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J Macri

Publications and source records attributed to J Macri.

28 records · Page 2Linked to original sources

Development of behavioral tolerance: a search for subcellular mechanisms.

Development of behavioral tolerance is one of the processes by which living organisms adjust to changes in their internal and external environments. The search for neurochemical mechanisms underlying such processes requires the testing of many hypotheses. The present study was designed to examine the possible involvement of certain subcellular events. The concentrations of acetylcholine (ACh) and choline (Ch), the high-affinity transport of Ch, and the rate of synthesis of ACh were measured in synaptosomes prepared from the brains of rats. The assays were made at critical times during the acute changes in behavior induced by administration of the anticholinesterase, di-isopropylfluorophosphate, and during the development of behavioral tolerance to this compound as chronicity of administration continued. No statistically significant differences were found among treatment groups in the total concentration of ACh or Ch, the synthesis of ACh, or the high-affinity transport of Ch. These results, plus evidence from previous experiments, indicate that the development of behavioral tolerance does not relate to the factors studied. Consequently, alternative mechanisms should be considered. In addition to changes in cholinergic (muscarinic) receptors already shown to occur concomitantly with the development of behavioral tolerance, it is suggested that the possible involvement of mechanisms controlling release of ACh should be studied.

Acetylcholine↗

Some behavioral effects of suppressing choline transport by cerebroventricular injection of hemicholinium-3.

Evidence supports the proposition that the high affinity Ch uptake system associated with cholinergic nerve terminals can be the rate limiting step in the synthesis of the neurotransmitter, acetylcholine. The present experiment was designed to test the hypothesis that variations of the system would be reflected selectively in changes of conditioned avoidance behavior. HC-3, which primarily affects the high affinity component of Ch transport thus reducing endogenous levels of ACh and the synthetic capacity of cholinergic nerve terminals, was administered cerebroventricularly at 5 doses ranging from 0.0 (saline control) to 10.0 microgram. Whole brain ACh levels determined by GCMS analysis following microwave fixation ranged from 25.0 to 5.0 nmol/g-1. Trend analyses demonstrate a precise dose dependent relation between neurochemical and behavioral variables: median trials to condition increased as ACh level decreased. More detailed analyses of the results lead to the interpretation that suppression of high affinity Ch transport in brain is associated with deficiencies in the use of information and not with sensory input and storage nor with motor output.

Animals↗

Retrograde amnesia gradients: effects of direct cortical stimulation.

Electrical stimulation was delivered bilaterally to either the anterior or posterior cortex in rats from 0.1 second to 4 hours after a single training trial on an inhibitory avoidance task. As indicated by a retention test given 24 hours later, the length of the retrograde amnesia gradients ranged from 5 seconds to 240 minutes, depending on the brain region stimulated and the intensity of the stimulating current. The stimulation intensity that was threshold for amnesia varied directly with the length of the interval between training and treatment.

Amnesia↗

Distribution of the alpha1 subunit of the GABA(A) receptor on midget and parasol ganglion cells in the retina of the common marmoset Callithrix jacchus.

The inhibitory neurotransmitter gamma aminobutyric acid (GABA) has been shown to influence the responses of ganglion cells in the mammalian retina. Consistently, GABA(A) receptor subunits have been localized to different ganglion cell types. In this study, the distribution of the alpha1 subunit of the GABA(A) receptor on the dendrites of midget and parasol ganglion cells was investigated quantitatively in the retina of a New World monkey, the marmoset. Ganglion cells were injected with Neurobiotin in a live in vitro retinal whole-mount preparation. Retinal pieces were then processed with an antibody against the alpha1 subunit of the GABA(A) receptor. Strong punctate immunoreactivity indicative of synaptic localization is present in the ON and OFF sublamina of the inner plexiform layer. Many of the immunoreactive puncta coincide with the dendrites of both midget and parasol ganglion cells. Immunoreactive puncta are present on distal and proximal dendrites of ON and OFF cells of both ganglion cell types. On average, parasol cells show a slight increase in the spatial density of immunoreactive puncta with distance from the soma, whereas the density of immunoreactive puncta on midget cells stays even. Parasol ganglion cells show a slightly higher average density of immunoreactive puncta (0.083 puncta/microm dendrite) than midget cells (0.054 puncta/microm dendrite).

Animals↗