1,721,007 research outputs found
Mitochondria, hexokinase and pyruvate kinase isozymes in the aerobic glycolysis of tumor cells .
Tuber borchii mycelial protoplasts isolation, characterization and functional delivery of liposome content, a new step towards truffles biotechnology
The filametous ascomycete Tuber borchii is a plant-symbiotic ectomycorrhizal microrganism with an high value due to the production of hypogeous fruitbodies (truffles). The present work was undertaken to develop a procedure for the release of T. borchii viable protoplasts from Tuber mycelium, isolate ATTC 96540; several factors which affect the isolation, morphology and viability were examined and developed in order to improve applications of T. borchii protoplasts in morphological, biochemical and genetic investigations (protoplast fusion or transformation). Functional delivery of liposome content into T. borchii protoplasts has also been examined with a cytotoxic ribosome inactivator as saporin. T. borchii protoplasts incubation/fusion with saporin containing liposomes were made to demonstrate the absence of cell wall of 16 days cultured protoplasts. © 2005 Federation of European Microbiological Societies. Published by Elsevier B.V. All rights reserved
The ancient genomic DNA (anDNA) and analysis of genetic risk factors related to autoimmune rheumatic disease
The murine macrophages RAW 264.7 cell line: an in vitro system for a comparative cytotoxicity evaluation of pure and doped nanoTiO2 thin films
Transcriptional analysis of tyrosinase gene expression during Bufo bufo development: cloning and sequencing.
Tuber borchii mycelial protoplasts isolation, characterization and functional delivery of liposome content, a new step towards truffles biotechnology
The filametous ascomycete Tuber borchii is a plant-symbiotic ectomycorrhizal microrganism with an high value due to the production of hypogeous fruitbodies (truffles). The present work was undertaken to develop a procedure for the release of T. borchii viable protoplasts from Tuber mycelium, isolate ATTC 96540; several factors which affect the isolation, morphology and viability were examined and developed in order to improve applications of T. borchii protoplasts in morphological, biochemical and genetic investigations (protoplast fusion or transformation). Functional delivery of liposome content into T. borchii protoplasts has also been examined with a cytotoxic ribosome inactivator as saporin. T. borchii protoplasts incubation/fusion with saporin containing liposomes were made to demonstrate the absence of cell wall of 16 days cultured protoplasts
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