Lab Overview

The Molecular Biology Research and Tissue Culture Laboratory is an advanced faculty research space designed to support molecular analysis, PCR-based workflows, and mammalian cell culture. Located in room A210 at the main building of UNIC Athens, the laboratory is used exclusively for faculty research and supervised final-year student projects, offering a research-grade environment where students and investigators can work across molecular and cellular experimental systems.

The laboratory’s strategic value lies in its integration of molecular biology and tissue culture capabilities. This combination allows researchers to connect gene-level analysis with cell-based experimental models, supporting projects that require DNA amplification, real-time quantification, cell maintenance, experimental treatment, and cellular observation. It provides an essential platform for biomedical, pharmaceutical, pharmacological, toxicological, and translational research questions.

For students, A210 provides exposure to research methods that are central to modern life sciences. Under faculty supervision, final-year project students can engage with PCR, quantitative molecular analysis, cell culture practice, microscopy, cryostorage, and experimental workflows that require sterility, precision, and disciplined protocol execution. This prepares students for postgraduate research, biotechnology environments, clinical research laboratories, and pharmaceutical development settings.

Research & Innovation Focus

The laboratory enables research in molecular biology, gene expression analysis, PCR-based detection, cell culture, cellular response studies, and experimental biomedical models. Its Real-Time PCR system supports quantitative DNA processing and molecular measurement, while the regular PCR cycler provides essential amplification capacity for standard molecular biology workflows.

The tissue culture infrastructure allows researchers to maintain and study cells under controlled conditions. The presence of two cell culture hoods, a humidified CO₂ incubator, inverted microscopy with camera support, water bath, centrifugation, freezer capacity, and liquid nitrogen storage enables cell-based experimentation, preservation, and observation. This makes the laboratory particularly relevant for studies investigating cellular behaviour, treatment response, cytotoxicity, molecular regulation, and mechanistic biomedical questions.

The laboratory also supports teaching innovation through supervised research immersion. Students learn not only the technical steps of PCR and tissue culture, but also the principles of sterility, contamination control, experimental reproducibility, cell viability, molecular quantification, and responsible data interpretation.

Core Capabilities

The Molecular Biology Research and Tissue Culture Laboratory enables:

  • Faculty-led research in molecular biology, cellular biology, and biomedical sciences.
  • Supervised final-year student projects using molecular and cell-based methods.
  • Real-Time PCR workflows for quantitative DNA analysis and molecular measurement.
  • Standard PCR amplification for molecular biology applications.
  • Cell culture work using two dedicated cell culture hoods and a humidified CO₂ incubator.
  • Observation and documentation of cultured cells using an inverted microscope with camera.
  • Cryostorage and preservation workflows supported by freezer capacity and liquid nitrogen storage.
  • Sample processing through centrifugation, controlled warming, microscopy, and general molecular biology equipment.
  • Safe storage of sensitive materials using a spark-proof -20°C refrigerator.
  • Integration of molecular analysis with cellular models for applied biomedical and pharmaceutical research.

Collaboration Opportunities

A210 is positioned as a research platform for collaborations involving molecular biology, tissue culture, pharmacological testing, cell-based assays, toxicological screening, biomarker studies, and translational biomedical research. It can support academic partnerships, EU-funded projects, biotechnology collaborations, pharmaceutical research, student-industry projects, and early-stage proof-of-concept studies.

The laboratory is particularly relevant for partners seeking a university-based environment capable of combining molecular readouts with cell-based experimental systems. Its value lies in enabling mechanistic studies that connect molecular signals, cellular responses, and applied health-science questions.

 

Gallery

Facility Details

Type

Biology Lab

Room

A210

Capacity

16