Introduction to Biochemistry for Dentistry Students

Daten

Offizielle Daten in der Fachveröffentlichung für das folgende akademische Jahr: 2026-2027

Lehrbeauftragte/r

Semesterwochenstunden

Vorlesungen: 28

Praktika: 14

Seminare: 0

Insgesamt: 42

Fachangaben

  • Kode des Kurses: OSA-BEF-T
  • 3 kredit
  • Dentist
  • Basic modul
  • spring semester
Voraussetzungen:

keine

Vizsgakurzus:

Zahl der Kursteilnehmer für den Kurs:

min. 1 – max. 999

Thematik

Introduction to Biochemistry includes the topics of organic and bio-organic chemistry along with basic biochemistry which are necessary for dentistry students. It deals with the structure, chemistry, and cellular metabolism of essential biomolecules like proteins, carbohydrates and lipids. The purpose of practices is to consider the chemistry of bio-compounds. Curriculum of Introduction to Biochemistry contains the basic knowledge that is necessary to understand cell biology, physiology, pharmacology and biochemistry.

Vorlesungen

  • 28.

    Summary

    - Debreceni Balázs
  • 27.

    Regulation of carbohydrate metabolism II.

    - Nagyné Kiss Gyöngyi
  • 26.

    Regulation of carbohydrate metabolism I.

    - Nagyné Kiss Gyöngyi
  • 25.

    Regulation of glycogen metabolism

    - Bagóné Vántus Viola
  • 24.

    Glycogen synthesis and degradation

    - Bagóné Vántus Viola
  • 23.

    Lipid digestion, absorption, fatty acid molization

    - Szabó Éva (Biokémia)
  • 22.

    Molecular mechanisms of sugar uptake

    - Nagyné Kiss Gyöngyi
  • 21.

    Carbohydrate digestion and absorption

    - Nagyné Kiss Gyöngyi
  • 20.

    Ketone bodies

    - Szabó Éva (Biokémia)
  • 19.

    Fatty acid oxidation

    - Szabó Éva (Biokémia)
  • 18.

    Gluconeogenesis

    - Antus Csenge Petra
  • 17. Mitochondrial transport processes, shuttles - Takátsy Anikó
  • 16.

    The pentose phosphate pathway

    - Debreceni Balázs
  • 14.

    Regulation of glycolysis

    - Debreceni Balázs
  • 15.

    Metabolic pathways related to glycolysis (PDC; LDH)

    - Debreceni Balázs
  • 13.

    Reactions of glycolysis

    - Debreceni Balázs
  • 12.

    Cellular energy production III. (ATP production)

    - Takátsy Anikó
  • 11.

    Cellular energy production II. (Respiratory chain)

    - Takátsy Anikó
  • 10.

    Cellular energy production I. (Citric acid cycle)

    - Bognár Zita
  • 9.

    Overview of biochemical processes

    - Bognár Zita
  • 7.

    Regulation and inhibition of enzyme activity,

    - Berente Zoltán
  • 8.

    Bioenergetics, koenzymes

    - Berente Zoltán
  • 6.

    Basics of enzyme kinetics

    - Berente Zoltán
  • 5.

    Biological membranes and transport processes

    - Takátsy Anikó
  • 3.

    Fat-soluble vitamins

    - Jávor-Hocsák Enikő
  • 4.

    Nucleosides, nucleotides, Nucleic acids

    - Bóna Ágnes
  • 1. Introduction - Bognár Zita
  • 2.

    Water-soluble vitamins

    - Jávor-Hocsák Enikő

Praktika

  • 14. Consultation
  • 13. Consultation
  • 12. Metabolism III. ATP calculation
  • 11. Metabolism III. ATP calculation
  • 9. Metabolism II. Lipid
  • 10. Metabolism II. Lipid
  • 8. Metabolism I. Carbohydrate
  • 7. Metabolism I. Carbohydrate
  • 6. Enzymes, Coenzymes
  • 5. Enzymes, Coezymes
  • 4. Stereochemistry, molecule model exercises, -practice
  • 3. Stereochemistry, molecule model exercises, -practice
  • 2. Basic reactions in organic chemistry, high-energy bonds
  • 1. Basic reactions in organic chemistry, high-energy bonds

Seminare

Materialien zum Aneignen des Lehrstoffes

Obligatorische Literatur

http://aok.pte.hu/en/egyseg/oktatasianyagok/20

Vom Institut veröffentlichter Lehrstoff

Nagy V., Agócs A. :Introduction to biochemistry lab manual 2017/18http://aok.pte.hu/en/egyseg/oktatasianyagok/20

Skript

Nagy V., Agócs A. :Introduction to biochemistry lab manual 2017/18http://aok.pte.hu/en/egyseg/oktatasianyagok/20

Empfohlene Literatur

Nelson, Cox: Lehninger Principles of Biochemistry, 5th ed., W.H. Freeman, 2008

http://bcs.whfreeman.com/lehninger5e

Berg, Tymoczko, Stryer: Biochemistry, 7th ed.

http://bcs.whfreeman.com/berg7e

Voraussetzung zum Absolvieren des Semesters

none

Semesteranforderungen

There are lab practices at every EVEN NUMBERED EDUCATIONAL weeks (2-4-6-8-10-12-14). There are short tests from week 4 till 14. The lab is beginning with a short test (time is 6 minutes; 6 occasions; max. 6 exampoints). Requirement for acceptance is writing 5 test out of 6 possibility.

There is no possibilities to write a short test if delaying is over 5 minutes. No more than 10 minutes delay is accepted, over of it, it is an absence. No more than 1 absence is allowed from the 7 lab occasions (15%).

It is obligatory to write lab-notes. Result of the short test is acknowledged only if the lab-notes of the practice is accepted by the lab instructor. The exam is based on the topic of the lectures and labs. (http://aok.pte.hu/en/egyseg/oktatasianyagok/2024)

Möglichkeiten zur Nachholung der Fehlzeiten

There is no possibility to make up of the lab practices.

Prüfungsfragen

Written exam, Questions 1–10: MRT questions, maximum 30 points, must be obtained at least 21 points. If <21 points is obtained: failed, irrespectively of the remaining part of the test. Questions 11–: 70 points; Total: 100 points (+Laboratory test points: max. 6)

 Grades:

0–60: 1

61–70: 2

71–80: 3

81–90: 4

91–    : 5
http://aok.pte.hu/en/egyseg/oktatasianyagok/2024

Prüfer

  • Andreidesz Kitti
  • Bognár Zita
  • Bóna Ágnes
  • Debreceni Balázs
  • Kiss Bence
  • Szilágyi Tamás Gábor

Praktika, Seminarleiter/innen

  • Andreidesz Kitti
  • Bognár Zita
  • Kiss Bence
  • KURZUSHOZ RENDELT OKTATÓ
  • Szilágyi Tamás Gábor