Fast spore breaking by superheatingElectronic supplementary information (ESI) available. See DOI: 10.1039/c3lc41305e
Here we present the results of Bacillus subtilis spores breaking using superheating. The spore sample was pumped through the open-ended capillary tube mounted across the heated zone. We investigated the influence of temperature in the range 120-180 °C. The heat exposure was controlled by the length...
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creator | P ibylka, Adam Almeida, Ana Vanessa Altmeyer, Matthias O Petr, Jan Šev ík, Juraj Manz, Andreas Neu il, Pavel |
description | Here we present the results of
Bacillus subtilis
spores breaking using superheating. The spore sample was pumped through the open-ended capillary tube mounted across the heated zone. We investigated the influence of temperature in the range 120-180 °C. The heat exposure was controlled by the length of the heated zone, the inner diameter of the capillary and the sample flow rate. We found that spore treatment above 120 °C resulted in the release of DNA within 20 s.
We present an ultrafast flow through method of breaking
Bacillus subtilis
spores by superheating effect in micro capillaries. |
doi_str_mv | 10.1039/c3lc41305e |
format | Article |
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Bacillus subtilis
spores breaking using superheating. The spore sample was pumped through the open-ended capillary tube mounted across the heated zone. We investigated the influence of temperature in the range 120-180 °C. The heat exposure was controlled by the length of the heated zone, the inner diameter of the capillary and the sample flow rate. We found that spore treatment above 120 °C resulted in the release of DNA within 20 s.
We present an ultrafast flow through method of breaking
Bacillus subtilis
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Bacillus subtilis
spores breaking using superheating. The spore sample was pumped through the open-ended capillary tube mounted across the heated zone. We investigated the influence of temperature in the range 120-180 °C. The heat exposure was controlled by the length of the heated zone, the inner diameter of the capillary and the sample flow rate. We found that spore treatment above 120 °C resulted in the release of DNA within 20 s.
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Bacillus subtilis
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Bacillus subtilis
spores breaking using superheating. The spore sample was pumped through the open-ended capillary tube mounted across the heated zone. We investigated the influence of temperature in the range 120-180 °C. The heat exposure was controlled by the length of the heated zone, the inner diameter of the capillary and the sample flow rate. We found that spore treatment above 120 °C resulted in the release of DNA within 20 s.
We present an ultrafast flow through method of breaking
Bacillus subtilis
spores by superheating effect in micro capillaries.</abstract><doi>10.1039/c3lc41305e</doi><tpages>4</tpages></addata></record> |
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source | Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection |
title | Fast spore breaking by superheatingElectronic supplementary information (ESI) available. See DOI: 10.1039/c3lc41305e |
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