Fetal Brain Transplantation in Kainic Acid Lesioned Caudate Nucleus of Adult Rats

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Fetal Brain Transplantation in Kainic Acid Lesioned Caudate Nucleus of Adult Rats

This study confirmed that bilateral kainic acid (KA) injection at the caudate produces aphagia and adipsia in rats. The reduction in food and water intake was fatal after a higher dosage of the drug. To test the effect of transplantation on the mortality rate, KA was first injected in the left caudate, in one set of rats. After a gap of three days, fetal striatal tissue was unilaterally transpl...

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Neuronal organization of fetal striatal grafts in kainate- and sham-lesioned rat caudate nucleus: light- and electron-microscopic observations.

Behavioral and biochemical studies have suggested that fetal striatal grafts in the adult rat neostriatum can reverse deficits induced by excitotoxic lesions of the host caudate tissue. In this study, fetal day 17-18 striatal grafts were examined at 2, 5-6, 12, and 44-48 weeks following their implantation into saline- or kainic acid-treated host caudate nucleus in order to compare the neuronal ...

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Neurogenesis in the caudate nucleus of the adult rabbit.

Stem cells with the potential to give rise to new neurons reside in different regions of the adult rodents CNS, but in vivo only the hippocampal dentate gyrus and the subventricular zone-olfactory bulb system are neurogenic under physiological condition. Comparative analyses have shown that vast species differences exist in the way the mammalian brain is organized and in its neurogenic capacity...

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Acute hypertension after the local injection of kainic acid into the nucleus tractus solitarii of rats.

Kainic acid (KA), an analogue of L-glutamate, was microinjected in 0.1 microliter of saline into the nucleus tractus solitarii (NTS) of adult rats. In rats anesthetized with halothane or alpha-chloralose, KA injected unilaterally elicited hypotension, bradycardia, and apnea. The threshold dose was 0.1-0.2 ng (10(-13) mol). Doses greater than 0.2 ng blocked responses to subsequent injections for...

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Kainic acid is supposed to be a specific agonist for a subclass of excitatory glutamate receptors in the vertebrate CNS. An investigation of (2 nM) [3H]kainic acid binding sites in goldfish brain, using quantitative autoradiography, has revealed evidence for two types of kainic acid receptors which differ in sensitivity to glutamic acid. L-Glutamic acid (0.1-1 mM) displaced over 95% of specific...

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ژورنال

عنوان ژورنال: Journal of Neural Transplantation and Plasticity

سال: 1992

ISSN: 0792-8483

DOI: 10.1155/np.1992.125