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Browsing by Author "Paterson, Alex (57195424931)"

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    Ageing restructures the transcriptome of the hypothalamic supraoptic nucleus and alters the response to dehydration
    (2023)
    Elsamad, Ghadir (57867064400)
    ;
    Mecawi, André Souza (19337525700)
    ;
    Pauža, Audrys G. (56032819000)
    ;
    Gillard, Benjamin (57189054076)
    ;
    Paterson, Alex (57195424931)
    ;
    Duque, Victor J. (57224181244)
    ;
    Šarenac, Olivera (23971098200)
    ;
    Žigon, Nina Japundžić (59158444100)
    ;
    Greenwood, Mingkwan (56081209100)
    ;
    Greenwood, Michael P. (56346914300)
    ;
    Murphy, David (55479343600)
    Ageing is associated with altered neuroendocrine function. In the context of the hypothalamic supraoptic nucleus, which makes the antidiuretic hormone vasopressin, ageing alters acute responses to hyperosmotic cues, rendering the elderly more susceptible to dehydration. Chronically, vasopressin has been associated with numerous diseases of old age, including type 2 diabetes and metabolic syndrome. Bulk RNAseq transcriptome analysis has been used to catalogue the polyadenylated supraoptic nucleus transcriptomes of adult (3 months) and aged (18 months) rats in basal euhydrated and stimulated dehydrated conditions. Gene ontology and Weighted Correlation Network Analysis revealed that ageing is associated with alterations in the expression of extracellular matrix genes. Interestingly, whilst the transcriptomic response to dehydration is overall blunted in aged animals compared to adults, there is a specific enrichment of differentially expressed genes related to neurodegenerative processes in the aged cohort, suggesting that dehydration itself may provoke degenerative consequences in aged rats. © 2023, The Author(s).
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    Publication
    Ageing restructures the transcriptome of the hypothalamic supraoptic nucleus and alters the response to dehydration
    (2023)
    Elsamad, Ghadir (57867064400)
    ;
    Mecawi, André Souza (19337525700)
    ;
    Pauža, Audrys G. (56032819000)
    ;
    Gillard, Benjamin (57189054076)
    ;
    Paterson, Alex (57195424931)
    ;
    Duque, Victor J. (57224181244)
    ;
    Šarenac, Olivera (23971098200)
    ;
    Žigon, Nina Japundžić (59158444100)
    ;
    Greenwood, Mingkwan (56081209100)
    ;
    Greenwood, Michael P. (56346914300)
    ;
    Murphy, David (55479343600)
    Ageing is associated with altered neuroendocrine function. In the context of the hypothalamic supraoptic nucleus, which makes the antidiuretic hormone vasopressin, ageing alters acute responses to hyperosmotic cues, rendering the elderly more susceptible to dehydration. Chronically, vasopressin has been associated with numerous diseases of old age, including type 2 diabetes and metabolic syndrome. Bulk RNAseq transcriptome analysis has been used to catalogue the polyadenylated supraoptic nucleus transcriptomes of adult (3 months) and aged (18 months) rats in basal euhydrated and stimulated dehydrated conditions. Gene ontology and Weighted Correlation Network Analysis revealed that ageing is associated with alterations in the expression of extracellular matrix genes. Interestingly, whilst the transcriptomic response to dehydration is overall blunted in aged animals compared to adults, there is a specific enrichment of differentially expressed genes related to neurodegenerative processes in the aged cohort, suggesting that dehydration itself may provoke degenerative consequences in aged rats. © 2023, The Author(s).
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    The effects of aging on biosynthetic processes in the rat hypothalamic osmoregulatory neuroendocrine system
    (2018)
    Greenwood, Michael P. (56346914300)
    ;
    Greenwood, Mingkwan (56081209100)
    ;
    Romanova, Elena V. (7103134553)
    ;
    Mecawi, Andre S. (19337525700)
    ;
    Paterson, Alex (57195424931)
    ;
    Sarenac, Olivera (23971098200)
    ;
    Japundžić-Žigon, Nina (6506302556)
    ;
    Antunes-Rodrigues, José (7006219357)
    ;
    Paton, Julian F.R. (55486090800)
    ;
    Sweedler, Jonathan V. (7102998068)
    ;
    Murphy, David (55479343600)
    Elderly people exhibit a diminished capacity to cope with osmotic challenges such as dehydration. We have undertaken a detailed molecular analysis of arginine vasopressin (AVP) biosynthetic processes in the supraoptic nucleus (SON) of the hypothalamus and secretory activity in the posterior pituitary of adult (3 months) and aged (18 months) rats, to provide a comprehensive analysis of age-associated changes to the AVP system. By matrix-assisted laser desorption/ionization time-of-flight mass spectrometry analysis, we identified differences in pituitary peptides, including AVP, in adult and aged rats under both basal and dehydrated states. In the SON, increased Avp gene transcription, coincided with reduced Avp promoter methylation in aged rats. Based on transcriptome data, we have previously characterized a number of novel dehydration-induced regulatory factors involved in the response of the SON to osmotic cues. We found that some of these increase in expression with age, while dehydration-induced expression of these genes in the SON was attenuated in aged rats. In summary, we show that aging alters the rat AVP system at the genome, transcriptome, and peptidome levels. These alterations however did not affect circulating levels of AVP in basal or dehydrated states. © 2018 The Authors
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    Publication
    The effects of aging on biosynthetic processes in the rat hypothalamic osmoregulatory neuroendocrine system
    (2018)
    Greenwood, Michael P. (56346914300)
    ;
    Greenwood, Mingkwan (56081209100)
    ;
    Romanova, Elena V. (7103134553)
    ;
    Mecawi, Andre S. (19337525700)
    ;
    Paterson, Alex (57195424931)
    ;
    Sarenac, Olivera (23971098200)
    ;
    Japundžić-Žigon, Nina (6506302556)
    ;
    Antunes-Rodrigues, José (7006219357)
    ;
    Paton, Julian F.R. (55486090800)
    ;
    Sweedler, Jonathan V. (7102998068)
    ;
    Murphy, David (55479343600)
    Elderly people exhibit a diminished capacity to cope with osmotic challenges such as dehydration. We have undertaken a detailed molecular analysis of arginine vasopressin (AVP) biosynthetic processes in the supraoptic nucleus (SON) of the hypothalamus and secretory activity in the posterior pituitary of adult (3 months) and aged (18 months) rats, to provide a comprehensive analysis of age-associated changes to the AVP system. By matrix-assisted laser desorption/ionization time-of-flight mass spectrometry analysis, we identified differences in pituitary peptides, including AVP, in adult and aged rats under both basal and dehydrated states. In the SON, increased Avp gene transcription, coincided with reduced Avp promoter methylation in aged rats. Based on transcriptome data, we have previously characterized a number of novel dehydration-induced regulatory factors involved in the response of the SON to osmotic cues. We found that some of these increase in expression with age, while dehydration-induced expression of these genes in the SON was attenuated in aged rats. In summary, we show that aging alters the rat AVP system at the genome, transcriptome, and peptidome levels. These alterations however did not affect circulating levels of AVP in basal or dehydrated states. © 2018 The Authors
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    Transcriptome Analysis Reveals Downregulation of Urocortin Expression in the Hypothalamo-Neurohypophysial System of Spontaneously Hypertensive Rats
    (2021)
    Martin, Andrew (56393484400)
    ;
    Mecawi, Andre S. (19337525700)
    ;
    Antunes, Vagner R. (6602145803)
    ;
    Yao, Song T. (7402472135)
    ;
    Antunes-Rodrigues, Jose (7006219357)
    ;
    Paton, Julian F. R. (55486090800)
    ;
    Paterson, Alex (57195424931)
    ;
    Greenwood, Michael (56346914300)
    ;
    Šarenac, Olivera (23971098200)
    ;
    Savić, Bojana (57216800047)
    ;
    Japundžić-Žigon, Nina (6506302556)
    ;
    Murphy, David (55479343600)
    ;
    Hindmarch, Charles C. T. (12142620400)
    The chronically increased blood pressure characteristic of essential hypertension represents an insidious and cumulative risk for cardiovascular disease. Essential hypertension is a multifactorial condition, with no known specific aetiology but a strong genetic component. The Spontaneously Hypertensive rat (SHR) shares many characteristics of human essential hypertension, and as such is a commonly used experimental model. The mammalian hypothalamo-neurohypophyseal system (HNS) plays a pivotal role in the regulation of blood pressure, volume and osmolality. In order to better understand the possible role of the HNS in hypertension, we have used microarray analysis to reveal differential regulation of genes in the HNS of the SHR compared to a control normotensive strain, the Wistar Kyoto rat (WKY). These results were validated by quantitative reverse transcription-polymerase chain reaction (qRT-PCR). One of the genes identified and validated as being downregulated in SHR compared to WKY was that encoding the neuropeptide urocortin (Ucn). Immunohistochemical analyses revealed Ucn to be highly expressed within magnocellular neurons of the PVN and SON, with pronounced localisation in dendritic projections containing oxytocin and vasopressin. When Ucn was overexpressed in the PVN of the SHR by in vivo lentiviral mediated gene transfer, blood pressure was unaffected but there were significant, transient reductions in the VLF spectra of systolic blood pressure consistent with an action on autonomic balance. We suggest that Ucn may act, possibly via dendritic release, to subtly regulate neurohumoral aspects of arterial pressure control. © Copyright © 2021 Martin, Mecawi, Antunes, Yao, Antunes-Rodrigues, Paton, Paterson, Greenwood, Šarenac, Savić, Japundžić-Žigon, Murphy and Hindmarch.
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    Publication
    Transcriptome Analysis Reveals Downregulation of Urocortin Expression in the Hypothalamo-Neurohypophysial System of Spontaneously Hypertensive Rats
    (2021)
    Martin, Andrew (56393484400)
    ;
    Mecawi, Andre S. (19337525700)
    ;
    Antunes, Vagner R. (6602145803)
    ;
    Yao, Song T. (7402472135)
    ;
    Antunes-Rodrigues, Jose (7006219357)
    ;
    Paton, Julian F. R. (55486090800)
    ;
    Paterson, Alex (57195424931)
    ;
    Greenwood, Michael (56346914300)
    ;
    Šarenac, Olivera (23971098200)
    ;
    Savić, Bojana (57216800047)
    ;
    Japundžić-Žigon, Nina (6506302556)
    ;
    Murphy, David (55479343600)
    ;
    Hindmarch, Charles C. T. (12142620400)
    The chronically increased blood pressure characteristic of essential hypertension represents an insidious and cumulative risk for cardiovascular disease. Essential hypertension is a multifactorial condition, with no known specific aetiology but a strong genetic component. The Spontaneously Hypertensive rat (SHR) shares many characteristics of human essential hypertension, and as such is a commonly used experimental model. The mammalian hypothalamo-neurohypophyseal system (HNS) plays a pivotal role in the regulation of blood pressure, volume and osmolality. In order to better understand the possible role of the HNS in hypertension, we have used microarray analysis to reveal differential regulation of genes in the HNS of the SHR compared to a control normotensive strain, the Wistar Kyoto rat (WKY). These results were validated by quantitative reverse transcription-polymerase chain reaction (qRT-PCR). One of the genes identified and validated as being downregulated in SHR compared to WKY was that encoding the neuropeptide urocortin (Ucn). Immunohistochemical analyses revealed Ucn to be highly expressed within magnocellular neurons of the PVN and SON, with pronounced localisation in dendritic projections containing oxytocin and vasopressin. When Ucn was overexpressed in the PVN of the SHR by in vivo lentiviral mediated gene transfer, blood pressure was unaffected but there were significant, transient reductions in the VLF spectra of systolic blood pressure consistent with an action on autonomic balance. We suggest that Ucn may act, possibly via dendritic release, to subtly regulate neurohumoral aspects of arterial pressure control. © Copyright © 2021 Martin, Mecawi, Antunes, Yao, Antunes-Rodrigues, Paton, Paterson, Greenwood, Šarenac, Savić, Japundžić-Žigon, Murphy and Hindmarch.

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