Buch


Cell Culture Technology

Cell Culture Technology

Cornelia Kasper; Verena Charwat; Antonina Lavrentieva (Hrsg.)

 

74,89 EUR
Lieferzeit 12-13 Tage



74,89 EUR
Lieferzeit 12-13 Tage



Autorinformation
Inhaltsverzeichnis


Übersicht


Verlag : Springer International Publishing
Buchreihe : Learning Materials in Biosciences
Sprache : Englisch
Erschienen : 23. 10. 2018
Seiten : 168
Einband : Kartoniert
Höhe : 240 mm
Breite : 168 mm
Gewicht : 384 g
ISBN : 9783319748535
Sprache : Englisch

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Autorinformation


Cornelia Kasper studied Chemistry at the University Hannover and received her Diploma degree 1994. After PhD at the Institute for Technical Chemistry 1998 she was employed as EU liason officer at the University of Hannover. In 2007 she received Habilitation. 2000-2011 Cornelia Kasper has been head of Cell Culture and Tissue Engineering Group at the Institute for Technical Chemistry, Leibniz University of Hannover and head of young researcher group JRG “Large Scale Cultivation” within Cluster of Excellence “Rebirth” (from Regenerative Biology and Reconstructive Therapies). Since October 2011 Cornelia Kasper has been appointed as University Professor “Cell and Tissue Culture Technology” at the Department of Biotechnology at Boku. The focus in her research group is the isolation, characterization, expansion and differentiation of human primary/progenitor and stem cells. For the expansion and guided differentiation she develops optimized strategies and bioprocesses for 3 D cell culture conditions mimicking physiological environment generating functional cells for tissue engineering and cell based therapies and 3 D test systems under defined and controlled dynamic conditions. Antonina Lavrentieva is a group leader at the Institute of Technical Chemistry, Leibniz University of Hannover, working in the field of stem cell research, biotesting and tissue engineering. In her second PhD Thesis, she studied methods of expanding mesenchymal stem cells (MSCs) in bioreactors, as well as the influence of hypoxia on the MSCs. She studied Biology and Life Science at Moscow State University and the University of Hannover. She also defended a PhD Thesis in Physiology. Her current research interests include stem cell media optimization, 3D cell culture, gradient hydrogels for studying cell niches and 3D-bioprinting. Verena Charwat completed her bachelor studies in Medical Computer Science at the Vienna University of Technology in 2008 and her diploma studies in Bioengineering with specialization on biotechnological quality management at FH-Campus Wien in 2009. She continued her academic training with the Biomedical Ph.D. program at Medical University Vienna. Her Ph.D. thesis is entitled “Biosensors for label-free continuous monitoring of microfluidic cell cultures”. Since her graduation in 2014, she is working as a postdoctoral university assistant at the University of Natural Resources and Life Sciences, Vienna. Verena Charwat’s main research interest is in the field of biomedical engineering, with a special focus on the development and application of lab-on-a-chip systems with integrated biosensors for in vitro establishment and non-invasive monitoring of functional tissue mimics. Her research is targeted towards creation of physiologically relevant cell culture models including 3D cultivation, co-cultures and dynamic cultivation for basic biological research and biomedical applications.

Inhaltsverzeichnis


History of cell culture - beyond animal cell lines.- Essentials in Cell Culture.- Cell Culture Media.- Primary cell culture.- 2 D vs 3 D cell culture.- Biomaterials.- Cell surface interaction.- Mimicking physiology in cell cultures.- Co-cultures.- Bioreactors and Automation.

Deine Buchhandlung


Buchhandlung LeseLust
Inh. Gernod Siering

Georgenstraße 2
99817 Eisenach

03691/733822
kontakt@leselust-eisenach.de

Montag-Freitag 9-17 Uhr
Sonnabend 10-14 Uhr



Deine Buchhandlung
Buchhandlung LeseLust
Inh. Gernod Siering

Georgenstraße 2
99817 Eisenach

03691/733822
kontakt@leselust-eisenach.de

Montag-Freitag 9-17 Uhr
Sonnabend 10-14 Uhr