione cycle activity and pyridine nucleotide levels in oxidant-induced injury of cells.

Exposure of target cells to a bolus of H2O2 induced cell lysis after a latent period of several hours, which was prevented only when the H2O2 was removed within the first 30 min of injury by addition of catalase. This indicated that early metabolic events take place that are important in the fate of the cell exposed to oxidants. In this study, we described two early and independent events of H2O2-induced injury in P388D1 macrophagelike tumor cells: activation of the glutathione cycle and depletion of cellular NAD. Glutathione cycle and hexose monophosphate shunt (HMPS) were activated within seconds after the addition of H2O2. High HMPS activity maintained glutathione that was largely reduced. However, when HMPS activity was inhibited--by glucose depletion or by incubation at 4 degrees C--glutathione remained in the oxidized state. Total pyridine nucleotide levels were diminished when cells were exposed to H2O2, and the breakdown product, nicotinamide, was recovered in the extracellular medium. Intracellular NAD levels fell by 80% within 20 min of exposure of cells to H2O2. The loss of NADP(H) and stimulation of the HMPS could be prevented when the glutathione cycle was inhibited by either blocking glutathione synthesis with buthionine sulfoximine (BSO) or by inhibiting glutathione reductase with (1,3-bis) 2 chlorethyl-1-nitrosourea. The loss of NAD developed independently of glutathione cycle and HMPS activity, as it also occurred in BSO-treated cells.

Animals↗

Active cycle of breathing techniques in non-invasive ventilation for acute hypercapnic respiratory failure.

We hypothesised that applying the active cycle of breathing techniques (ACBT) in patients with acute hypercapnic respiratory failure undergoing non-invasive ventilation would improve patient outcome. Thirty-four patients were randomised so that 17 patients with acute hypercapnic respiratory failure received the ACBT and non-invasive ventilation (ACBT group), and 17 patients received non-invasive ventilation alone (control group). The primary outcome measure was length of time requiring non-invasive ventilation, and secondary outcome measures were change in acute physiology score, change in arterial blood gas values, total duration of non-invasive ventilation, and length of stay in the intensive care unit. Although not significant, there was a greater decrease in arterial carbon dioxide pressure in the ACBT group compared to the control group (-21.41 mmHg vs -17.45 mmHg, p = 0.27). Total duration of ventilation tended to be shorter in the ACBT group than in the control group (64.9 hours vs 84.1 hours, p = 0.15). Length of time in need of non-invasive ventilation was significantly lower in the ACBT group than in the control group (5.0 days vs 6.7 days, p = 0.03). There was no significant difference in length of stay in the intensive care unit between the two groups (8.0 vs 9.4 days, p = 0.31). The use of ACBT may have positive effects in the treatment of patients with acute hypercapnic respiratory failure, resulting in a shorter length of time requiring non-invasive ventilation.

Acute Disease↗

Raf1 interaction with Cdc25 phosphatase ties mitogenic signal transduction to cell cycle activation.

The Ras and Raf1 proto-oncogenes transduce extracellular signals that promote cell growth. Cdc25 phosphatases activate the cell division cycle by dephosphorylation of critical threonine and tyrosine residues within the cyclin-dependent kinases. We show here that Cdc25 phosphatase associates with raf1 in somatic mammalian cells and in meiotic frog oocytes. Furthermore, Cdc25 phosphatase can be activated in vitro in a Raf1-dependent manner. We suggest that activation of the cell cycle by the Ras/Raf1 pathways might be mediated in part by Cdc25.

Amino Acid Sequence↗

Airway clearance in bronchiectasis: a randomized crossover trial of active cycle of breathing techniques versus Acapella.

BACKGROUND: The efficacy of a new airway clearance device (Acapella) has not been previously investigated. Active cycle of breathing techniques (ACBT) is the standard airway clearance technique used in patients with bronchiectasis. OBJECTIVE: The objective of this study was to compare the efficacy of ACBT with Acapella as methods of airway clearance in adults with stable, productive bronchiectasis. METHODS: Twenty patients (7 males), age 58 +/- 11 years (mean +/- SD), FEV1 64 +/- 22% predicted with stable (change of not greater than FEV1 10% predicted during 3 months prior to study), productive (history of expectoration of half an egg cup sputum/day) bronchiectasis attended the respiratory clinic on 3 days. Day 1: 40-min training session on ACBT and Acapella. Days 2 and 3: 30-min treatment session of either ACBT or Acapella. Treatment order was determined by a concealed randomization procedure. The following outcomes were measured before and after treatment spirometry, SpO2 and breathlessness by an independent assessor who was blinded to treatment order. Weight of sputum (during treatment plus 30 min after treatment), number of coughs and patient preference were also recorded. RESULTS: No significant differences were found at baseline indicating that patients were stable. No significant differences were found between weight of sputum expectorated with ACBT treatment and weight of sputum expectorated with Acapella treatment--mean difference 0.54 g (95% CI -0.39 to 1.46). A greater proportion of patients preferred Acapella (14/20). CONCLUSION: Acapella is as effective a method of airway clearance as ACBT and may offer a user-friendly alternative to ACBT for patients with bronchiectasis.

Airway Obstruction↗

Modifications of citric acid cycle activity and gluconeogenesis in streptozotocin-induced diabetes and effects of metformin.

To better define the modifications of liver gluconeogenesis and citric acid cycle, or Krebs' cycle, activity induced by insulin deficiency and the effects of metformin on these abnormalities, we infused livers isolated from postabsorptive or starved normal and streptozotocin-induced diabetic rats with pyruvate and lactate (labeled with [3-13C]lactate) with or without the simultaneous infusion of metformin. Lactate and pyruvate uptake and glucose production were calculated. The 13C-labeling pattern of liver glutamate was used to calculate, according to Magnusson's model, the relative fluxes through Krebs' cycle and gluconeogenesis. These relative fluxes were converted into absolute values using substrate balances. In normal rats, starvation increased gluconeogenesis, the flux through pyruvate carboxylase-phosphoenolpyruvate carboxykinase (PC-PEPCK), and the ratio of PC to pyruvate dehydrogenase (PDH) flux (P < 0.05); metformin induced only a moderate decrease in the PC:PDH ratio. Livers from postabsorptive diabetic rats had increased lactate and pyruvate uptakes (P < 0.05); their metabolic fluxes resembled those of starved control livers, with increased gluconeogenesis and flux through PC-PEPCK. Starvation induced no further modifications in the diabetic group. Metformin decreased glucose output from the liver of starved diabetic rats (P < 0.05). The flux through PC-PEPCK and also pyruvate kinase were decreased (P < 0.05) by metformin in both groups of diabetic rats. In conclusion, insulin deficiency increased in this model of diabetes gluconeogenesis through enhanced uptake of substrate and increased flux through PC-PEPCK; metformin decreased glucose production by reducing the flux through PC-PEPCK.

Animals↗

Contribution of glucose/glucose 6-phosphate cycle activity to insulin resistance in type 2 (non-insulin-dependent) diabetes mellitus.

It has been suggested that increased glucose/glucose 6-phosphate substrate cycling impairs net hepatic glucose uptake in Type 2 (non-insulin-dependent) diabetes mellitus and contributes to hyperglycaemia. To investigate glucose/glucose 6-phosphate cycle activity and insulin action in Type 2 diabetes we studied eight patients and eight healthy control subjects, using the euglycaemic glucose clamp and isotope dilution techniques with purified [2-3H]- and [6-3H] glucose tracers, in the post-absorptive state and eight patients and five healthy control subjects during consecutive insulin infusions at rates of 0.4 and 2.0 mU.kg-1 x min-1. [2-3H]glucose and [6-3H]glucose radioactivity in plasma samples were determined using selective enzymatic detritiation, allowing calculation of glucose turnover rates for each isotope, the difference being glucose/glucose 6-phosphate cycling. Endogenous glucose production ([6-3H]glucose) was greater in diabetic than control subjects in the post-absorptive state (15.6 +/- 1.5 vs 11.3 +/- 0.4 mumol.kg-1 x min-1, p < 0.05) and during the 0.4 mU insulin infusion (10.1 +/- 1.3 vs 5.2 +/- 0.3 mumol.kg-1 x min-1, p < 0.01) indicating hepatic insulin resistance. Glucose/glucose 6-phosphate cycling was significantly greater in diabetic than in control subjects in the post-absorptive state (2.6 +/- 0.4 vs 1.6 +/- 0.2 mumol.kg-1 x min-1, p < 0.05) but not during the 0.4 mU insulin infusion (2.0 +/- 0.4 vs 2.0 +/- 0.3 mumol.kg-1 x min-1).(ABSTRACT TRUNCATED AT 250 WORDS)

Diabetes Mellitus, Type 2↗

Immediate effects of an 8-h advance shift of the rest-activity cycle on 24-h profiles of cortisol.

To investigate the adaptation of plasma cortisol profiles to an abrupt phase advance of the rest-activity cycle, eight normal young subjects were submitted in a sleep laboratory to an 8-h advance shift of their sleep-wake and dark-light cycles. The shift was achieved by advancing bedtimes from 2300-0700 to 1500-2300. Blood samples were obtained at 20-min intervals for 68 consecutive hours. The shift resulted within 6-9 h in a 3- to 4-h advance of timings of the nadir of the cortisol profile and of the end of the quiescent period but had no immediate effect on the timing of cortisol acrophase. The quiescent period of cortisol secretion was shortened and fragmented. Thus a major advance shift achieved without enforcing sleep deprivation results in a rapid partial adaptation of the temporal profiles of cortisol but also in a marked disruption of the cortisol quiescent period. Sleep onset was consistently followed by a decrease in cortisol concentrations. Conversely, both sleep-wake and dark-light transitions were consistently associated with cortisol secretory pulses.

Adaptation, Physiological↗

A comparison of autogenic drainage and the active cycle of breathing techniques in patients with chronic obstructive pulmonary diseases.

PURPOSE: The effects of a long-term treatment of autogenic drainage (AD) and the active cycle of breathing techniques (ACBT) were evaluated in patients with chronic obstructive pulmonary disease (COPD). METHODS: Thirty clinically stable male COPD patients were randomly assigned to AD or the ACBT treatment for a 20-day treatment period. Patients were assessed through pulmonary function tests, arterial blood gases, a 6-minute walking test, and a modified Borg Scale before, and immediately after the walking test. RESULTS: Autogenic drainage improved forced vital capacity, forced expiratory volume in 1 second, peak expiratory flow rate, forced expiratory volume from 25 to 75%, chronic hypercapnia, arterial oxygenation, exercise performance, and dyspnea perception during exercise. The ACBT increased forced vital capacity, peak expiratory flow rate, arterial oxygenation and exercise performance. Peak expiratory flow rate increased in AD more than in ACBT. In AD treatment, the increase in oxygen saturation was significantly higher than in ACBT treatment. Chronic hypercapnia improved significantly in AD treatment than in ACBT. No differences were found in other lung function parameters. CONCLUSIONS: Autogenic drainage is as effective as the ACBT in cleaning secretions and improving lung functions. These techniques can be used in stable COPD patients according to the patients' and the physiotherapists' preferences.

Aged↗

Chest physiotherapy in cystic fibrosis: a comparative study of autogenic drainage and the active cycle of breathing techniques with postural drainage.

BACKGROUND--Autogenic drainage has been suggested as an alternative method of chest physiotherapy in patients with cystic fibrosis. In this study autogenic drainage was compared with the active cycle of breathing techniques (ACBT) together with postural drainage. METHODS--Eighteen patients with cystic fibrosis took part in a randomised two-day crossover trial. There were two sessions of one method of physiotherapy on each day, either autogenic drainage or ACBT. The study days were one week apart. On each day the patients were monitored for six hours. Mucus movement was quantified by a radioaerosol technique. Airway clearance was studied qualitatively using xenon-133 scintigraphic studies at the start and end of each day. Expectorated sputum was collected during and for one hour after each session of physiotherapy. Pulmonary functions tests were performed before and after each session. Oxygen saturation (SaO2) and heart rate were measured before, during, and after each session. RESULTS--Autogenic drainage cleared mucus from the lungs faster than ACBT over the whole day. Both methods improved ventilation, as assessed by the xenon-133 ventilation studies. No overall differences were found in the pulmonary function test results, but more patients had an improved forced expiratory flow from 25% to 75% with autogenic drainage, while more showed an improved forced vital capacity with ACBT. No differences were found in sputum weight and heart rate, nor in mean SaO2 over the series, but four patients desaturated during ACBT. CONCLUSIONS--Autogenic drainage was found to be as good as ACBT at clearing mucus in patients with cystic fibrosis and is therefore an effective method of home physiotherapy. Patients with cystic fibrosis should be assessed as to which method suits them best.

Adolescent↗

Airway clearance in bronchiectasis: a randomized crossover trial of active cycle of breathing techniques (incorporating postural drainage and vibration) versus test of incremental respiratory endurance.

OBJECTIVES: The purpose of this study was to compare the efficacy of the test of incremental respiratory endurance (TIRE) with active cycle of breathing techniques (ACBT) [incorporating postural drainage (PD) and vibration] as methods of airway clearance in adults with bronchiectasis. DESIGN: A randomized crossover study in which a single session of ACBT (incorporating PD and vibration) was compared to a single session of TIRE was carried out in 20 patients (14 female) with stable, productive bronchiectasis. MEASUREMENTS: Weight of sputum (treatment plus 30 min) was the primary outcome measure recorded. Pre- and post-treatment measures of lung function and SpO2 were also recorded. RESULTS: All 20 patients were stable during the study period. Sputum weight expectorated during and 30 min post-ACBT (incorporating PD and vibration) treatment was significantly greater than the sputum weight expectorated during and 30 min post-TIRE treatment [mean difference 2.44 g (95% CI 0.43-4.45)]. CONCLUSION: ACBT (incorporating PD and vibration) is a more effective method of airway clearance in bronchiectasis than TIRE during single treatment sessions.

Bronchiectasis↗

Effects of prenatal exposure to cocaine on the rest-activity cycle of the preweanling rat.

Either 45 or 60 mg/kg cocaine HCl was administered from days 8-22 of gestation. Pair-fed and nontreated groups served as controls and all treated and control litters were fostered at birth to untreated dams. To examine whether cocaine produces effects on the rest-activity cycle of the offspring, groups of three littermates from each of the treated and control groups were tested for an 8-h observation period on electronic activity monitors at 22 days of age. Neither activity level nor the rest-activity pattern were affected by cocaine. These findings are discussed in relation to previous studies of cannabis and methadone effects on the rest-activity measure.

Animals↗

Ferric cycle activity and Alzheimer disease.

Elevated plasma homocysteine is an independent risk factor for the development of Alzheimer disease, however, the precise mechanisms underlying this are unclear. In this article, we expound on a novel hypothesis depicting the involvement of homocysteine in a vicious circle involving iron dysregulation and oxidative stress designated as the ferric cycle (Dwyer et al., 2004). Moreover, we suspect that the development of a critical heme deficiency in vulnerable neurons is an additional consequence of ferric cycle activity. Oxidative stress and heme deficiency are consistent with many pathological changes found in Alzheimer disease including mitochondrial abnormalities and impaired energy metabolism, cell cycle and cell signaling abnormalities, neuritic pathology, and other features of the disease involving alterations in iron homeostasis such as the abnormal expression of heme oxygenase-1 and iron response protein 2. Based on the ferric cycle concept, we have developed a model of Alzheimer disease development and progression, which offers an explanation for why sporadic Alzheimer disease is different than normal aging and why familial Alzheimer disease and sporadic Alzheimer disease could have different etiologies but a common end-stage.

Alzheimer Disease↗