@article{KurzLinderTrzewiketal.2010, author = {Kurz, R. and Linder, Peter and Trzewik, J{\"u}rgen and R{\"u}ffer, M. and Artmann, Gerhard and Digel, Ilya and Rothermel, A. and Robitzki, A. and Temiz Artmann, Ayseg{\"u}l}, title = {Contractile tension and beating rates of self-exciting monolayers and 3D-tissue constructs of neonatal rat cardiomyocytes}, series = {Medical and Biological Engineering and Computing}, volume = {48}, journal = {Medical and Biological Engineering and Computing}, number = {1}, publisher = {Springer Nature}, address = {Cham}, issn = {1741-0444}, doi = {10.1007/s11517-009-0552-y}, pages = {59 -- 65}, year = {2010}, abstract = {The CellDrum technology (The term 'CellDrum technology' includes a couple of slightly different technological setups for measuring lateral mechanical tension in various types of cell monolayers or 3D-tissue constructs) was designed to quantify the contraction rate and mechanical tension of self-exciting cardiac myocytes. Cells were grown either within flexible, circular collagen gels or as monolayer on top of respective 1-mum thin silicone membranes. Membrane and cells were bulged outwards by air pressure. This biaxial strain distribution is rather similar the beating, blood-filled heart. The setup allowed presetting the mechanical residual stress level externally by adjusting the centre deflection, thus, mimicking hypertension in vitro. Tension was measured as oscillating differential pressure change between chamber and environment. A 0.5-mm thick collagen-cardiac myocyte tissue construct induced after 2 days of culturing (initial cell density 2 x 10(4) cells/ml), a mechanical tension of 1.62 +/- 0.17 microN/mm(2). Mechanical load is an important growth regulator in the developing heart, and the orientation and alignment of cardiomyocytes is stress sensitive. Therefore, it was necessary to develop the CellDrum technology with its biaxial stress-strain distribution and defined mechanical boundary conditions. Cells were exposed to strain in two directions, radially and circumferentially, which is similar to biaxial loading in real heart tissues. Thus, from a biomechanical point of view, the system is preferable to previous setups based on uniaxial stretching.}, language = {en} } @article{KurulganDemirciLinderDemircietal.2009, author = {Kurulgan Demirci, Eylem and Linder, Peter and Demirci, Taylan and Trzewik, J{\"u}rgen and Digel, Ilya and Artmann, Gerhard and Temiz Artmann, Ayseg{\"u}l}, title = {Contractile tension of endothelial cells: An LPS based in-vitro sepsis model}, series = {IUBMB Life. 61 (2009), H. 3}, journal = {IUBMB Life. 61 (2009), H. 3}, publisher = {Wiley}, address = {Weinheim}, isbn = {1521-6543}, pages = {307 -- 308}, year = {2009}, language = {en} } @article{MalikAbdievaUalievaetal.2019, author = {Malik, A. M. and Abdieva, G. Zh. and Ualieva, P. S. and Zhubanova, A. A. and Temiz Artmann, Ayseg{\"u}l}, title = {CКPИНИНГ МИКPOOPГAНИЗМOВ-ДECТPУКТOPOВ XЛOРOPГAНИЧECКИX ЗAГPЯЗНИТEЛEЙ}, series = {Eurasian Journal of Ecology}, volume = {61}, journal = {Eurasian Journal of Ecology}, number = {4}, issn = {2617-7358}, pages = {61 -- 71}, year = {2019}, language = {ru} } @article{TemizArtmannKayatekinUysaletal.2005, author = {Temiz Artmann, Ayseg{\"u}l and Kayatekin, Muammer B. and Uysal, N. and Resmi, H.}, title = {Does antioxidant supplementation alter the effects of acute exercise on erythrocyte aggregation, deformability and endothelium adhesion in untrained rats? Kayatekin, Muammer B.; Uysal N.; Resmi, H.; Bediz, Seref C.; Temiz Artmann, A.; Gen{\c{c}}, S.; Tugyan, K.}, series = {International Journal for Vitamin and Nutrition Research. 75 (2005), H. 4}, journal = {International Journal for Vitamin and Nutrition Research. 75 (2005), H. 4}, isbn = {0300-9831}, pages = {243 -- 250}, year = {2005}, language = {en} } @article{TemizArtmannBaskurtEdremitlioglu1995, author = {Temiz Artmann, Ayseg{\"u}l and Baskurt, O. K. and Edremitlioglu, M.}, title = {Effect of erythrocyte deformability on myocardial hematocrit gradient. Baskurt, O.K.; Edremitlioglu, M.; Temiz, A.}, series = {American Journal of Physiology: Heart and Circulatory Physiology. 268 (1995), H. 1}, journal = {American Journal of Physiology: Heart and Circulatory Physiology. 268 (1995), H. 1}, isbn = {0363-6135}, pages = {260 -- 264}, year = {1995}, language = {en} } @article{TemizArtmannBaskurtMeiselman1998, author = {Temiz Artmann, Ayseg{\"u}l and Baskurt, O. K. and Meiselman, H. J.}, title = {Effect of superoxide anions on red blood cell rheologic properties. Baskurt, O. K.; Temiz, A.; Meiselman, H. J.}, series = {Free Radical Biology and Medicine. 24 (1998), H. 1}, journal = {Free Radical Biology and Medicine. 24 (1998), H. 1}, isbn = {0891-5849}, pages = {102 -- 110}, year = {1998}, language = {en} } @article{ErbayraktarYilmazTemizArtmannetal.2007, author = {Erbayraktar, Zubeyde and Yilmaz, Osman and Temiz Artmann, Ayseg{\"u}l and Cehreli, Ruksan and Coker, Canan}, title = {Effects of Selenium Supplementation on Antioxidant Defense and Glucose Homeostasis in Experimental Diabetes Mellitus}, series = {Biological Trace Element Research}, volume = {118}, journal = {Biological Trace Element Research}, number = {3}, issn = {1559-0720}, pages = {217 -- 226}, year = {2007}, language = {en} } @article{BassamDigelHescheleretal.2013, author = {Bassam, Rasha and Digel, Ilya and Hescheler, J{\"u}rgen and Temiz Artmann, Ayseg{\"u}l and Artmann, Gerhard}, title = {Effects of spermine NONOate and ATP on protein aggregation: light scattering evidences}, series = {BMC Biophysics}, journal = {BMC Biophysics}, publisher = {BioMed Central}, address = {London}, isbn = {2046-1682}, url = {http://nbn-resolving.de/10.1186/2046-1682-6-1}, pages = {1 -- 14}, year = {2013}, language = {en} } @article{BassamHeschelerTemizArtmannetal.2012, author = {Bassam, Rasha and Hescheler, J{\"u}rgen and Temiz Artmann, Ayseg{\"u}l and Artmann, Gerhard and Digel, Ilya}, title = {Effects of spermine NONOate and ATP on the thermal stability of hemoglobin}, series = {BMC Biophysics}, volume = {5}, journal = {BMC Biophysics}, publisher = {BioMed Central}, address = {London}, issn = {2046-1682}, doi = {10.1186/2046-1682-5-16}, pages = {Art. 16}, year = {2012}, abstract = {Background Minor changes in protein structure induced by small organic and inorganic molecules can result in significant metabolic effects. The effects can be even more profound if the molecular players are chemically active and present in the cell in considerable amounts. The aim of our study was to investigate effects of a nitric oxide donor (spermine NONOate), ATP and sodium/potassium environment on the dynamics of thermal unfolding of human hemoglobin (Hb). The effect of these molecules was examined by means of circular dichroism spectrometry (CD) in the temperature range between 25°C and 70°C. The alpha-helical content of buffered hemoglobin samples (0.1 mg/ml) was estimated via ellipticity change measurements at a heating rate of 1°C/min. Results Major results were: 1) spermine NONOate persistently decreased the hemoglobin unfolding temperature T u irrespectively of the Na + /K + environment, 2) ATP instead increased the unfolding temperature by 3°C in both sodium-based and potassium-based buffers and 3) mutual effects of ATP and NO were strongly influenced by particular buffer ionic compositions. Moreover, the presence of potassium facilitated a partial unfolding of alpha-helical structures even at room temperature. Conclusion The obtained data might shed more light on molecular mechanisms and biophysics involved in the regulation of protein activity by small solutes in the cell.}, language = {en} } @article{TemizArtmannAtesUeretmenetal.1998, author = {Temiz Artmann, Ayseg{\"u}l and Ates, H. and {\"U}retmen, {\"O}. and Andac, K.}, title = {Erythrocyte deformability in high-tension and normal tension glaucoma. Ates, H.; {\"U}retmen, {\"O}.; Temiz, A.; Andac, K.}, series = {International Ophthalmology. 22 (1998), H. 1}, journal = {International Ophthalmology. 22 (1998), H. 1}, isbn = {0165-5701}, pages = {7 -- 12}, year = {1998}, language = {en} }