Task-based teaching of genetic engineering-related vocabulary to medical students in ESP classes: a linguodidactic approach

Authors

  • Uzbek state world languages university

DOI:

https://doi.org/10.5281/zenodo.23133584
Task-based teaching of genetic engineering-related vocabulary to medical students in ESP classes: a linguodidactic approach

Abstract

The rapid development of genetic engineering, gene therapy, genome editing, and molecular medicine has increased the need for medical students to acquire specialized English vocabulary in these fields. This article examines the linguodidactic foundations of teaching genetic engineering-related terminology within English for Specific Purposes (ESP) courses. The study focuses on lexical and communicative competence, principles of terminology selection, and the use of task-based instruction. A qualitative descriptive and analytical approach is used to synthesize key ESP, vocabulary-learning, CEFR, and task-based learning principles and to develop a pedagogical model for classroom application. The proposed model integrates pre-task preparation, a professionally oriented task cycle, and post-task language analysis. Authentic scientific texts, visual materials, case-based discussions, information-gap activities, role plays, simulations, and project work are presented as means of contextualizing terminology. The analysis suggests that specialized vocabulary is more effectively developed when it is taught as part of conceptual networks, collocations, and communicative functions rather than as isolated word-definition pairs. The article concludes that combining medical content, systematic lexical instruction, and professionally oriented communicative tasks provides a coherent framework for developing medical students’ ESP lexical competence.

Keywords:

English for Specific Purposes genetic engineering medical students vocabulary teaching gene therapy inherited genetic disorders lexical competence task-based learning

References

Council of Europe. (2020). Common European Framework of Reference for Languages: Learning, teaching, assessment—Companion volume. Council of Europe Publishing.

Dudley-Evans, T., & St John, M. J. (1998). Developments in English for specific purposes: A multi-disciplinary approach. Cambridge University Press.

Ellis, R. (2003). Task-based language learning and teaching. Oxford University Press.

Hutchinson, T., & Waters, A. (1987). English for specific purposes: A learning-centred approach. Cambridge University Press.

Long, M. H. (2015). Second language acquisition and task-based language teaching. Wiley-Blackwell.

Nation, I. S. P. (2001). Learning vocabulary in another language. Cambridge University Press.

National Academies of Sciences, Engineering, and Medicine. (2020). Heritable human genome editing. The National Academies Press.

National Center for Advancing Translational Sciences. (n.d.). Gene therapy. U.S. National Institutes of Health. Online resource (unpaginated).

World Health Organization. (2021). Human genome editing: Position paper. World Health Organization.

World Health Organization. (2021). Human genome editing: Recommendations. World Health Organization.

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Author Biography

Dilafruz Shuxratovna Kurbanova,
Uzbek state world languages university

Teacher,

Department of English Language Teaching Methodology and Educational Technologies

How to Cite

Kurbanova, D. S. (2026). Task-based teaching of genetic engineering-related vocabulary to medical students in ESP classes: a linguodidactic approach. The Lingua Spectrum, 9(1), 282–288. https://doi.org/10.5281/zenodo.23133584