Featured Products
Microcarriers
Hydrogels

G1 Hydrogel is an animal-free hydrogel designed for simple, room-temperature operation. It forms a stable gel instantly upon the addition of cell culture media, making it ideal for cell culture, tissue engineering, and biomedical research.
Custom modifications are available upon request, including peptide functionalisation and composite hydrogel systems.
- One-step, room-temperature gelation
- Animal-free formulation
- Tunable stiffness and bioactivity
Reagents and Consumables
Laboratory Equipment
Microfluidics

Smart MCs provides organ-on-a-chip (OoC) devices designed to model tissue microenvironments using microfluidic systems. These lab-on-a-chip platforms enable controlled fluid flow, cell–cell interactions, and integration with extracellular matrix (ECM) hydrogels for in vitro studies.
Organ-on-a-chip devices are used to study physiological responses, disease mechanisms, and interactions with pharmaceutical compounds under controlled conditions.

Smart MCs provides micromixers designed for efficient mixing of fluids at the microscale. These microfluidic devices enable rapid and controlled mixing under laminar flow conditions, improving reaction efficiency and reproducibility in biological and chemical applications.
Micromixers are suitable for handling small volumes, supporting precise reagent mixing in research and process development.

Smart MCs provides micron-particle sorting devices based on inertial microfluidics for size-based separation of particles and cells. These systems use spiral microchannels to focus and separate particles according to their size and biophysical properties under continuous flow conditions.
The devices are suitable for sorting particles ranging from approximately 3 µm to over 100 µm, supporting a wide range of biological and research applications.

Smart MCs provides microfluidic systems for pathogen purification based on inertial microfluidics. These devices enable size-based separation of microorganisms, cells, and debris from biological samples under continuous flow conditions.
The system is designed to support purification of complex samples from human, animal, and environmental sources, reducing unwanted components such as debris and background cells.































