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Study 4 of 12Cyclic Glycine-Proline (cGP) literaturebiorxiv-preprint · Observational · Preclinical2020

Maternal treatment of cyclic glycine-proline improves memory, astrocyte plasticity, vascularization and GluR-1 expression of adult offspring in rats

Maternal administration of cyclic glycine-proline in rats may improve spatial memory in offspring, potentially through enhanced astrocytic plasticity and vascularization.

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this study against the rest of the cyclic glycine-proline (cgp) corpus
8
Preclinical
3
Observational · this one
0
Open-label
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Randomised
1
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Summary and findings

This study evaluated the effects of maternal treatment with cyclic glycine-proline (cGP) on the spatial memory and associated neurobiological changes in adult offspring rats. Dams were administered cGP or saline from post-natal days 8-22, and spatial memory was assessed using the Morris Water Maze between post-natal days 70-75. Key findings included improved path efficiency and reduced heading errors in cGP-treated offspring compared to saline controls.

How much of this paper we could read: full text read (0.70). We had a clear abstract, so the summary below closely tracks the paper. What this means →
Higher path efficiency of entry to the platform zone in cGP-treated offspring (p=0.03)Preclinical2020

Abstract

The authors’ words, as biorxiv-preprint supplied them

Abstract Background and Purpose: Cyclic glycine-proline (cGP) regulates the function of insulin-like growth factor-1 (IGF-1), which is essential for post-natal brain development and adult cognitive function. We evaluated the efficacy of maternally administered cGP on spatial memory and the association with astrocytic plasticity, vascularization and synaptic expressions in the hippocampus of their adult offspring. Experimental Approach: Either cGP or saline was orally administered to Sprague Dawley dams from post-natal days 8-22. Spatial memory was evaluated using Morris Water Maze tests between post-natal days 70-75. Using immunohistochemistry and stereological analysis, we evaluated capillary density, astrocytic processes and expression of synaptophysin and glutamate receptor-1 (GluR-1) in the CA1 stratum-radiatum of the hippocampus. Key Results: Compared to the saline-treated offspring, cGP-treated offspring showed higher path efficiency of entry to the platform zone (p=0.03) and lower average heading errors to the platform zone (p=0.02). Astrocyte processes of cGP-treated offspring were longer and larger with more branches (p=0.03-0.0001) than saline-treated offspring. The density of capillaries (p=0.007) and GluR-1 (p=0.02) were also higher in cGP-treated offspring. The average heading error was negatively correlated with the length (r=-0.69), volume (r=-0.72) and number of astrocytic branches (r=-0.65). Independent of treatment, the changes of astrocyte processes were positively correlated with the density of capillaries (r=0.73-0.78) and expression of GluR-1 (r=0.66-0.68). Conclusion and Implications: The improved spatial memory of cGP-treated offspring after post-natal maternal administration may be mediated via promoting astrocytic plasticity, vascularization and glutamate trafficking. Therefore, cGP may have a role in regulating IGF-1 function during brain development.

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