123 research outputs found

    Mechanisms of stretch-mediated skin expansion at single-cell resolution.

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    The ability of the skin to grow in response to stretching has been exploited in reconstructive surgery1. Although the response of epidermal cells to stretching has been studied in vitro2,3, it remains unclear how mechanical forces affect their behaviour in vivo. Here we develop a mouse model in which the consequences of stretching on skin epidermis can be studied at single-cell resolution. Using a multidisciplinary approach that combines clonal analysis with quantitative modelling and single-cell RNA sequencing, we show that stretching induces skin expansion by creating a transient bias in the renewal activity of epidermal stem cells, while a second subpopulation of basal progenitors remains committed to differentiation. Transcriptional and chromatin profiling identifies how cell states and gene-regulatory networks are modulated by stretching. Using pharmacological inhibitors and mouse mutants, we define the step-by-step mechanisms that control stretch-mediated tissue expansion at single-cell resolution in vivo.Wellcome Trust Royal Societ

    Tear fluid biomarkers in ocular and systemic disease: potential use for predictive, preventive and personalised medicine

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    In the field of predictive, preventive and personalised medicine, researchers are keen to identify novel and reliable ways to predict and diagnose disease, as well as to monitor patient response to therapeutic agents. In the last decade alone, the sensitivity of profiling technologies has undergone huge improvements in detection sensitivity, thus allowing quantification of minute samples, for example body fluids that were previously difficult to assay. As a consequence, there has been a huge increase in tear fluid investigation, predominantly in the field of ocular surface disease. As tears are a more accessible and less complex body fluid (than serum or plasma) and sampling is much less invasive, research is starting to focus on how disease processes affect the proteomic, lipidomic and metabolomic composition of the tear film. By determining compositional changes to tear profiles, crucial pathways in disease progression may be identified, allowing for more predictive and personalised therapy of the individual. This article will provide an overview of the various putative tear fluid biomarkers that have been identified to date, ranging from ocular surface disease and retinopathies to cancer and multiple sclerosis. Putative tear fluid biomarkers of ocular disorders, as well as the more recent field of systemic disease biomarkers, will be shown

    Prognostic factors in prostate cancer

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    Prognostic factors in organ confined prostate cancer will reflect survival after surgical radical prostatectomy. Gleason score, tumour volume, surgical margins and Ki-67 index have the most significant prognosticators. Also the origins from the transitional zone, p53 status in cancer tissue, stage, and aneuploidy have shown prognostic significance. Progression-associated features include Gleason score, stage, and capsular invasion, but PSA is also highly significant. Progression can also be predicted with biological markers (E-cadherin, microvessel density, and aneuploidy) with high level of significance. Other prognostic features of clinical or PSA-associated progression include age, IGF-1, p27, and Ki-67. In patients who were treated with radiotherapy the survival was potentially predictable with age, race and p53, but available research on other markers is limited. The most significant published survival-associated prognosticators of prostate cancer with extension outside prostate are microvessel density and total blood PSA. However, survival can potentially be predicted by other markers like androgen receptor, and Ki-67-positive cell fraction. In advanced prostate cancer nuclear morphometry and Gleason score are the most highly significant progression-associated prognosticators. In conclusion, Gleason score, capsular invasion, blood PSA, stage, and aneuploidy are the best markers of progression in organ confined disease. Other biological markers are less important. In advanced disease Gleason score and nuclear morphometry can be used as predictors of progression. Compound prognostic factors based on combinations of single prognosticators, or on gene expression profiles (tested by DNA arrays) are promising, but clinically relevant data is still lacking

    Rabeprazole in a one-week eradication therapy of Helicobacter pylori: Comparison of different dosages

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    AIM: Many data regarding omeprazole-, lanzoprazole- and pantoprazole-based triple therapy for Helicobacter pylori (H. pylori) eradication have been reported, but there is few data present regarding rabeprazole (R). We report the efficacy and tolerability of rabeprazole in different dosages in association with clarithromycin (C)and tinidazole (T) in H. pylori eradication. DESIGN AND METHODS: Ninety-four H. pylori-positive patients with dyspeptic symptoms were enrolled and randomly allocated to eradication therapy in two different one-week regimens. In regimen A, 47 patients received R 20 mg b.i.d, C 500 mg b.i.d and T 500 mg b.i.d, while in regimen B, 47 patients received R 10 mg b.i.d, C 500 mg b.i.d and T 500 mg b.i.d. Eradication of H. pylori was evaluated by a 13C urea breath test (UBT) two months after the end of the therapy. RESULTS: Four patients (two in each regimen) did not complete treatment. The H. pylori eradication rate was 91.4% in group A compared to 89.3% in group B (P-value not significant). Minor side-effects were reported in 4.2% of group A and 6.4% of group B patients. CONCLUSION: Rabeprazole showed good efficacy and tolerability in one-week H. pylori therapy at 20 mg b.i.d and 10 mg b.i.d, suggesting the use of the lower dosage
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