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Patients with idiopathic pulmonary fibrosis have a significantly increased risk for the development of lung cancer. The morbidity and mortality of this disease combination are substantial, and, unfortunately, there are currently few data to help guide clinicians in its diagnosis and treatment. In a recent issue of this journal, Hwang et al presented one of the first studies to evaluate lung cancer in patients with idiopathic pulmonary fibrosis at the molecular level. They demonstrate variants in regulators of the cell cycle, which are known to be important in malignant transformation and may also be important in the pathogenesis of idiopathic pulmonary fibrosis. Further understanding of the pathogenic overlap between lung cancer and idiopathic pulmonary fibrosis could help point the direction to specific diagnostic modalities and targeted treatment of both conditions in the future. Copyright © 2017 Pathological Society of Great Britain and Ireland. Published by John Wiley & Sons, Ltd.  相似文献   
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MicroRNAs (miRNAs) are involved in the regulation of important biological processes. Here, we describe a novel Drosophila miRNAs involved in aging. We selected eight Drosophila miRNAs, displaying high homology with seed sequences of aging‐related miRNAs characterized in other species, and investigated whether the over‐expression of these miRNAs affected aging in Drosophila adult flies. The lifespan of adults over‐expressing miR‐305, a miRNA showing high homology with miR‐239 in C. elegans, was significantly shorter. Conversely, a reduction in miR‐305 expression led to a longer lifespan than that in control flies. miR‐305 over‐expression accelerated the impairment of locomotor activity and promoted the age‐dependent accumulation of poly‐ubiquitinated protein aggregates in the muscle, as flies aged. Thus, we show that the ectopic expression of miR‐305 has a deleterious effect on aging in Drosophila. To identify the targets of miR‐305, we performed RNA‐Seq. We discovered several mRNAs encoding antimicrobial peptides and insulin‐like peptides, whose expression changed in adults upon miR‐305 over‐expression. We further confirmed, by qRT‐PCR, that miR‐305 over‐expression significantly decreases the mRNA levels of four antimicrobial peptides. As these mRNAs contain multiple sequences matching the seed sequence of miR‐305, we speculate that a reduction in target mRNA levels, caused by ectopic miRNA expression, promotes aging.  相似文献   
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Depressive disorder is a complex, heterogeneous disease that affects approximately 280 million people worldwide. Environmental, genetic, and neurobiological factors contribute to the depressive state. Since the nervous system is susceptible to shifts in activity of epigenetic modifiers, these allow for significant plasticity and response to rapid changes in the environment. Among the most studied epigenetic modifications in depressive disorder is DNA methylation, with findings centered on the brain-derived neurotrophic factor gene, the glucocorticoid receptor gene, and the serotonin transporter gene. In order to identify biomarkers that would be useful in clinical settings, for diagnosis and for treatment response, further research on antidepressants and alterations they cause in the epigenetic landscape throughout the genome is needed. Studies on cornerstone antidepressants, such as selective serotonin reuptake inhibitors, selective serotonin and norepinephrine reuptake inhibitors, norepinephrine, and dopamine reuptake inhibitors and their effects on depressive disorder are available, but systematic conclusions on their effects are still hard to draw due to the highly heterogeneous nature of the studies. In addition, two novel drugs, ketamine and esketamine, are being investigated particularly in association with treatment of resistant depression, which is one of the hot topics of contemporary research and the field of precision psychiatry.  相似文献   
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MicroRNAs (miRNAs) have emerged as key regulators orchestrating a wide range of inflammatory and fibrotic diseases. However, the role of miRNAs in degenerative shoulder joint disorders is poorly understood. The aim of this explorative case-control study was to identify pathology-related, circulating miRNAs in patients with chronic rotator cuff tendinopathy and degenerative rotator cuff tears (RCT). In 2017, 15 patients were prospectively enrolled and assigned to three groups based on the diagnosed pathology: (i) no shoulder pathology, (ii) chronic rotator cuff tendinopathy, and (iii) degenerative RCTs. In total, 14 patients were included. Venous blood samples (“liquid biopsies”) were collected from each patient and serum levels of 187 miRNAs were determined. Subsequently, the change in expression of nine candidate miRNAs was verified in tendon biopsy samples, collected from patients who underwent arthroscopic shoulder surgery between 2015 and 2018. Overall, we identified several miRNAs to be progressively deregulated in sera from patients with either chronic rotator cuff tendinopathy or degenerative RCTs. Importantly, for the several of these miRNAs candidates repression was also evident in tendon biopsies harvested from patients who were treated for a supraspinatus tendon tear. As similar expression profiles were determined for tendon samples, the newly identified systemic miRNA signature has potential as novel diagnostic or prognostic biomarkers for degenerative rotator cuff pathologies. © 2019 The Authors. Journal of Orthopaedic Research® published by Wiley Periodicals, Inc. on behalf of Orthopaedic Research Society. Inc. J Orthop Res 38:202–211, 2020  相似文献   
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骨质疏松症(osteoporosis,OP)是一种以易骨折为特点的全身代谢性骨骼疾病。在老龄化程度不断加剧的当今社会,其发病率逐年呈现显著上升趋势,尤其是骨质疏松性骨折导致的后遗症、副损伤给社会及患者带来极大的经济和生活负担。近年来诸多研究发现microRNA具有明确的抗骨质疏松作用,随着基因疗法应用的推广,microRNA在临床治疗骨质疏松起到了很好的靶向作用,同时相关文献阐释,尤其是其家族成员microRNA-21可通过调控成骨细胞和破骨细胞的分化与功能,在OP等骨疾病的发生发展过程中起着重要作用。本文将通过对microRNA-21在骨质疏松中的相关作用机制进行综述,旨在为OP靶向治疗及相关分子机制研究提供理论依据和新的思路。  相似文献   
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