The muscarinic receptor response to acetylcholine regulates the hippocampal-related learning, memory, neural plasticity and the production and processing of the pro-nerve growth factor (proNGF) by hippocampal cells. The development and progression of diabetes generate a mild cognitive impairment reducing the functions of the septo-hippocampal cholinergic circuitry, depressing neural plasticity and inducing proNGF accumulation in the brain. Here we demonstrate, in a rat model of early type-1 diabetes, that a physical therapy, the electroacupuncture, counteracts the diabetes-induced deleterious effects on hippocampal physiology by ameliorating hippocampal-related memory functions; recovering the impaired long-term potentiation at the dentate gyrus (DG-LTP) and the lowered expression of the vesicular glutamate transporter 1; normalizing the activity-dependent release of proNGF in diabetic rat hippocampus. Electroacupuncture exerted its therapeutic effects by regulating the expression and activity of M1- and M2-acetylcholine muscarinic receptors subtypes in the dentate gyrus of hippocampus. Our results suggest that a physical therapy based on repetitive sensory stimulation could promote hippocampal neural activity, neuronal metabolism and functions, and conceivably improve the diabetes-induced cognitive impairment. Our data can support the setup of therapeutic protocols based on a better integration between physical therapies and pharmacology for the cure of diabetes-associated neurodegeneration and possibly for Alzheimer's disease.

Recovery of hippocampal functions and modulation of muscarinic response by electroacupuncture in young diabetic rats / Soligo, Marzia; Piccinin, Sonia; Protto, Virginia; Gelfo, Francesca; De Stefano, Maria Egle; Florenzano, Fulvio; Berretta, Erica; Petrosini, Laura; Nisticã², Robert; Manni, Luigi. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - ELETTRONICO. - 7:1(2017), pp. 1-15. [10.1038/s41598-017-08556-z]

Recovery of hippocampal functions and modulation of muscarinic response by electroacupuncture in young diabetic rats

Soligo, Marzia;Piccinin, Sonia;Protto, Virginia;De Stefano, Maria Egle;Berretta, Erica;Petrosini, Laura;
2017

Abstract

The muscarinic receptor response to acetylcholine regulates the hippocampal-related learning, memory, neural plasticity and the production and processing of the pro-nerve growth factor (proNGF) by hippocampal cells. The development and progression of diabetes generate a mild cognitive impairment reducing the functions of the septo-hippocampal cholinergic circuitry, depressing neural plasticity and inducing proNGF accumulation in the brain. Here we demonstrate, in a rat model of early type-1 diabetes, that a physical therapy, the electroacupuncture, counteracts the diabetes-induced deleterious effects on hippocampal physiology by ameliorating hippocampal-related memory functions; recovering the impaired long-term potentiation at the dentate gyrus (DG-LTP) and the lowered expression of the vesicular glutamate transporter 1; normalizing the activity-dependent release of proNGF in diabetic rat hippocampus. Electroacupuncture exerted its therapeutic effects by regulating the expression and activity of M1- and M2-acetylcholine muscarinic receptors subtypes in the dentate gyrus of hippocampus. Our results suggest that a physical therapy based on repetitive sensory stimulation could promote hippocampal neural activity, neuronal metabolism and functions, and conceivably improve the diabetes-induced cognitive impairment. Our data can support the setup of therapeutic protocols based on a better integration between physical therapies and pharmacology for the cure of diabetes-associated neurodegeneration and possibly for Alzheimer's disease.
2017
nerve growth-factor; long-term potentiation; alzheimers-disease; dentate gyrus; synaptic plasticity; spatial memory; brain; acupuncture; receptor; acetylcholine
01 Pubblicazione su rivista::01a Articolo in rivista
Recovery of hippocampal functions and modulation of muscarinic response by electroacupuncture in young diabetic rats / Soligo, Marzia; Piccinin, Sonia; Protto, Virginia; Gelfo, Francesca; De Stefano, Maria Egle; Florenzano, Fulvio; Berretta, Erica; Petrosini, Laura; Nisticã², Robert; Manni, Luigi. - In: SCIENTIFIC REPORTS. - ISSN 2045-2322. - ELETTRONICO. - 7:1(2017), pp. 1-15. [10.1038/s41598-017-08556-z]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1016316
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