Pharmaceutical Chemistry 3 - Theory

Data

Official data in SubjectManager for the following academic year: 2026-2027

Course director

Number of hours/semester

lectures: 42 hours

practices: 0 hours

seminars: 0 hours

total of: 42 hours

Subject data

  • Code of subject: OPG-R3E-T
  • 3 kredit
  • Pharmacy
  • Pharmaceutical Science and Pharmacy modul
  • autumn semester
Prerequisites:

OPG-R2E-T finished , OPG-R3G-T parallel , OPA-M1E-T finished

Course headcount limitations

min. 1 – max. 999

Topic

The course provides an introduction to the molecular aspects, structure-activity relationships, and pharmacopoeal qualification of selected active pharmaceutical ingredients, fostering the scientific basis for innovative drug development. Students master the basic principles and applications of analytical methods, ensuring the competence required for high-quality, safe, and effective medicinal products. By bridging theoretical chemical knowledge with rigorous quality control standards, the course empowers students with the professional autonomy and technical skills necessary for sustainable decision-making in global healthcare systems.

Lectures

  • 1.

    Application of electroanalytical methods in pharmaceutical analysis.

    - Tyukodi Levente
  • 2.

    Antihyperlipidemic agents.

    - Rozmer Zsuzsanna
  • 3.

    Antihyperlipidemic agents.

    - Rozmer Zsuzsanna
  • 4.

    Application of electroanalytical methods in pharmaceutical analysis.

    - Tyukodi Levente
  • 5.

    Drugs affecting coagulation and blood formation.

    - Rozmer Zsuzsanna
  • 6.

    Drugs affecting coagulation and blood formation.

    - Rozmer Zsuzsanna
  • 7.

    Application of IR spectroscopy in pharmaceutical analysis I.

    - Rozmer Zsuzsanna
  • 8.

    Antihistamines.

    - Rozmer Zsuzsanna
  • 9.

    Antihistamines.

    - Rozmer Zsuzsanna
  • 10.

    Application of IR spectroscopy in pharmaceutical analysis II.

    - Rozmer Zsuzsanna
  • 11.

    Drugs affecting the stomach, intestines, liver and biliary system.

    - Almási Attila
  • 12.

    Drugs affecting the stomach, intestines, liver and biliary system.

    - Almási Attila
  • 13.

    Application of NMR in pharmaceutical analysis I.

    - Rozmer Zsuzsanna
  • 14.

    General anaesthetics.

    - Rozmer Zsuzsanna
  • 15.

    General anaesthetics.

    - Rozmer Zsuzsanna
  • 16.

    Application of NMR in pharmaceutical analysis II.

    - Rozmer Zsuzsanna
  • 17.

    Sedatohypnotics and anxiolytics.

    - Rozmer Zsuzsanna
  • 18.

    Sedatohypnotics and anxiolytics.

    - Rozmer Zsuzsanna
  • 19.

    Stability of drugs.

    - Kuzma Mónika
  • 20.

    Antiparkinson agents.

    - Rozmer Zsuzsanna
  • 21.

    Antiparkinson agents.

    - Rozmer Zsuzsanna
  • 22.

    Application of mass spectrometry in pharmaceutical analysis I.

    - Rozmer Zsuzsanna
  • 23.

    Antipsychotics.

    - Rozmer Zsuzsanna
  • 24.

    Antipsychotics.

    - Rozmer Zsuzsanna
  • 25.

    Application of mass spectrometry in pharmaceutical analysis II.

    - Rozmer Zsuzsanna
  • 26.

    Antidepressant agents.

    - Rozmer Zsuzsanna
  • 27.

    Antidepressant agents.

    - Rozmer Zsuzsanna
  • 28.

    Characterization of the efficiency of chromatographic methods.

    - Tyukodi Levente
  • 29.

    Antiepileptics.

    - Kovács-Rozmer Katalin
  • 30.

    Antiepileptics.

    - Kovács-Rozmer Katalin
  • 31.

    Application of HPLC in pharmaceutical analysis.

    - Tyukodi Levente
  • 35.

    NSAIDs I.

    - Almási Attila
  • 36.

    NSAIDs I.

    - Almási Attila
  • 34.

    Application of GC in pharmaceutical analysis.

    - Tyukodi Levente
  • 32.

    Major analgetics.

    - Kovács-Rozmer Katalin
  • 33.

    Major analgetics.

    - Kovács-Rozmer Katalin
  • 37.

    Biological drugs I.

    - Fülöpné Kiss Edit
  • 38.

    NSAIDs II.

    - Almási Attila
  • 39.

    NSAIDs II.

    - Almási Attila
  • 40.

    Biological drugs II.

    - Fülöpné Kiss Edit
  • 41.

    Summary

    - Rozmer Zsuzsanna
  • 42.

    Summary

    - Rozmer Zsuzsanna

Practices

Seminars

Reading material

Obligatory literature

D.A. Williams, T.L. Lemke (eds.): Foye's Principles of Medicinal Chemistry, 7th edition, Lippincott Williams & Wilkins, Philadelphia, 2013

Literature developed by the Department

Attila Almási, Zsuzsanna Rozmer, Pál Perjési: Pharmaceutical Chemistry 1. Laboratory Experiments and Commentary, electronic educational material, PTE 2014

Notes

Recommended literature

European Pharmacopoeia, EDQM Publication

Lecture notes.

Conditions for acceptance of the semester

Acknowledgement of the course is in accord with the Code of Studies and Examinations. Participation on the lectures and the practices is obligatory. Maximum three absences can be accepted both from lectures and practices. Students have to write two midterm tests (week 7. and 12.) from the topics of the theory and the practice. One of the test result should be above 60%, the average of the tests should be above 50%. One re-take test is allowed at the 14th weak of the semester. Students have to write at least four mini-tests on the practices. The average of the results must be at least 50%. The practical work (results of the written tests and the experimental work) is evaluated by a practical grade. Satisfactory (2) evaluation is the minimum requirement of acknowledgement of the semester.

Mid-term exams

Students have to write two midterm tests (week 7. and 12.) from the topics of the theory and the practice. One of the test result should be above 60%, the average of the tests should be above 50%. One re-take test is allowed at the 14th weak of the semester. Students have to write at least four mini-tests on the practices. The average of the results must be at least 50%. The practical work (results of the written tests and the experimental work) is evaluated by a practical grade. Satisfactory (2) evaluation is the minimum requirement of acknowledgement of the semester.

Making up for missed classes

There is no opportunity to make up missed classes.

Exam topics/questions

Written exam covering the topics of the lectures and the laboratory practices. The result of the written exam must be above 60%. The final grade is based on results of the midterm tests and the written exam. Maximum contribution of the results of the midterm tests to the total score of the written exam is 20%.

Examiners

  • Almási Attila
  • Harmath Lilla Édua
  • Kovács-Rozmer Katalin
  • Rozmer Zsuzsanna
  • Tyukodi Levente

Instructor / tutor of practices and seminars