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Biomedical subjects

G Lefebvre

Publications and source records attributed to G Lefebvre.

106 records · Page 6Linked to original sources

[Synchronous growth in liquid medium of species related to "Mycobacterium rhodochrous": "Nocardia restricta" and "Jensenia canicruria" (author's transl)].

The synchronous development of nocardioform and coryneform populations had not yet been studied. We have observed that it is possible to obtain a synchronous growth of Nocardia restricta and Jensenia canicruria (species related to Mycobacterium rhodochrous) in a liquid synthetic medium by inoculating the medium with spherical cells taken during the advanced stationary phase, at the end of the cell division cycle. Good synchrony produces a series of breaks in the slope of culture absorbance and of cell protein content. DNA replication checked either by cell DNA content measurements or by pulse-incorporations of tritiated thymidine, is discontinous; peaks of incorporation of thymidine follow one another with a periodicity equal to the generation time. A study of the cell division cycle, hitherto unknown, is now possible.

Bacterial Proteins↗

Use of the Centritech Lab centrifuge for perfusion culture of hybridoma cells in protein-free medium.

As part of an effort to develop a suspension-culture perfusion-based process with high flow rate without the fouling and antibody retention inherent to filter-based cell-separation devices, we have evaluated and contributed to the development of the Centritech Lab centrifuge for the perfusion culture of hybridoma cells in protein-free medium. Culture start-ups showed that cell growth and monoclonal-antibody (MAb) production rates were similar in both a spinner flask and continuous centrifugation coupled to a bioreactor. The centrifuge efficiently separated viable cells from dead ones. Viable-cell recoveries were never below 98%, whereas dead-cell recoveries were usually around 80%. The cell content of the centrifuge supernatant and concentrate was strongly determined by the total amount of cells, viable and dead, in the culture broth, but an influence of the centrifugation parameters (feed rate, times of separation and discharge, and rotor speed) was observed. This understanding of the separation process inside the centrifuge is important and may apply to other similar devices. Monoclonal antibodies were not retained in the bioreactor during centrifugation perfusion. However, whereas similar growth rates were obtained in perfusion cultures using either continuous centrifugation or filtration, MAb concentrations were 35% lower in the former case. Utilization of the centrifuge in an intermittent fashion decreased the daily cell residence time outside the bioreactor, the daily pelleted-cell residence time in the centrifuge, and the frequency of cell passage to the centrifuge. This led to higher viable-cell numbers in the bioreactor and an accompanying increase in MAb concentrations, 225-250 mg of IgM L-1, equal to the performance of filter-based perfusion systems with the same cell line. It was hypothesized that having cells periodically packed at the bottom of the centrifuge insert (up to 800 x 10(6) cells mL-1) is deleterious to the culture by exposing the pelleted cells to prolonged nutrient limitations.

Animals↗

[Periodic macromolecule syntheses in synchronized cultures of species belonging to the "Rhodococcus" genus ("Rhodochrous" group) (author's transl)].

The synthesis of total proteins, total RNA and DNA in exponential synchronous cultures of species belonging to the Rhodococcus genus (Nocardia restricta and N. canicruria) has been studied by chemical methods and pulsed incorporations of labelled precursors in the acid-insoluble fraction. The replication of DNA is discontinuous. Syntheses of RNA and proteins are periodic: they happen during two main periods during the time necessary for a doubling of the cell mass. A slowdown of these syntheses occurs during the DNA replication. This periodicity allows to explain the regular discontinuities previously observed on the absorbance curves of synchronous cultures. The discontinuous pattern in the macromolecules synthesis of Rhodococcus allows a comparison with the cell cycle of some lower eukaryotes but is different from the cycle of fast-growing bacteria.

Bacterial Proteins↗