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      Enhancement of Hippocampal CA3 Neuronal Dendritic Arborization by Glycyrrhiza glabra root extract Treatment in Wistar Albino Rats

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          Abstract

          Background:

          In the traditional system of medicine, the roots and rhizomes of Glycyrrhiza glabra (Gg) (family: Leguminosae) have been in clinical use for centuries.

          Aim:

          In the present study, we investigated the role of aqueous extract of root of Gg treatment on the dendritic morphology of hippocampal Cornu Ammonis area three (CA3) neurons, one of the regions concerned with learning and memory, in 1- month- old male Wistar albino rats.

          Materials and Methods:

          The aqueous extract of root of Gg was administered orally in four doses (75, 150, 225 and 300 mg/kg) for 4 weeks. After the treatment period, all experimental animals were subjected to spatial learning (Morris water maze, Hebb-William's maze and elevated plus maze) tests. At the end of the spatial memory tests, the rats were deeply anesthetized with Pentobarbitone and killed their brains were removed rapidly and fixed in rapid Golgi fixative. Hippocampal CA3 neurons were traced using camera lucida, and dendritic arborization and intersections were quantified. These data were compared to those of age-matched control rats.

          Results:

          The aqueous root extract of Gg in the dose of 150 and 225 mg/kg/p.o showed a significant ( P < 0.01) enhancement of dendritic arborization (dendritic branching points) and dendritic intersections along the length of both apical and basal dendrites in hippocampal (CA3) pyramidal neurons is comparable to control.

          Conclusion:

          Based on our results obtained, we conclude that constituents present in aqueous root extract of Gg have neuronal dendritic growth stimulating properties.

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          Most cited references21

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          Stress induces atrophy of apical dendrites of hippocampal CA3 pyramidal neurons.

          The hippocampus is vulnerable to the damaging actions of insults such as transient ischemia and repetitive stimulation, as well as repeated exposure to exogenous glucocorticoids. This study investigated effects of a repeated psychological stressor, restraint, on the CA3 pyramidal neurons which are vulnerable to damage by repetitive stimulation. Repeated daily restraint stress for 21 days caused apical dendrites of CA3 pyramidal neurons to atrophy, while basal CA3 dendrites did not change. Rats undergoing this treatment were healthy and showed some adaptation of the glucocorticoid stress response over 21 days; however, stress reduced body weight gain by 14% and increased adrenal weight relative to body weight by 20%. Results are discussed in relation to the possible role of adrenal steroids and excitatory amino acids.
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            MRI-based measurement of hippocampal volume in patients with combat-related posttraumatic stress disorder.

            Studies in nonhuman primates suggest that high levels of cortisol associated with stress have neurotoxic effects on the hippocampus, a brain structure involved in memory. The authors previously showed that patients with combat-related posttraumatic stress disorder (PTSD) had deficits in short-term memory. The purpose of this study was to compare the hippocampal volume of patients with PTSD to that of subjects without psychiatric disorder. Magnetic resonance imaging was used to measure the volume of the hippocampus in 26 Vietnam combat veterans with PTSD and 22 comparison subjects selected to be similar to the patients in age, sex, race, years of education, socioeconomic status, body size, and years of alcohol abuse. The PTSD patients had a statistically significant 8% smaller right hippocampal volume relative to that of the comparison subjects, but there was no difference in the volume of other brain regions (caudate and temporal lobe). Deficits in short-term verbal memory as measured with the Wechsler Memory Scale were associated with smaller right hippocampal volume in the PTSD patients only. These findings are consistent with a smaller right hippocampal volume in PTSD that is associated with functional deficits in verbal memory.
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              Chronic effects of Brahmi (Bacopa monnieri) on human memory.

              A study is reported on the effects of Brahmi (Bacopa monniera) on human memory. Seventy-six adults aged between 40 and 65 years took part in a double-blind randomized, placebo control study in which various memory functions were tested and levels of anxiety measured. There were three testing sessions: one prior to the trial, one after three months on the trial, and one six weeks after the completion of the trial. The results show a significant effect of the Brahmi on a test for the retention of new information. Follow-up tests showed that the rate of learning was unaffected, suggesting that Brahmi decreases the rate of forgetting of newly acquired information. Tasks assessing attention, verbal and visual short-term memory and the retrieval of pre-experimental knowledge were unaffected. Questionnaire measures of everyday memory function and anxiety levels were also unaffected.
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                Author and article information

                Journal
                J Nat Sci Biol Med
                J Nat Sci Biol Med
                JNSBM
                Journal of Natural Science, Biology, and Medicine
                Medknow Publications & Media Pvt Ltd (India )
                0976-9668
                2229-7707
                Jan-Jun 2014
                : 5
                : 1
                : 25-29
                Affiliations
                [1 ] Department of Anatomy, Santhiram Medical College, Nandyal, Kurnool District, Andhra Pradesh, India
                [2 ] Department of Anatomy, Yenepoya Medical College, Yenepoya University, Deralakatte, Mangalore, Karnataka, India
                Author notes
                Address for correspondence: [1* ] Mr. Kosuri Chakravarthi, Department of Anatomy, Santhiram Medical College, NH-18, Nandyal, Kurnool - 518 501, Andhra Pradesh, India. E-mail: kalyankosuric@ 123456gmail.com
                Article
                JNSBM-5-25
                10.4103/0976-9668.127279
                3961946
                bc615955-8cec-49af-9699-819a656a129e
                Copyright: © Journal of Natural Science, Biology and Medicine

                This is an open-access article distributed under the terms of the Creative Commons Attribution-Noncommercial-Share Alike 3.0 Unported, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

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                Original Article

                Life sciences
                camera lucida,dendritic arborization,glycyrrhiza glabra,hippocampal ca3 neurons
                Life sciences
                camera lucida, dendritic arborization, glycyrrhiza glabra, hippocampal ca3 neurons

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