Randolph Reuss
Max Planck Society
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Publication
Featured researches published by Randolph Reuss.
The Journal of Membrane Biology | 2005
Vladimir L. Sukhorukov; Randolph Reuss; Dirk Zimmermann; Held C; Kilian J. Müller; M. Kiesel; Gessner P; A. Steinbach; Wolfdieter A. Schenk; Ernst Bamberg; U. Zimmermann
Electrotransfection and electrofusion, both widely used in research and medical applications, still have to face a range of problems, including the existence of electroporation-resistant cell types, cell mortality and also great batch-to-batch variations of the transfection and fusion yields. In the present study, a systematic analysis of the parameters critical for the efficiency and robustness of electromanipulation protocols was performed on five mammalian cell types. Factors examined included the sugar composition of hypotonic pulse media (trehalose, sorbitol or inositol), the kinetics of cell volume changes prior to electropulsing, as well as the growth medium additives used for post-pulse cell cultivation. Whereas the disaccharide trehalose generally allowed regulatory volume decrease (RVD), the monomeric sugar alcohols sorbitol and inositol inhibited RVD or even induced secondary swelling. The different volume responses could be explained by the sugar selectivity of volume-sensitive channels (VSC) in the plasma membrane of all tested cell types. Based on the volumetric data, highest transfection and fusion yields were mostly achieved when the target cells were exposed to hypotonicity for about 2 min prior to electropulsing. Longer hypotonic treatment (10–20 min) decreased the yields of viable transfected and hybrid cells due to (1) the cell size reduction upon RVD (trehalose) or (2) the excessive losses of cytosolic electrolytes through VSC (inositol/sorbitol). Doping the plasma membrane with lipophilic anions prevented both cell shrinkage and ion losses (probably due to VSC inhibition), which in turn resulted in increased transfection and fusion efficiencies.
Plant Biology | 2010
U. Zimmermann; S. Rüger; Or Shapira; M. Westhoff; Lars H. Wegner; Randolph Reuss; P. Gessner; Gertraud Zimmermann; Yair Israeli; A. Zhou; Amnon Schwartz; Ernst Bamberg; Dirk Zimmermann
Turgor pressure provides a sensitive indicator for irrigation scheduling. Leaf turgor pressure of Musa acuminate was measured by using the so-called leaf patch clamp pressure probe, i.e. by application of an external, magnetically generated and constantly retained clamp pressure to a leaf patch and determination of the attenuated output pressure P(p) that is highly correlated with the turgor pressure. Real-time recording of P(p) values was made using wireless telemetric transmitters, which send the data to a receiver base station where data are logged and transferred to a GPRS modem linked to an Internet server. Probes functioned over several months under field and laboratory conditions without damage to the leaf patch. Measurements showed that the magnetic-based probe could monitor very sensitively changes in turgor pressure induced by changes in microclimate (temperature, relative humidity, irradiation and wind) and irrigation. Irrigation effects could clearly be distinguished from environmental effects. Interestingly, oscillations in stomatal aperture, which occurred frequently below turgor pressures of 100 kPa towards noon at high transpiration or at high wind speed, were reflected in the P(p) values. The period of pressure oscillations was comparable with the period of oscillations in transpiration and photosynthesis. Multiple probe readings on individual leaves and/or on several leaves over the entire height of the plants further emphasised the great impact of this non-invasive turgor pressure sensor system for elucidating the dynamics of short- and long-distance water transport in higher plants.
Plant Biology | 2009
M. Westhoff; Randolph Reuss; Dirk Zimmermann; Yishai Netzer; Albert Gessner; P. Geßner; Gertraud Zimmermann; Lars H. Wegner; Ernst Bamberg; Amnon Schwartz; Ulrich Zimmermann
An advanced non-invasive, field-suitable and inexpensive leaf patch clamp pressure probe for online-monitoring of the water relations of intact leaves is described. The probe measures the attenuated output patch clamp pressure, P(p), of a clamped leaf in response to an externally applied input pressure, P(clamp). P(clamp) is generated magnetically. P(p) is sensed by a pressure sensor integrated into the magnetic clamp. The magnitude of P(p) depends on the transfer function, T(f), of the leaf cells. T(f) consists of a turgor pressure-independent (related to the compression of the cuticle, cell walls and other structural elements) and a turgor pressure-dependent term. T(f) is dimensionless and assumes values between 0 and 1. Theory shows that T(f) is a power function of cell turgor pressure P(c). Concomitant P(p) and P(c) measurements on grapevines confirmed the relationship between T(f) and P(c). P(p) peaked if P(c) approached zero and assumed low values if P(c) reached maximum values. The novel probe was successfully tested on leaves of irrigated and non-irrigated grapevines under field conditions. Data show that slight changes in the microclimate and/or water supply (by irrigation or rain) are reflected very sensitively in P(p).
Journal of Materials Science: Materials in Medicine | 2005
Heiko Zimmermann; Dirk Zimmermann; Randolph Reuss; P.J. Feilen; B. Manz; A. Katsen; M. Weber; F.R. Ihmig; Friederike Ehrhart; P. Geßner; Marcus Behringer; A. Steinbach; Lars H. Wegner; Vladimir L. Sukhorukov; J.A. Vásquez; Matthias M. Weber; F. Volke; R. Wolf; U. Zimmermann
Biomaterials | 2007
Heiko Zimmermann; Felix Wählisch; Claudia Baier; M. Westhoff; Randolph Reuss; Dirk Zimmermann; Marcus Behringer; Friederike Ehrhart; Alisa Katsen-Globa; Christoph Giese; Uwe Marx; Vladimir L. Sukhorukov; J.A. Vásquez; Peter M. Jakob; Stephen G. Shirley; Ulrich Zimmermann
Biochemical and Biophysical Research Communications | 2006
Vladimir L. Sukhorukov; Randolph Reuss; Jörg M. Endter; Steffen Fehrmann; Alisa Katsen-Globa; P. Geßner; Andrea Steinbach; Kilian J. Müller; Abraham Karpas; Ulrich Zimmermann; Heiko Zimmermann
The Journal of Membrane Biology | 2004
Randolph Reuss; J. Ludwig; Ryo Shirakashi; Friederike Ehrhart; Heiko Zimmermann; Matthias M. Weber; U. Zimmermann; H. Schneider; Vladimir L. Sukhorukov
Biophysical Journal | 2006
M. Kiesel; Randolph Reuss; Jörg M. Endter; Dirk Zimmermann; Heiko Zimmermann; Ryo Shirakashi; Ernst Bamberg; U. Zimmermann; Vladimir L. Sukhorukov
Journal of Thermal Science and Technology | 2012
Ryo Shirakashi; Vladimir L. Sukhorukov; Randolph Reuss; Alexander Schulz; Ulrich Zimmermann
Archive | 2008
Dirk Zimmermann; Ernst Bamberg; Ulrich Zimmermann; M. Westhoff; Randolph Reuss; Albert Gessner; Willibald Bauer