Molecular biotechnology with applications D
15.0 ECTS credits-Different types of respiration and photosynthesis, including related ATP-synthesis and the thermodynamic link between redox reactions, membrane transport reactions and phosphate transporter reactions
-Fermentations and substrate level phosphorylation, including reaction mechanistic and thermodynamic aspects
-Biosynthetical reaction paths: gluconeogenesis, pentose phosphate pathway and the Calvin cycle, citric acid cycle in its biosynthetic role and glyoxylate cycle, biosynthesis of fatty acid, steroides and terpenes, survey of the biosynthesis of amino acids and some examples of the reactions involved and survey of nucleotide metabolism.
-Prokaryote gene expression and protein biosynthesis.
-Thermodynamic and kinetic aspects on protein stability and folding.
-Cultivation and growth of micro organisms in bio reactors and control of process conditions
-Legal framwork for genetically modified micro organisms.
-Separation processes for the purification of av bioreactor products
-Exemples of processes for the production of minor molecules and processes for the production of recombinant proteins in bioreactors.
-The chemical basis for enzyme catalysis.
-Steady-state kinetics: Michaelis-Menten equation and the kinetic description of reversible inhibition of enzymes.
-Use of enzymes in liquid or immobilised forms in technical processes in the paper and pulp industry, production of biofuel and production of groceries.
-Hand-in assignments and laboratory work, see under Examination.
-Fermentations and substrate level phosphorylation, including reaction mechanistic and thermodynamic aspects
-Biosynthetical reaction paths: gluconeogenesis, pentose phosphate pathway and the Calvin cycle, citric acid cycle in its biosynthetic role and glyoxylate cycle, biosynthesis of fatty acid, steroides and terpenes, survey of the biosynthesis of amino acids and some examples of the reactions involved and survey of nucleotide metabolism.
-Prokaryote gene expression and protein biosynthesis.
-Thermodynamic and kinetic aspects on protein stability and folding.
-Cultivation and growth of micro organisms in bio reactors and control of process conditions
-Legal framwork for genetically modified micro organisms.
-Separation processes for the purification of av bioreactor products
-Exemples of processes for the production of minor molecules and processes for the production of recombinant proteins in bioreactors.
-The chemical basis for enzyme catalysis.
-Steady-state kinetics: Michaelis-Menten equation and the kinetic description of reversible inhibition of enzymes.
-Use of enzymes in liquid or immobilised forms in technical processes in the paper and pulp industry, production of biofuel and production of groceries.
-Hand-in assignments and laboratory work, see under Examination.
Progressive specialisation:
A1N (has only first鈥恈ycle course/s as entry requirements)
Education level:
Master's level
Admission requirements
Admission to the Master of Science programme in chemical engineering at 果冻传媒, with at least 90 ECTS credits programme courses attended and at least 75 ECTS cr completed, or courses in chemistry 90 ECTS cr attended with at least 75 ECTS cr completed, including basic courses in biochemistry, molecular biology, or equivalent of at least 7.5 ECTS cr. Upper secondary level Swedish 3 or B, Swedish as a second language 3 or B, and English 6 or A, or equivalent.
Selection:
Selection is usually based on your grade point average from upper secondary school or the number of credit points from previous university studies, or both.
This course is included in the following programme
- Master of Science in Chemical Engineering (studied during year 5)
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Campus, 100%
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- Start Autumn 2025
- Mode of study Campus
- Language Swedish and English
- Course code KEAD11
- Application code KAU-45651
- Study pace 100% (Day)
- Study period week 46鈥3
- Schedule
- Reading list