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  1. Identifying biomarkers associated with Alzheimer’s disease (AD) progression may enable patient enrichment and improve clinical trial designs. Epigenome-wide association studies have revealed correlations betwe...

    Authors: Qingqin S. Li, Aparna Vasanthakumar, Justin W. Davis, Kenneth B. Idler, Kwangsik Nho, Jeffrey F. Waring and Andrew J. Saykin
    Citation: Clinical Epigenetics 2021 13:191
  2. High-grade serous ovarian cancer (HGSOC) is the most common type of epigenetically heterogeneous ovarian cancer. Methylation typing has previously been used in many tumour types but not in HGSOC. Methylation t...

    Authors: Jieyu Wang, Jun Li, Ruifang Chen, Huiran Yue, Wenzhi Li, Beibei Wu, Yang Bai, Guohua Zhu and Xin Lu
    Citation: Clinical Epigenetics 2021 13:190
  3. Racial/ethnic disparities in health reflect a combination of genetic and environmental causes, and DNA methylation may be an important mediator. We compared in an exploratory manner the blood DNA methylome of ...

    Authors: Min-Ae Song, Anna Eames Seffernick, Kellie J. Archer, Kellie M. Mori, Song-Yi Park, Linda Chang, Thomas Ernst, Maarit Tiirikainen, Karolina Peplowska, Lynne R. Wilkens, Loïc Le Marchand and Unhee Lim
    Citation: Clinical Epigenetics 2021 13:188

    The Editorial to this article has been published in Clinical Epigenetics 2021 13:189

  4. SARS-CoV-2 uses the angiotensin-converting enzyme 2 (ACE2) and neuropilin-1 (NRP1) receptors for entry into cells, and the serine protease TMPRSS2 for S protein priming. Inhibition of protease activity or the ...

    Authors: Maria Laura Saiz, Marta L. DeDiego, Darío López-García, Viviana Corte-Iglesias, Aroa Baragaño Raneros, Ivan Astola, Victor Asensi, Carlos López-Larrea and Beatriz Suarez-Alvarez
    Citation: Clinical Epigenetics 2021 13:187

    The Correction to this article has been published in Clinical Epigenetics 2021 13:209

  5. Lung cancer is the leading cause of cancer-related mortality. The alteration of DNA methylation plays a major role in the development of lung cancer. Methylation biomarkers become a possible method for lung ca...

    Authors: Lei Li, Zhujia Ye, Sai Yang, Hao Yang, Jing Jin, Yingying Zhu, Jinsheng Tao, Siyu Chen, Jiehan Xu, Yanying Liu, Weihe Liang, Bo Wang, Mengzhu Yang, Qiaoyun Huang, Zhiwei Chen, Weimin Li…
    Citation: Clinical Epigenetics 2021 13:185
  6. Current clinical guidelines suggest that breast cancers with low hormone receptor expression (LowHR) in 1–10% of tumor cells should be regarded as hormone receptor positive. However, clinical data show that th...

    Authors: Philipp Jurmeister, Karsten Weber, Sonia Villegas, Thomas Karn, Michael Untch, Anne Thieme, Volkmar Müller, Eliane Taube, Peter Fasching, Wolfgang D. Schmitt, Frederik Marmé, Elmar Stickeler, Bruno V. Sinn, Paul Jank, Christian Schem, Frederick Klauschen…
    Citation: Clinical Epigenetics 2021 13:184
  7. Little evidence exists on the health effects of e-cigarette use. DNA methylation may serve as a biomarker for exposure and could be predictive of future health risk. We aimed to investigate the DNA methylation...

    Authors: Rebecca C. Richmond, Carlos Sillero-Rejon, Jasmine N. Khouja, Claire Prince, Alexander Board, Gemma Sharp, Matthew Suderman, Caroline L. Relton, Marcus Munafò and Suzanne H. Gage
    Citation: Clinical Epigenetics 2021 13:183
  8. Stunting is a condition in which a child does not reach their full growth potential due to chronic undernutrition. It arises during the first 2 years of a child’s life and is associated with developmental defi...

    Authors: Kristyna Kupkova, Savera J. Shetty, Rashidul Haque, William A. Petri Jr. and David T. Auble
    Citation: Clinical Epigenetics 2021 13:182
  9. This study aims to investigate the independent and combined effects of progesterone and suppressor of cytokine signaling (SOCS)-3 DNA methylation on type 2 diabetes mellitus (T2DM) among men and postmenopausal wo...

    Authors: Lulu Wang, Zhenxing Mao, Xiaotian Liu, Dandan Wei, Pengling Liu, Luting Nie, Keliang Fan, Ning Kang, Yu Song, Qingqing Xu, Juan Wang, Mian Wang, Wei Liao, Tao Jing, Wenjie Li, Chongjian Wang…
    Citation: Clinical Epigenetics 2021 13:181
  10. Road traffic air pollution is linked with an increased risk of autistic spectrum disorder (ASD). The aim of this study is to assess the effect of exposure to prenatal or postnatal traffic-related air pollution...

    Authors: Qinfeng Zhou, Yu Tian, Chenlu Xu, Juling Wang and Yongtang Jin
    Citation: Clinical Epigenetics 2021 13:180
  11. Nasal intestinal-type adenocarcinomas (ITAC) are strongly related to chronic wood dust exposure: The intestinal phenotype relies on CDX2 overexpression but underlying molecular mechanisms remain unknown. Our o...

    Authors: Patrice Gallet, Abderrahim Oussalah, Celso Pouget, Gunnar Dittmar, Celine Chery, Guillaume Gauchotte, Roger Jankowski, Jean Louis Gueant and Rémi Houlgatte
    Citation: Clinical Epigenetics 2021 13:179
  12. Authors: Carla Debernardi, Laura Libera, Enrico Berrino, Nora Sahnane, Anna Maria Chiaravalli, Cristiana Laudi, Mattia Berselli, Anna Sapino, Fausto Sessa, Tiziana Venesio and Daniela Furlan
    Citation: Clinical Epigenetics 2021 13:178

    The original article was published in Clinical Epigenetics 2021 13:154

  13. Maternal smoking during pregnancy (MSDP) affects development of multiple organ systems including the placenta, lung, brain, and vasculature. In particular, children exposed to MSDP show lifelong deficits in pu...

    Authors: Lyndsey E. Shorey-Kendrick, Cindy T. McEvoy, Shannon M. O’Sullivan, Kristin Milner, Brittany Vuylsteke, Robert S. Tepper, David M. Haas, Byung Park, Lina Gao, Annette Vu, Cynthia D. Morris and Eliot R. Spindel
    Citation: Clinical Epigenetics 2021 13:177
  14. Nucleotide-specific 5-hydroxymethylcytosine (5hmC) remains understudied in pediatric central nervous system (CNS) tumors. 5hmC is abundant in the brain, and alterations to 5hmC in adult CNS tumors have been re...

    Authors: Nasim Azizgolshani, Curtis L. Petersen, Youdinghuan Chen, Joshua J. Levy, Lucas A. Salas, Laurent Perreard, Lananh N. Nguyen and Brock C. Christensen
    Citation: Clinical Epigenetics 2021 13:176
  15. Organoids or spheroids have emerged as a physiologically relevant in vitro preclinical model to study patient-specific diseases. A recent study used spheroids of MCF10 cells to model breast cancer progression ...

    Authors: Jingwei Li, Kun Fang, Lavanya Choppavarapu, Ke Yang, Yini Yang, Junbai Wang, Ruifeng Cao, Ismail Jatoi and Victor X. Jin
    Citation: Clinical Epigenetics 2021 13:175
  16. Multiple myeloma (MM) is a malignancy of plasma cells that largely remains incurable. The search for new therapeutic targets is therefore essential. In addition to a wide panel of genetic mutations, epigenetic...

    Authors: Laurie Herviou, Sara Ovejero, Fanny Izard, Ouissem Karmous-Gadacha, Claire Gourzones, Celine Bellanger, Eva De Smedt, Anqi Ma, Laure Vincent, Guillaume Cartron, Jian Jin, Elke De Bruyne, Charlotte Grimaud, Eric Julien and Jérôme Moreaux
    Citation: Clinical Epigenetics 2021 13:174
  17. Thymic epithelial tumors (TETs) are rare neoplasms, originating from epithelial thymic cells. The oncogenic potential of these rare neoplasms is still largely undefined, and a deeper molecular characterization...

    Authors: Alessia Iaiza, Claudia Tito, Zaira Ianniello, Federica Ganci, Valentina Laquintana, Enzo Gallo, Andrea Sacconi, Silvia Masciarelli, Luciana De Angelis, Sara Aversa, Daniele Diso, Marco Anile, Vincenzo Petrozza, Francesco Facciolo, Enrico Melis, Edoardo Pescarmona…
    Citation: Clinical Epigenetics 2021 13:173
  18. Pancreatic cancer is one of the lethal cancers among solid malignancies. Pathological diagnosis of surgical margins is sometimes unreliable due to tissue shrinkage, invisible field cancerization and skipped le...

    Authors: Yuki Sunagawa, Masamichi Hayashi, Suguru Yamada, Hiroshi Tanabe, Keisuke Kurimoto, Nobutake Tanaka, Fuminori Sonohara, Yoshikuni Inokawa, Hideki Takami, Mitsuro Kanda, Chie Tanaka, Goro Nakayama, Masahiko Koike and Yasuhiro Kodera
    Citation: Clinical Epigenetics 2021 13:172
  19. Prenatal risk factors are related to poor health and developmental outcomes for infants, potentially via epigenetic mechanisms. We tested associations between person-centered prenatal risk profiles, cumulative...

    Authors: Marie Camerota, Stefan Graw, Todd M. Everson, Elisabeth C. McGowan, Julie A. Hofheimer, T. Michael O’Shea, Brian S. Carter, Jennifer B. Helderman, Jennifer Check, Charles R. Neal, Steven L. Pastyrnak, Lynne M. Smith, Lynne M. Dansereau, Sheri A. DellaGrotta, Carmen J. Marsit and Barry M. Lester
    Citation: Clinical Epigenetics 2021 13:171
  20. Ageing is an inevitable condition that afflicts all humans. Recent achievements, such as the generation of induced pluripotent stem cells, have delivered preliminary evidence that slowing down and reversing th...

    Authors: Daniel J. Simpson, Nelly N. Olova and Tamir Chandra
    Citation: Clinical Epigenetics 2021 13:170
  21. BCOR (BCL6 corepressor) is an epigenetic regulator gene involved in the specification of cell differentiation and body structure development. Recurrent somatic BCOR mutations have been identified in myelodyspl...

    Authors: Xiao Li, Feng Xu, Zheng Zhang, Juan Guo, Qi He, Lu-Xi Song, Dong Wu, Li-Yu Zhou, Ji-Ying Su, Chao Xiao, Chun-Kang Chang and Ling-Yun Wu
    Citation: Clinical Epigenetics 2021 13:169
  22. Disease progression and therapeutic resistance are hallmarks of advanced stage prostate cancer (PCa), which remains a major cause of cancer-related mortality around the world. Longitudinal studies, coupled wit...

    Authors: Romina Silva, Bruce Moran, Anne-Marie Baird, Colm J. O’Rourke, Stephen P. Finn, Ray McDermott, William Watson, William M. Gallagher, Donal J. Brennan and Antoinette S. Perry
    Citation: Clinical Epigenetics 2021 13:168
  23. In an effort to contribute to overcoming the platinum resistance exhibited by most solid tumors, we performed an array of epigenetic approaches, integrating next-generation methodologies and public clinical da...

    Authors: Javier Andrés Soto, Carlos Rodríguez-Antolín, Olga Vera, Olga Pernía, Isabel Esteban-Rodríguez, Maria Dolores Diestro, Javier Benitez, Fátima Sánchez-Cabo, Rafael Alvarez, Javier De Castro and Inmaculada Ibanez de Cáceres
    Citation: Clinical Epigenetics 2021 13:167
  24. DNA methylation, an epigenetic modification, regulates gene transcription and maintains genome stability. DNA methyltransferase (DNMT) inhibitors can activate silenced genes at low doses and cause cytotoxicity...

    Authors: Chunhong Hu, Xiaohan Liu, Yue Zeng, Junqi Liu and Fang Wu
    Citation: Clinical Epigenetics 2021 13:166
  25. Glucocorticoids (GCs) play a pivotal role in fetal programming. Antenatal treatment with synthetic GCs (sGCs) in individuals in danger of preterm labor is common practice. Adverse short- and long-term effects ...

    Authors: Darina Czamara, Linda Dieckmann, Simone Röh, Sarah Kraemer, Rebecca C. Rancourt, Sara Sammallahti, Eero Kajantie, Hannele Laivuori, Johan G. Eriksson, Katri Räikkönen, Wolfgang Henrich, Andreas Plagemann, Elisabeth B. Binder, Thorsten Braun and Sonja Entringer
    Citation: Clinical Epigenetics 2021 13:165
  26. Prenatal alcohol exposure is recognized for altering DNA methylation profiles of brain cells during development, and to be part of the molecular basis underpinning Fetal Alcohol Spectrum Disorder (FASD) etiolo...

    Authors: L. M. Legault, K. Doiron, M. Breton-Larrivée, A. Langford-Avelar, A. Lemieux, M. Caron, L. A. Jerome-Majewska, D. Sinnett and S. McGraw
    Citation: Clinical Epigenetics 2021 13:164
  27. The trajectory of frailty in older adults is important to public health; therefore, markers that may help predict this and other important outcomes could be beneficial. Epigenetic clocks have been developed an...

    Authors: Chris P. Verschoor, David T. S. Lin, Michael S. Kobor, Oxana Mian, Jinhui Ma, Guillaume Pare and Gustavo Ybazeta
    Citation: Clinical Epigenetics 2021 13:163
  28. DNA methylation is involved in the regulation of gene expression and phenotypic variation, but the inter-relationship between genetic variation, DNA methylation and gene expression remains poorly understood. H...

    Authors: Anna Díez-Villanueva, Mireia Jordà, Robert Carreras-Torres, Henar Alonso, David Cordero, Elisabet Guinó, Xavier Sanjuan, Cristina Santos, Ramón Salazar, Rebeca Sanz-Pamplona and Victor Moreno
    Citation: Clinical Epigenetics 2021 13:162
  29. Atherosclerotic plaque vulnerability is a key feature of atheroprogression and precipitating acute cardiovascular events. Although the pivotal role of epigenetic regulation in atherosclerotic plaque destabiliz...

    Authors: Jingjin Li, Xiaoping Zhang, Mengxi Yang, Hang Yang, Ning Xu, Xueqiang Fan, Gang Liu, Xintong Jiang, Jiasai Fan, Lifang Zhang, Hu Zhang, Ying Zhou, Rui Li, Si Gao, Jiangli Jin, Zening Jin…
    Citation: Clinical Epigenetics 2021 13:161
  30. Several studies have reported an association between male infertility and aberrant sperm DNA methylation patterns, in particular in imprinted genes. In a recent investigation based on whole methylome and deep ...

    Authors: Sara Di Persio, Elsa Leitão, Marius Wöste, Tobias Tekath, Jann-Frederik Cremers, Martin Dugas, Xiaolin Li, Gerd Meyer zu Hörste, Sabine Kliesch, Sandra Laurentino, Nina Neuhaus and Bernhard Horsthemke
    Citation: Clinical Epigenetics 2021 13:160
  31. Early-stage lung cancers radiologically manifested as ground-glass opacities (GGOs) have been increasingly identified, among which pure GGO (pGGO) has a good prognosis after local resection. However, the optim...

    Authors: Ziqi Jia, Yadong Wang, Jianchao Xue, Xiaoying Yang, Zhongxing Bing, Chao Guo, Chao Gao, Zhenhuan Tian, Zhenzhen Zhang, Hualei Kong, Qiye He, Zhixi Su, Yiying Liu, Yang Song, Dianjing Liang, Naixin Liang…
    Citation: Clinical Epigenetics 2021 13:153
  32. Prader–Willi syndrome is a rare genetic neurodevelopmental disorder caused by a paternal deficiency of maternally imprinted gene expression located in the chromosome 15q11–q13 region. Previous studies have dem...

    Authors: Juliette Salles, Sanaa Eddiry, Emmanuelle Lacassagne, Virginie Laurier, Catherine Molinas, Éric Bieth, Nicolas Franchitto, Jean-Pierre Salles and Maithé Tauber
    Citation: Clinical Epigenetics 2021 13:159
  33. The multifactorial nature of non-alcoholic fatty liver disease cannot be explained solely by genetic factors. Recent evidence revealed that DNA methylation changes take place at proximal promoters within susce...

    Authors: Sara Diels, Bart Cuypers, Asta Tvarijonaviciute, Bruno Derudas, Evelien Van Dijck, An Verrijken, Luc F. Van Gaal, Kris Laukens, Philippe Lefebvre, Jose J. Ceron, Sven Francque, Wim Vanden Berghe and Wim Van Hul
    Citation: Clinical Epigenetics 2021 13:158
  34. Dystonia is a clinically and genetically heterogeneous movement disorder characterized by sustained or intermittent muscle contractions causing abnormal, often repetitive, movements and/or postures. Heterozygo...

    Authors: Andrea Ciolfi, Aidin Foroutan, Alessandro Capuano, Lucia Pedace, Lorena Travaglini, Simone Pizzi, Marco Andreani, Evelina Miele, Federica Invernizzi, Chiara Reale, Celeste Panteghini, Maria Iascone, Marcello Niceta, Ralitza H. Gavrilova, Laura Schultz-Rogers, Emanuele Agolini…
    Citation: Clinical Epigenetics 2021 13:157
  35. Aberrant DNA hypomethylation of the long interspersed nuclear elements (LINE-1 or L1) has been recognized as an early event of colorectal transformation. Simultaneous genetic and epigenetic analysis of colorec...

    Authors: Carla Debernardi, Laura Libera, Enrico Berrino, Nora Sahnane, Anna Maria Chiaravalli, Cristiana Laudi, Mattia Berselli, Anna Sapino, Fausto Sessa, Tiziana Venesio and Daniela Furlan
    Citation: Clinical Epigenetics 2021 13:154

    The Correction to this article has been published in Clinical Epigenetics 2021 13:178

  36. Non-alcoholic fatty liver disease (NAFLD) is characterized by changes in cell composition that occur throughout disease pathogenesis, which includes the development of fibrosis in a subset of patients. DNA met...

    Authors: Nicholas D. Johnson, Xiumei Wu, Christopher D. Still, Xin Chu, Anthony T. Petrick, Glenn S. Gerhard, Karen N. Conneely and Johanna K. DiStefano
    Citation: Clinical Epigenetics 2021 13:152
  37. Authors: David W. Chan, Wai-Yip Lam, Fushun Chen, Mingo M. H. Yung, Yau-Sang Chan, Wai-Sun Chan, Fangfang He, Stephanie S. Liu, Karen K. L. Chan, Benjamin Li and Hextan Y. S. Ngan
    Citation: Clinical Epigenetics 2021 13:151

    The original article was published in Clinical Epigenetics 2021 13:142

  38. Glioblastoma (GBM) is the most aggressive primary brain tumor, having a poor prognosis and a median overall survival of less than two years. Over the last decade, numerous findings regarding the distinct molec...

    Authors: Borja Sesé, Miquel Ensenyat-Mendez, Sandra Iñiguez, Pere Llinàs-Arias and Diego M. Marzese
    Citation: Clinical Epigenetics 2021 13:150

    The Correction to this article has been published in Clinical Epigenetics 2021 13:194

  39. There is a growing interest in the role of brain-derived neurotrophic factor (BDNF) in major depressive disorder (MDD). BDNF potentially exhibits opposite effects in the pathways linked to anhedonia and reward...

    Authors: J. Bakusic, E. Vrieze, M. Ghosh, D. A. Pizzagalli, B. Bekaert, S. Claes and L. Godderis
    Citation: Clinical Epigenetics 2021 13:149
  40. Alveolar capillary dysplasia with or without misalignment of the pulmonary veins (ACD/MPV) is a lethal congenital lung disorder associated with a variety of heterozygous genomic alterations in the FOXF1 gene or i...

    Authors: Evelien Slot, Ruben Boers, Joachim Boers, Wilfred F. J. van IJcken, Dick Tibboel, Joost Gribnau, Robbert Rottier and Annelies de Klein
    Citation: Clinical Epigenetics 2021 13:148
  41. The dilation of the aorta that occurs as a consequence of a congenitally bicuspid aortic valve (BAV) is associated with a risk of dissection, aneurysm or rupture. With progressive aortopathy, surgery is often ...

    Authors: Ashna Maredia, David Guzzardi, Mohammad Aleinati, Fatima Iqbal, Arshroop Khaira, Aiswarya Madhu, Xuemei Wang, Alex J. Barker, Patrick M. McCarthy, Paul W. M. Fedak and Steven C. Greenway
    Citation: Clinical Epigenetics 2021 13:147
  42. Increasing evidence linking epigenetic mechanisms and different diseases, including cancer, has prompted in the last 15 years the investigation of histone post-translational modifications (PTMs) in clinical sa...

    Authors: Roberta Noberini, Evelyn Oliva Savoia, Stefania Brandini, Francesco Greco, Francesca Marra, Giovanni Bertalot, Giancarlo Pruneri, Liam A. McDonnell and Tiziana Bonaldi
    Citation: Clinical Epigenetics 2021 13:145
  43. The PEPaNIC multicenter randomized controlled trial (RCT) has shown that early administration of supplemental parenteral nutrition (early-PN) as compared with withholding PN for 1 week (late-PN) induced long-t...

    Authors: An Jacobs, Fabian Güiza, Ines Verlinden, Karolijn Dulfer, Gonzalo Garcia Guerra, Koen Joosten, Sascha C. Verbruggen, Ilse Vanhorebeek and Greet Van den Berghe
    Citation: Clinical Epigenetics 2021 13:146
  44. Non-coding RNA 886 (nc886) is coded from a maternally inherited metastable epiallele. We set out to investigate the determinants and dynamics of the methylation pattern at the nc886 epiallele and how this methyla...

    Authors: Saara Marttila, Leena E. Viiri, Pashupati P. Mishra, Brigitte Kühnel, Pamela R. Matias-Garcia, Leo-Pekka Lyytikäinen, Tiina Ceder, Nina Mononen, Wolfgang Rathmann, Juliane Winkelmann, Annette Peters, Mika Kähönen, Nina Hutri-Kähönen, Markus Juonala, Katriina Aalto-Setälä, Olli Raitakari…
    Citation: Clinical Epigenetics 2021 13:143
  45. In contrast to stable genetic events, epigenetic changes are highly plastic and play crucial roles in tumor evolution and development. Epithelial ovarian cancer (EOC) is a highly heterogeneous disease that is ...

    Authors: David W. Chan, Wai-Yip Lam, Fushun Chen, Mingo M. H. Yung, Yau-Sang Chan, Wai-Sun Chan, Fangfang He, Stephanie S. Liu, Karen K. L. Chan, Benjamin Li and Hextan Y. S. Ngan
    Citation: Clinical Epigenetics 2021 13:142

    The Correction to this article has been published in Clinical Epigenetics 2021 13:151