Zobrazeno 1 - 9
of 9
pro vyhledávání: '"leukocyte telomere length (LTL)"'
Publikováno v:
Heliyon, Vol 10, Iss 14, Pp e33854- (2024)
Background: The link between peripheral blood leukocyte telomere length (LTL) and endometriosis has remained uncertain. In order to investigate this association, a two-sample Mendelian randomization(MR) analysis was performed. Methods: We extracted S
Externí odkaz:
https://doaj.org/article/411ae2b146a44d8db455485b2dab6d57
Autor:
Changping Ouyang, Yinan Yang, Jinhua Pan, Heming Liu, Xuemei Wang, Shengze Zhou, Xiaoru Shi, Yanxia Zhang, Dan Wang, Xiaobin Hu
Publikováno v:
Toxics, Vol 12, Iss 6, p 409 (2024)
There is evidence to support the links between lead and cadmium exposure with hypertension and also with leukocyte telomere length (LTL). The objective of this study is to investigate the role that LTL may play in the relationship between lead and ca
Externí odkaz:
https://doaj.org/article/323cd2e45c6a46259a078861132c77dc
Akademický článek
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Autor:
Manuel Mayhaus, Sandro Sorbi, Peter R. Schofield, A. Rollin, A. Karydas, Alessandro Padovani, Gilles Gasparoni, Peter St George-Hyslop, Carol Dobson-Stone, Stefano F. Cappa, D. S. Knopman, John Hardy, John R. Hodges, Graziella Milan, Florence Pasquier, Christopher Morris, Edward D. Huey, Marc Cruts, Y.A.L. Pijnenburg, R. C. Petersen, Elisa Rubino, P. Scheltens, Vincent Deramecourt, Neil Graff-Radford, Elio Scarpini, Ting Wang, Panagiotis Alexopoulos, Peter Heutink, Lena E. Hjermind, AB Singleton, Jordan Grafman, Elizabeth Thompson, Adrian Danek, Pietro Pietrini, Raffaele Ferrari, Innocenzo Rainero, C. Van Broeckhoven, Rosa Capozzo, Adaikalavan Ramasamy, J. van der Zee, Eric M. Wassermann, Karin Nilsson, Ging-Yuek Robin Hsiung, J. C. van Swieten, Ping Zeng, Rosa Rademakers, Siro Bagnoli, Amalia C. Bruni, Anna Richardson, Dimitrios Kapogiannis, Ian R. A. Mackenzie, Martin N. Rossor, Bruce L. Miller, Roberta Ghidoni, Raffaele Maletta, Massimo Franceschi, Rafael Blesa, Vivianna M. Van Deerlin, Christer Nilsson, Glenda M. Halliday, Jordi Clarimón, John Q. Trojanowski, Michael Tierney, Valeria Novelli, Agustín Ruiz, Didier Hannequin, Giorgio Giaccone, Elise G.P. Dopper, Nicoletta Smirne, F Tagliavini, I. Leber, Julie S. Snowden, Sara Rollinson, Alexis Brice, Ian G. McKeith, John E. Nielsen, Paolo Sorrentino, Véronique Golfier, Maura Gallo, Lauren Bartley, B. F. Boeve, Giancarlo Logroscino, Elena Alonso, Lorenzo Pinessi, Matt Baker, Nigel J. Cairns, Matthias Riemenschneider, William S. Brooks, Alexander Gerhard, Mark Kristiansen, Eric Haan, Israel Hernandez, Ekaterina Rogaeva, Jason D. Warren, Thibaud Lebouvier, Nick C. Fox, Stuart Pickering-Brown, Giacomina Rossi, Carlos Cruchaga, G. Binetti, Maria Landqvist Waldö, William W. Seeley, Jonathan D. Rohrer, Keith A. Josephs, Diego Albani, Wei Gu, Huei-Hsin Chiang, Luigi Ferrucci, H. Zhao, Howie Rosen, Pau Pastor, Alfredo Postiglione, Evelyn Jaros, Livia Bernardi, Dena G. Hernandez, Alberto Lleó, James B. Rowe, Parastoo Momeni, Maria Serpente, Huw R. Morris, Timothy D. Griffiths, Maria Grazia Spillantini, Alan J. Thomas, Maria Elena Conidi, M. Anfossi, Sabrina Pichler, Martine Vercelletto, Murray Grossman, Johannes C. M. Schlachetzki, Gianluigi Forloni, Dennis W. Dickson, Chiara Fenoglio, Olivier Piguet, John B.J. Kwok, Benedetta Nacmias, Harro Seelaar, Robert Perneczky, A. Baborie, Patrizia Rizzu, Y. Gao, Simon Mead, Janine Diehl-Schmid, Sara Ortega-Cubero, Mike A. Nalls, Daniela Galimberti, Annibale Alessandro Puca, Cristina Razquin, Mercè Boada, Johannes Attems, Luisa Benussi, Chiara Cupidi, Irene Piaceri, Xinghao Yu, Joseph E. Parisi, Alexander Kurz, John Collinge, James Uphill, Barbara Borroni, Francesca Frangipane, Caroline Graff, Bernd Ibach, D. M. A. Mann
Publikováno v:
Scientific reports, vol 10, iss 1
Scientific Reports, 10(1):12184. Nature Publishing Group
Scientific reports 10(1), 12184 (2020). doi:10.1038/s41598-020-68848-9
Scientific Reports, Vol 10, Iss 1, Pp 1-12 (2020)
Gao, Y, Wang, T, Yu, X, Ferrari, R, Hernandez, D G, Nalls, M A, Rohrer, J D, Ramasamy, A, Kwok, J B J, Dobson-Stone, C, Brooks, W S, Schofield, P R, Halliday, G M, Hodges, J R, Piguet, O, Bartley, L, Thompson, E, Haan, E, Hernández, I, Ruiz, A, Boada, M, Borroni, B, Padovani, A, Cruchaga, C, Cairns, N J, Benussi, L, Binetti, G, Ghidoni, R, Forloni, G, Albani, D, Galimberti, D, Fenoglio, C, Serpente, M, Scarpini, E, Clarimón, J, Lleó, A, Blesa, R, Waldö, M L, Nilsson, K, Nilsson, C, Mackenzie, I R A, Hsiung, G Y R, Mann, D M A, Grafman, J, Morris, C M, Attems, J, Griffiths, T D, McKeith, I G, Thomas, A J, Pietrini, P, Huey, E D, Wassermann, E M, Baborie, A, Jaros, E, Tierney, M C, Pastor, P, Razquin, C, Ortega-Cubero, S, Alonso, E, Perneczky, R, Diehl-Schmid, J, Alexopoulos, P, Kurz, A, Rainero, I, Rubino, E, Pinessi, L, Rogaeva, E, George-Hyslop, P S, Rossi, G, Tagliavini, F, Giaccone, G, Rowe, J B, Schlachetzki, J C M, Uphill, J, Collinge, J, Mead, S, Danek, A, Van Deerlin, V M, Grossman, M, Trojanowski, J Q, van der Zee, J, Cruts, M, Van Broeckhoven, C, Cappa, S F, Leber, I, Hannequin, D, Golfier, V, Vercelletto, M, Brice, A, Nacmias, B, Sorbi, S, Bagnoli, S, Piaceri, I, Nielsen, J E, Hjermind, L E, Riemenschneider, M, Mayhaus, M, Ibach, B, Gasparoni, G, Pichler, S, Gu, W, Rossor, M N, Fox, N C, Warren, J D, Spillantini, M G, Morris, H R, Rizzu, P, Heutink, P, Snowden, J S, Rollinson, S, Richardson, A, Gerhard, A, Bruni, A C, Maletta, R, Frangipane, F, Cupidi, C, Bernardi, L, Anfossi, M, Gallo, M, Conidi, M E, Smirne, N, Rademakers, R, Baker, M, Dickson, D W, Graff-Radford, N R, Petersen, R C, Knopman, D, Josephs, K A, Boeve, B F, Parisi, J E, Seeley, W W, Miller, B L, Karydas, A M, Rosen, H, van Swieten, J C, Dopper, E G P, Seelaar, H, Pijnenburg, Y A L, Scheltens, P, Logroscino, G, Capozzo, R, Novelli, V, Puca, A A, Franceschi, M, Postiglione, A, Milan, G, Sorrentino, P, Kristiansen, M, Chiang, H H, Graff, C, Pasquier, F, Rollin, A, Deramecourt, V, Lebouvier, T, Kapogiannis, D, Ferrucci, L, Pickering-Brown, S, Singleton, A B, Hardy, J, Momeni, P, Zhao, H, Zeng, P & International FTD-Genomics Consortium (IFGC) 2020, ' Mendelian randomization implies no direct causal association between leukocyte telomere length and amyotrophic lateral sclerosis ', Scientific Reports, vol. 10, no. 1, 12184 . https://doi.org/10.1038/s41598-020-68848-9
Scientific Reports
r-IIB SANT PAU. Repositorio Institucional de Producción Científica del Instituto de Investigación Biomédica Sant Pau
instname
Gao, Y, Wang, T, Yu, X, Ferrari, R, Hernandez, D G, Nalls, M A, Rohrer, J D, Ramasamy, A, Kwok, J B J, Dobson-Stone, C, Brooks, W S, Schofield, P R, Halliday, G M, Hodges, J R, Piguet, O, Bartley, L, Thompson, E, Haan, E, Hernández, I, Ruiz, A, Boada, M, Borroni, B, Padovani, A, Cruchaga, C, Cairns, N J, Benussi, L, Binetti, G, Ghidoni, R, Forloni, G, Albani, D, Galimberti, D, Fenoglio, C, Serpente, M, Scarpini, E, Clarimón, J, Lleó, A, Blesa, R, Waldö, M L, Nilsson, K, Nilsson, C, Mackenzie, I R A, Hsiung, G Y R, Mann, D M A, Grafman, J, Morris, C M, Attems, J, Griffiths, T D, Rowe, J B, Nielsen, J E, Hjermind, L E & International FTD-Genomics Consortium (IFGC) 2020, ' Mendelian randomization implies no direct causal association between leukocyte telomere length and amyotrophic lateral sclerosis ', Scientific Reports, vol. 10, no. 1, 12184 . https://doi.org/10.1038/s41598-020-68848-9
Scientific reports
Scientific Reports, 10(1):12184. Nature Publishing Group
Scientific reports 10(1), 12184 (2020). doi:10.1038/s41598-020-68848-9
Scientific Reports, Vol 10, Iss 1, Pp 1-12 (2020)
Gao, Y, Wang, T, Yu, X, Ferrari, R, Hernandez, D G, Nalls, M A, Rohrer, J D, Ramasamy, A, Kwok, J B J, Dobson-Stone, C, Brooks, W S, Schofield, P R, Halliday, G M, Hodges, J R, Piguet, O, Bartley, L, Thompson, E, Haan, E, Hernández, I, Ruiz, A, Boada, M, Borroni, B, Padovani, A, Cruchaga, C, Cairns, N J, Benussi, L, Binetti, G, Ghidoni, R, Forloni, G, Albani, D, Galimberti, D, Fenoglio, C, Serpente, M, Scarpini, E, Clarimón, J, Lleó, A, Blesa, R, Waldö, M L, Nilsson, K, Nilsson, C, Mackenzie, I R A, Hsiung, G Y R, Mann, D M A, Grafman, J, Morris, C M, Attems, J, Griffiths, T D, McKeith, I G, Thomas, A J, Pietrini, P, Huey, E D, Wassermann, E M, Baborie, A, Jaros, E, Tierney, M C, Pastor, P, Razquin, C, Ortega-Cubero, S, Alonso, E, Perneczky, R, Diehl-Schmid, J, Alexopoulos, P, Kurz, A, Rainero, I, Rubino, E, Pinessi, L, Rogaeva, E, George-Hyslop, P S, Rossi, G, Tagliavini, F, Giaccone, G, Rowe, J B, Schlachetzki, J C M, Uphill, J, Collinge, J, Mead, S, Danek, A, Van Deerlin, V M, Grossman, M, Trojanowski, J Q, van der Zee, J, Cruts, M, Van Broeckhoven, C, Cappa, S F, Leber, I, Hannequin, D, Golfier, V, Vercelletto, M, Brice, A, Nacmias, B, Sorbi, S, Bagnoli, S, Piaceri, I, Nielsen, J E, Hjermind, L E, Riemenschneider, M, Mayhaus, M, Ibach, B, Gasparoni, G, Pichler, S, Gu, W, Rossor, M N, Fox, N C, Warren, J D, Spillantini, M G, Morris, H R, Rizzu, P, Heutink, P, Snowden, J S, Rollinson, S, Richardson, A, Gerhard, A, Bruni, A C, Maletta, R, Frangipane, F, Cupidi, C, Bernardi, L, Anfossi, M, Gallo, M, Conidi, M E, Smirne, N, Rademakers, R, Baker, M, Dickson, D W, Graff-Radford, N R, Petersen, R C, Knopman, D, Josephs, K A, Boeve, B F, Parisi, J E, Seeley, W W, Miller, B L, Karydas, A M, Rosen, H, van Swieten, J C, Dopper, E G P, Seelaar, H, Pijnenburg, Y A L, Scheltens, P, Logroscino, G, Capozzo, R, Novelli, V, Puca, A A, Franceschi, M, Postiglione, A, Milan, G, Sorrentino, P, Kristiansen, M, Chiang, H H, Graff, C, Pasquier, F, Rollin, A, Deramecourt, V, Lebouvier, T, Kapogiannis, D, Ferrucci, L, Pickering-Brown, S, Singleton, A B, Hardy, J, Momeni, P, Zhao, H, Zeng, P & International FTD-Genomics Consortium (IFGC) 2020, ' Mendelian randomization implies no direct causal association between leukocyte telomere length and amyotrophic lateral sclerosis ', Scientific Reports, vol. 10, no. 1, 12184 . https://doi.org/10.1038/s41598-020-68848-9
Scientific Reports
r-IIB SANT PAU. Repositorio Institucional de Producción Científica del Instituto de Investigación Biomédica Sant Pau
instname
Gao, Y, Wang, T, Yu, X, Ferrari, R, Hernandez, D G, Nalls, M A, Rohrer, J D, Ramasamy, A, Kwok, J B J, Dobson-Stone, C, Brooks, W S, Schofield, P R, Halliday, G M, Hodges, J R, Piguet, O, Bartley, L, Thompson, E, Haan, E, Hernández, I, Ruiz, A, Boada, M, Borroni, B, Padovani, A, Cruchaga, C, Cairns, N J, Benussi, L, Binetti, G, Ghidoni, R, Forloni, G, Albani, D, Galimberti, D, Fenoglio, C, Serpente, M, Scarpini, E, Clarimón, J, Lleó, A, Blesa, R, Waldö, M L, Nilsson, K, Nilsson, C, Mackenzie, I R A, Hsiung, G Y R, Mann, D M A, Grafman, J, Morris, C M, Attems, J, Griffiths, T D, Rowe, J B, Nielsen, J E, Hjermind, L E & International FTD-Genomics Consortium (IFGC) 2020, ' Mendelian randomization implies no direct causal association between leukocyte telomere length and amyotrophic lateral sclerosis ', Scientific Reports, vol. 10, no. 1, 12184 . https://doi.org/10.1038/s41598-020-68848-9
Scientific reports
Funder: QingLan Research Project of Jiangsu for Outstanding Young Teachers
Funder: Project funded by Postdoctoral Science Foundation of Xuzhou Medical University
Funder: Priority Academic Program Development of Jiangsu Higher Education Inst
Funder: Project funded by Postdoctoral Science Foundation of Xuzhou Medical University
Funder: Priority Academic Program Development of Jiangsu Higher Education Inst
Autor:
M. Peconi1, D. Scarabino2, E. Mantuano1, M. Frontali1, M. Morello3, A. Copponi3, R. M. Corbo4, L. Veneziano1
Publikováno v:
European Human genetics Conference, pp. 1441–1442, Gothenburg, Sweden, June 15-18, 2019
info:cnr-pdr/source/autori:M. Peconi1, D. Scarabino2, E. Mantuano1, M. Frontali1, M. Morello3, A. Copponi3, R. M. Corbo4, L. Veneziano1;/congresso_nome:European Human genetics Conference/congresso_luogo:Gothenburg, Sweden/congresso_data:June 15-18, 2019/anno:2019/pagina_da:1441/pagina_a:1442/intervallo_pagine:1441–1442
info:cnr-pdr/source/autori:M. Peconi1, D. Scarabino2, E. Mantuano1, M. Frontali1, M. Morello3, A. Copponi3, R. M. Corbo4, L. Veneziano1;/congresso_nome:European Human genetics Conference/congresso_luogo:Gothenburg, Sweden/congresso_data:June 15-18, 2019/anno:2019/pagina_da:1441/pagina_a:1442/intervallo_pagine:1441–1442
Introduction. Huntington's Disease (HD), an autosomal dominant neurodegenerative disease, is caused by an expanded CAG repeat in the first exon of HTT gene. The disease is fully penetrant in individuals with 40 or more CAG repeats, and reduced penetr
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=cnr_________::25e9ac4fe33ca6c8c970734aed2eeb42
Akademický článek
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