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1.
Braz. j. med. biol. res ; 46(10): 844-854, 24/set. 2013. graf
Article in English | LILACS | ID: lil-688554

ABSTRACT

Impaired cholinergic neurotransmission can affect memory formation and influence sleep-wake cycles (SWC). In the present study, we describe the SWC in mice with a deficient vesicular acetylcholine transporter (VAChT) system, previously characterized as presenting reduced acetylcholine release and cognitive and behavioral dysfunctions. Continuous, chronic ECoG and EMG recordings were used to evaluate the SWC pattern during light and dark phases in VAChT knockdown heterozygous (VAChT-KDHET, n=7) and wild-type (WT, n=7) mice. SWC were evaluated for sleep efficiency, total amount and mean duration of slow-wave, intermediate and paradoxical sleep, as well as the number of awakenings from sleep. After recording SWC, contextual fear-conditioning tests were used as an acetylcholine-dependent learning paradigm. The results showed that sleep efficiency in VAChT-KDHET animals was similar to that of WT mice, but that the SWC was more fragmented. Fragmentation was characterized by an increase in the number of awakenings, mainly during intermediate sleep. VAChT-KDHET animals performed poorly in the contextual fear-conditioning paradigm (mean freezing time: 34.4±3.1 and 44.5±3.3 s for WT and VAChT-KDHET animals, respectively), which was followed by a 45% reduction in the number of paradoxical sleep episodes after the training session. Taken together, the results show that reduced cholinergic transmission led to sleep fragmentation and learning impairment. We discuss the results on the basis of cholinergic plasticity and its relevance to sleep homeostasis. We suggest that VAChT-KDHET mice could be a useful model to test cholinergic drugs used to treat sleep dysfunction in neurodegenerative disorders.


Subject(s)
Animals , Male , Mice , Behavior, Animal/physiology , Cholinergic Agents/metabolism , Maze Learning/physiology , Sleep Stages/physiology , Synaptic Transmission/physiology , Wakefulness/physiology , Mice, Knockout , Models, Animal
2.
Braz. j. med. biol. res ; 37(6): 929-935, Jun. 2004. ilus, tab, graf
Article in English | LILACS | ID: lil-359901

ABSTRACT

T-type Ca2+ channels are important for cell signaling by a variety of cells. We report here the electrophysiological and molecular characteristics of the whole-cell Ca2+ current in GH3 clonal pituitary cells. The current inactivation at 0 mV was described by a single exponential function with a time constant of 18.32 ñ 1.87 ms (N = 16). The I-V relationship measured with Ca2+ as a charge carrier was shifted to the left when we applied a conditioning pre-pulse of up to -120 mV, indicating that a low voltage-activated current may be present in GH3 cells. Transient currents were first activated at -50 mV and peaked around -20 mV. The half-maximal voltage activation and the slope factors for the two conditions are -35.02 ñ 2.4 and 6.7 ñ 0.3 mV (pre-pulse of -120 mV, N = 15), and -27.0 ñ 0.97 and 7.5 ñ 0.7 mV (pre-pulse of -40 mV, N = 9). The 8-mV shift in the activation mid-point was statistically significant (P < 0.05). The tail currents decayed bi-exponentially suggesting two different T-type Ca2+ channel populations. RT-PCR revealed the presence of a1G (CaV3.1) and a1I (CaV3.3) T-type Ca2+ channel mRNA transcripts.


Subject(s)
Humans , Calcium Channels, T-Type , Pituitary Gland , Cell Line , Clone Cells , Electrophysiology , Reverse Transcriptase Polymerase Chain Reaction , RNA
3.
Braz. j. med. biol. res ; 23(2): 121-31, 1990. tab, ilus
Article in English | LILACS | ID: lil-85149

ABSTRACT

Human amniotic fluid contains a complex mixture of proteins, of which only the minority are of fetal origin. We have identified the fetal polypeptides of second trimester amniotic fluid samples by two different methods. The first method was the side by side comparison of silver-stained two-dimensional polyacrylamide gels of amniotic fluid polypeptides with pregnant female plasma polypeptides, after passage of both through a Blue Sepharose affinity column to remove albumin. the second method was the identification of the fetal polypeptides fractions with apparent molecular weights of 220, 200, 82, 70, 59, 52, 50, 36, 30, 25, 20, 18 and 11 kDa. Five of these polypeptides, with molecular weights of 82,59,50,20 and 18 kDa, have not been previously identified. The identification of these fetal components provides a reference base for molecular studies of normal and pathological fetal development


Subject(s)
Fetal Proteins/analysis , Amniotic Fluid/chemistry , Peptides/analysis , Peptides/metabolism , Pregnancy/blood , Blotting, Western , Electrophoresis, Polyacrylamide Gel/methods , Peptides/blood , Pregnancy Trimester, Second
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