Microfluidics & Particle Engineering

Microfluidics & Particle Engineering

Precision manufacturing of nano and microparticles for pharmaceutical, medical, environmental, and agricultural applications

Drug delivery Controlled Release Nanoparticles Precision Manufacturing Biomedical Applications

Engineering Particles with Unprecedented Control

We engineer particles with unprecedented control over size, uniformity, and functionality using advanced microfluidic technologies.

Traditional particle manufacturing suffers from poor size control, high variability, and limited scalability. Our microfluidic approach delivers monodisperse particles with <5% size variation, enabling superior performance in drug delivery, agriculture, environmental applications, and diagnostics.

Pharmaceutical & Drug Delivery

  • mRNA vaccine lipid nanoparticles
  • Targeted cancer therapeutics
  • Sustained release microspheres
  • Inhalation therapy particles
  • Oral drug delivery systems

“Achieved 95% encapsulation efficiency for mRNA vaccines vs 70% with traditional methods”

Agricultural & Environmental

  • Precision fertilizer delivery
  • Pesticide encapsulation
  • Water treatment particles
  • Soil enhancement systems
  • Air purification media

“50-70% reduction in fertilizer usage while maintaining crop productivity”

Medical Diagnostics

  • Point-of-care testing
  • Flow cytometry particles
  • Medical imaging contrast
  • Biosensor components
  • Therapeutic monitoring

“Single-particle detection with <10 minute response times”

Advanced Materials

  • Composite reinforcement
  • Catalyst particles
  • Electronic components
  • Cosmetic applications
  • Food technology

“Enhanced material properties with tailored particle characteristics”

Microfluidic Breakthroughs

Microfluidic Solution

  • Custom mixing devices for LNP formation
  • Optimized lipid ratios and conditions
  • Continuous production protocols
  • Stability-enhancing formulations
  • Scalable manufacturing validation

Agricultural Innovation

  • Biodegradable polymer microspheres
  • Controlled-release nutrient profiles
  • Root zone targeting optimization
  • Responsive release mechanisms
  • Field trial scaling

Environmental Solution

  • Photocatalytic nanoparticle engineering
  • Surface area and reactivity optimization
  • Particle recovery system development
  • Infrastructure integration
  • Long-term performance validation