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Sökning: WFRF:(Engström Laurent Anna)

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  • Hellman, Urban, 1966-, et al. (författare)
  • Presence of hyaluronan in lung alveoli in severe Covid-19 : an opening for new treatment options?
  • 2020
  • Ingår i: Journal of Biological Chemistry. - : American Society for Biochemistry and Molecular Biology. - 0021-9258 .- 1083-351X. ; 295:45, s. 15418-15422
  • Tidskriftsartikel (refereegranskat)abstract
    • Severe corona virus disease 2019 (Covid-19) is characterized by inflammation of the lungs with increasing respiratory impairment. In fatal Covid-19, lungs at autopsy have been filled with a clear liquid jelly. However, the nature of this finding has not yet been determined.The aim of the study was to demonstrate if the lungs of fatal Covid-19 contain hyaluronan as it is associated with inflammation and acute respiratory distress syndrome (ARDS) and may have the appearance of liquid jelly.Lung tissue obtained at autopsy from three deceased Covid-19 patients was processed for hyaluronan histochemistry using a direct staining method and compared with staining in normal lung tissue.Stainings confirmed that hyaluronan is obstructing alveoli with presence in exudate and plugs, as well as in thickened perialveolar interstitium. In contrast, normal lungs only showed hyaluronan in intact alveolar walls and perivascular tissue. This is the first study to confirm prominent hyaluronan exudates in the alveolar spaces of Covid-19 lungs, supporting the notion that the macromolecule is involved in ARDS caused by SARS-CoV-2. The present finding may open up for new treatment options in severe Covid-19, aiming at reducing the presence and production of hyaluronan in the lungs.
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  • Johansson, Bengt, et al. (författare)
  • Evaluation of hyaluronan and calcifications in stenotic and regurgitant aortic valves.
  • 2011
  • Ingår i: European Journal of Cardio-Thoracic Surgery. - : Elsevier. - 1010-7940 .- 1873-734X. ; 39:1, s. 27-32
  • Tidskriftsartikel (refereegranskat)abstract
    • Objective: Hyaluronan (HA) is a major component of the interstitium and has been observed in normal heart valves. The function of HA in heart valves is unknown but contribution to biomechanical function has been proposed. The purpose of this investigation was to study the distribution of HA in relation to calcifications in diseased human aortic valves. Methods: Human aortic valves were collected at aortic valve replacement, of whom nine patients had regurgitation and 13 stenotic disease. The valves were decalcified and stained for the visualisation of HA. The specimens were macroscopically evaluated for magnitude of calcification using image analysis. The microscopic amount and distribution of HA and calcifications were semiquantitatively evaluated using histochemistry. Results: The overall HA staining showed an inverse relationship against the magnitude of observed valve calcifications (p<0.001) and type of disease (p=0.014). Multiple-group comparison revealed regionally reduced HA staining in diffuse and heavy calcified regions inside the valve (both p<0.001) compared with normal-structured parts of the valve. HA was concentrated on the ventricular side of the valve (p=0.002). Conclusions: The content of HA was reduced in calcified aortic valves and had a heterogeneous distribution, potentially contributing to poor valve function. HA may also be involved in the pathophysiological process in degenerative aortic stenosis.
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  • Opheim, Leif Runar, et al. (författare)
  • Hyaluronan in Human Vocal Folds in Smokers and Nonsmokers : A Histochemical Study
  • 2016
  • Ingår i: Journal of Voice. - : Elsevier BV. - 0892-1997 .- 1873-4588. ; 30:3, s. 255-262
  • Tidskriftsartikel (refereegranskat)abstract
    • OBJECTIVES/HYPOTHESIS: To study the hyaluronan occurrence in human vocal folds, with special regards to gender and smoking and to discuss the implications of findings.STUDY DESIGN: This is a descriptive/morphologic study.METHODS: Sixteen cadaveric vocal folds from eight individuals between 58 and 90 years old (six women and two men) were removed and studied morphologically. Three of the individuals had been cigarette smokers. A direct method for hyaluronan histochemistry using a hyaluronan-binding protein probe (HABP) was used to visualize the polysaccharide. Five examiners performed an analysis of the intensities of hyaluronan staining, independently.RESULTS: We observed intense hyaluronan staining of the vocal folds of which those from women stained considerably stronger than those from men. Stratified squamous epithelium stained for hyaluronan in all sections, whereas respiratory epithelium only stained weakly or not at all. The highest accumulation of hyaluronan occurred subepithelially in the lamina propria, corresponding to Reinke's space. It was observed that vocal folds from smokers were more intensively stained than those from nonsmokers.CONCLUSIONS: Hyaluronan is found in all layers of the human vocal fold. Contradictory to earlier studies, hyaluronan was visualized in squamous epithelium, where it may function as an impact protector. The occurrence of hyaluronan in smokers may have implications in the development of vocal fold inflammation and tumor initiation as hyaluronan is an important molecule in these processes.
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  • Bertheim, Ulf, et al. (författare)
  • Loss of hyaluronan in the basement membrane zone of the skin correlates to the degree of stiff hands in diabetes patients
  • 2002
  • Ingår i: Acta Dermato-Venereologica. - : Medical Journals Sweden AB. - 0001-5555 .- 1651-2057. ; 82:5, s. 329-334
  • Tidskriftsartikel (refereegranskat)abstract
    • Glycosaminoglycans are important components of all extracellular matrices. One of the glycosaminoglycans is hyaluronan, which is ubiquitously distributed throughout the connective tissue. Hyaluronan is especially abundant in the skin, in which it is of both structural and functional importance. This study describes the localization and distribution of hyaluronan in the skin of healthy individuals and of 23 patients with insulin-dependent diabetes mellitus and various degrees of limited joint mobility. In normal skin, hyaluronan staining was seen in all layers but most prominently in the papillary dermis and the basement membrane zone. In the skin from diabetic patients with normal or only moderately restricted mobility of the hands (limited joint mobility grades 0 and 1), the distribution of hyaluronan was similar to that of normal skin. In the skin of patients with severe restriction in joint mobility (limited joint mobility grade 2) the staining pattern was significantly different with weak hyaluronan staining in the papillary dermis and the basement membrane zone almost devoid of hyaluronan. Moreover, an increased epidermal thickness in the latter patients was evident as well as a pronounced hyaluronan staining compared with normal epidermis.
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8.
  • Do, Lan, et al. (författare)
  • High Sensitivity Method to Estimate Distribution of Hyaluronan Molecular Sizes in Small Biological Samples Using Gas-Phase Electrophoretic Mobility Molecular Analysis.
  • 2015
  • Ingår i: International Journal of Cell Biology. - : Hindawi Limited. - 1687-8876 .- 1687-8884.
  • Tidskriftsartikel (refereegranskat)abstract
    • Hyaluronan is a negatively charged polydisperse polysaccharide where both its size and tissue concentration play an important role in many physiological and pathological processes. The various functions of hyaluronan depend on its molecular size. Up to now, it has been difficult to study the role of hyaluronan in diseases with pathological changes in the extracellular matrix where availability is low or tissue samples are small. Difficulty to obtain large enough biopsies from human diseased tissue or tissue from animal models has also restricted the study of hyaluronan. In this paper, we demonstrate that gas-phase electrophoretic molecular mobility analyzer (GEMMA) can be used to estimate the distribution of hyaluronan molecular sizes in biological samples with a limited amount of hyaluronan. The low detection level of the GEMMA method allows for estimation of hyaluronan molecular sizes from different parts of small organs. Hence, the GEMMA method opens opportunity to attain a profile over the distribution of hyaluronan molecular sizes and estimate changes caused by disease or experimental conditions that has not been possible to obtain before.
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