<rdf:RDF xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#" xmlns:dcterms="http://purl.org/dc/terms/">
<rdf:Description rdf:about="https://riquim.fq.edu.uy/items/show/6809">
    <dcterms:title><![CDATA[<strong>Acute and chronic sleep restriction differentially modify maternal behavior and milk macronutrient composition in the postpartum rat</strong>]]></dcterms:title>
    <dcterms:subject><![CDATA[PRIVACI&Oacute;N DE SUE&Ntilde;O]]></dcterms:subject>
    <dcterms:subject><![CDATA[PROTEINA LACTEA]]></dcterms:subject>
    <dcterms:subject><![CDATA[LACTANCIA]]></dcterms:subject>
    <dcterms:subject><![CDATA[LECHE]]></dcterms:subject>
    <dcterms:subject><![CDATA[BIBLIOGRAFIA NACIONAL QUIMICA]]></dcterms:subject>
    <dcterms:subject><![CDATA[2024]]></dcterms:subject>
    <dcterms:abstract><![CDATA[Backgrounds: Sleep restriction is considered a stressful condition itself, causing a wide variety of physiological alterations, from cognitive and hormonal to immunological status. In addition, it is established that stress in mother rats can modify milk ejection, milk composition, and maternal care of the pups. Also, sleep disturbances during the early stages of motherhood are a common feature of all studied species. In this context, while the impacts of sleep disruption in non-lactating animals were extensively investigated, its repercussions during the initial phases of motherhood have been poorly explored. Therefore, we wonder if maternal behavior, milk ejection and its macronutrient composition would be disrupted when mother rats are subjected to an additional acute or chronic sleep restriction to the already existing sleep disturbances. Methods: Lactating rats were implanted with unilateral electrodes for polysomnographic recordings and for deep brain electrical stimulation into mesopontine waking-promoting area (for sleep deprivation). During the early postpartum period (postpartum day 5&ndash;9), mother rats were randomly assigned into one of three groups: chronic sleep restriction group (CSR; 6 h of sleep deprivation/day for five consecutive days), acute sleep restriction group (ASR; 6 h of sleep deprivation only for one day), or undisturbed group (control group). Active maternal behaviors (retrievals of the pups into the nest, mouthing, lickings [corporal and anogenital] and sniffing the pups) and passive maternal behaviors (kyphotic and supine nursing postures) were evaluated during a 30 min period without sleep restriction immediately after the sleep restriction or control period. The litter weight gain was assessed every day, and on the last experimental session mothers were milked for posterior macronutrients analysis (protein, carbohydrates and fat).Results: When compared to control group, CSR decreased the amount of milk ejected in the middle days of the sleep restriction period, while ASR did not affect this parameter. Moreover, ASR reduced milk protein content compared to control and CSR groups. Finally, compared to the control group, CSR reduced active maternal behaviors towards the end of the treatment days. Conclusions: We demonstrated that not only acute but also chronic sleep restriction impacts on the postpartum period, each one affecting different aspects of maternal behavior and lactation. Our results suggest the existence of a homeostatic recovery mechanism in breastfeeding during CSR, possibly ensuring the survival of the litter, while the decline in active maternal behaviors appears to be cumulative.]]></dcterms:abstract>
    <dcterms:creator><![CDATA[<strong>Pe&ntilde;a, Florencia</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Serantes, Diego</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Rivas, Mayda</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Castro, Juan Pedro.</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Torterolo Minetti, Pablo Daniel.</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Rodr&iacute;guez Camejo, Claudio</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Hern&aacute;ndez, Ana</strong>]]></dcterms:creator>
    <dcterms:creator><![CDATA[<strong>Benedett, Luciana</strong>]]></dcterms:creator>
    <dcterms:source><![CDATA[Physiology and Behavior v. 278, 2024. -- e114522]]></dcterms:source>
    <dcterms:publisher><![CDATA[Elsevier]]></dcterms:publisher>
    <dcterms:date><![CDATA[2024]]></dcterms:date>
    <dcterms:rights><![CDATA[<p><strong>Informaci&oacute;n sobre Derechos de Autor</strong></p>
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    <dcterms:format><![CDATA[PDF]]></dcterms:format>
    <dcterms:extent><![CDATA[10 p.]]></dcterms:extent>
    <dcterms:language><![CDATA[Ingl&eacute;s]]></dcterms:language>
    <dcterms:type><![CDATA[Art&iacute;culo]]></dcterms:type>
    <dcterms:identifier><![CDATA[10.1016/j.physbeh.2024.114522]]></dcterms:identifier>
</rdf:Description></rdf:RDF>
