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Microorganisms with lipoplytic activity and their applications
Pavlačková, Jana ; Omelka, Ladislav (referee) ; Omelková, Jiřina (advisor)
Lipases are hydrolytic enzymes that are produced by many types of microorganisms. This thesis describes not only the microorganisms which produce lipases but also different possibilities for the industrial utilization of lipases. Lipases are widely used in reactions where the combination of a lipophilic substrate with a hydrophilic one is necessary – in the synthesis of ascorbic acid fatty esters, sugar esters, lipoaminoacids and in the lipophilization of phenolic derivatives. Lipases are also important in relation to environmental protection. For example, they are used for the purification of waste water. In this thesis, five different preparations containing microorganisms with lipolytic activity were tested for lipolytic activity. There are many ways of determining lipolytic activity. The spectrophotometric determination of lipolytic activity that uses the ability of lipases to divide p-nitrophenyllaurate to p-nitrophenol may serve as an example. After this p-nitophenol is detected spectrophotometricaly.
Microorganisms with lipoplytic activity and their applications
Pavlačková, Jana ; Omelka, Ladislav (referee) ; Omelková, Jiřina (advisor)
Lipases are hydrolytic enzymes that are produced by many types of microorganisms. This thesis describes not only the microorganisms which produce lipases but also different possibilities for the industrial utilization of lipases. Lipases are widely used in reactions where the combination of a lipophilic substrate with a hydrophilic one is necessary – in the synthesis of ascorbic acid fatty esters, sugar esters, lipoaminoacids and in the lipophilization of phenolic derivatives. Lipases are also important in relation to environmental protection. For example, they are used for the purification of waste water. In this thesis, five different preparations containing microorganisms with lipolytic activity were tested for lipolytic activity. There are many ways of determining lipolytic activity. The spectrophotometric determination of lipolytic activity that uses the ability of lipases to divide p-nitrophenyllaurate to p-nitrophenol may serve as an example. After this p-nitophenol is detected spectrophotometricaly.

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