AI-Driven Solutions for Biotech

AI-Driven Solutions for Biotech

Our intelligent suite of microfluidic sorting and encapsulated solutions features advanced technological products focused on quality, precision, and accuracy. With a team of AI experts, cell scientists, and biomedical engineers, Rain Biotech Solutions employs AI-assisted technology from cell culturing, encapsulation, sorting, and imaging, to 3D tissue construction

RAIN Syringe Pump

  • Precision syringe pump with laboratory applications such as perfusion, mass spectrometry, flow cytometry, etc. Also in medical applications such as nutritional supplementation and other continuous fluid delivery applications.

    • 4.3-inch color touch screen control

    • Eight execution and operating parameters and status

    • Pump can be adjusted during operation

    • Automatic calibration

    • Real-time monitoring results for each channel

    • Backspace setting can reduce bubbles in the syringe

    • Fast forward and reverse functions help loading, cleaning and blocking protection

    • Operable display screen with parameter settings display

    • Adaptable to various syringe manufacturers and sizes

    • Able to store up to 10 groups of common modes

    • Applicable syringe types: 0.5 mL-50 mL, 250 mL-25 mL, 2-50 mL

RAIN Microfluidic Intelligent Cell Sorter

  • The RAIN Label-Free Cell Sorter is an advanced device combining artificial intelligence (Al) and computer vision-based cell identification technology.

    Designed to provide efficient and accurate cell sorting solutions for various applications, such as label-free sorting of microencapsulated cels, cell clusters, and organoids. Using advanced image processing algorithms and deep learning modules, ti can identify and sort with high accuracy and efficiency, providing users with superior quality samples.

    • High cell viability after sorting

    • Multi-scenario application, flexible sorting method

    • Fully automatic operation

    • Consumables customization

    • Able to sort various types of sorted samples

    • User-friendly interface

    • High-precision image recognition: > 99% accuracy

    • High-throughput processing

  • Customized according to different application needs of customers. More information coming soon.

RAIN Microencapsulator

  • The RAIN Microencapsulator has a wide range of applications in research fields such as cell culturing, drug or supplements delivery, and tissue engineering.

    Many types of hydrogel microsphere materials can be used, and adjustable parameters can be set to meet the needs of various applications.

    By adjusting the flow rate ratio and types of microchips used, various biological materials can be encapsulated to form uniform microspheres.

    • Able to control micro droplet size

    • Precise encapsulation of drug molecules and cells

    • Particle size uniformity

    • Reduce cell damage and rejection

    • Equipped with a UV light curing module, suitable for a variety of curable materials

    • Temperature controlled, suitable for the preparation of temperature-sensitive hydrogels

    • Precision syringe pump to meet various flow rate conditions

    • Visualization of microdroplet generation, real-time observation and monitoring

    • Customizable hydrogel microspheres and microfluidic chips

RAIN Mini Bioreactor

  • The RAIN Mini Bioreactor can be used for iPSC and many other cells in suspension culture.

    The cells naturally form spheroids that are homogenous in structure. These 3D structures improve expansion of cell cultures in a cost effective manner, increasing yield, differentiation potential, viability and growth efficiency.

    • Two main components: a six channel magnetic stirrer platform and an electrical controller with motor unit

    • Stirrer blades contain magnetic delta wing impellers, providing low-shear stress stirring though laminar flow

    • Vessels offered in 5 mL , 3 0 mL , and 100 mL size

    • The 30 mL bioreactor can multiply starting cell populations by 5 to 10 times (maximum 5X10' cells)

    • Typical sphere size is 200-300 um

    • Made of high-density polycarbonate, compatible with various cell cultures

    • Biocompatible materials construction

    • Superior efficiency to adherent cell cultures