
Custom Microwell Plates
Overview
Our microplate portfolio is built to serve modern pharmaceutical, translational, and advanced cell model workflows from regulated analytical testing to next-generation 3D culture and organ-on-chip integration. Rather than offering generic plates for generic use, we develop application-specific microwell platforms, each optimized for a distinct experimental bottleneck.
Our Microplate Solutions
01
Endotoxin Detection Microplates (Pharma-Focused)
Microplates engineered for reliable endotoxin (LAL/rFC) testing in pharmaceutical and biologics workflows, featuring low background interference, high consistency, and full compatibility with standard detection systems.
02
3D Cell Culture Microplates (Micro-Structured Bottoms)
Advanced plates featuring precision-engineered micro-structures at the well bottom to facilitate 3D cell growth and spheroid formation, providing a more physiologically relevant environment for advanced cell research.
03
Organ-on-a-Chip Microplates
High-performance plates designed to simulate organ-level physiology and microenvironments, enabling sophisticated drug screening and disease modeling through integrated microfluidic architectures.
04
Standard Microplates (96 & 384 Well)
High-quality, versatile 96-well and 384-well plates optimized for high-throughput screening and general laboratory assays, ensuring uniform heat transfer and optical clarity across all wells.
05
High-Resolution Imaging Microplates (Glass/Film Bottom)
Specialized plates featuring ultra-thin 0.17mm glass or film bottoms, specifically designed for high-resolution confocal microscopy and automated imaging where superior optical performance is critical.
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Our Core Capabilities

01. Precision Micro-Structuring
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High-accuracy bottom-well engineering We specialize in high-precision processing at the well bottom to enable advanced assays. Our capabilities include:
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Micron-scale Flow Channels: Precise fluidic architectures for complex workflows.
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Microwell & Pillar Arrays: Micro-to-millimeter scale pits and pillars for specialized cell trapping.
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Electrode Integration: Seamless integration of metallic sensors for electrochemical applications.
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High Consistency: Ensuring repeatable results for cell analysis and biochemical testing.

02. Advanced Bonding Solutions
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Reliable sealing for complex architectures We utilize specialized bonding techniques tailored to your material choice, structure, and thickness:
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Multi-Process Expertise: Laser, Thermal, UV, PSA, and Solvent bonding technologies.
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Material Compatibility: High-performance bonding for PS, COC/COP, Glass, and PDMS.
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Structural Integrity: Achieving superior sealing and structural stability while preserving delicate microstructures.
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Zero Leakage: Engineered for high-reliability in long-term experiments.

03. Surface Functionalization
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Long-term performance and stability We provide customized surface treatments to meet the specific demands of your biological applications:
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TC Treatment: Standard and advanced Tissue Culture treatments for optimized cell adhesion.
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Ultra-Low Attachment (ULA): Specialized surfaces to prevent protein adsorption and facilitate 3D spheroid growth.
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Custom Coatings: Tailored functionalization for high-sensitivity detection.
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Extended Shelf-life: Ensuring surface properties remain stable throughout your study.

04. End-to-End Manufacturing
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From initial concept to mass production We offer a complete solution to bridge the gap between a research idea and a market-ready product:
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Prototyping & Design: Rapid iteration of microwell plate designs.
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Process Validation: Rigorous testing to ensure manufacturing feasibility.
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Pilot Production: Seamlessly scaling from small batches to clinical trials.
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Mass Manufacturing: Full-scale production capabilities to meet global demand.
Specs and Showcases

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Microwell Capabilities
Microwell/micropillar sizes down to 2 µm​
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Substrate Versatility
Available in plastic, glass, and hybrid materials​
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Format Flexibility
From 6-well to 384-well formats​
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Finish Customization
Sterilization, pyrogen-free treatment, barcoding, coating, custom packaging
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Custom Pipette Tips
Custom pipette tips available to match microplate layout and automation
Custom Well Bottom Features



High-throughput Barrier Functional Organ Chip

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Pump-free, high-throughput perfusion:
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Gravity-driven fluid flow enables continuous, stable perfusion without external pumps, supporting scalable and parallelized operation.
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ECM-efficient 3D cell culture:
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An upper porous-membrane layer forms a confined ECM-based 3D culture chamber, requiring only 1–10 µL of matrix per unit.
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Imaging-ready and plug-and-play:
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An ultra-thin, optically clear backplane ensures high-quality imaging and seamless compatibility with mainstream commercial assay and testing platforms.​
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Applications
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Barrier model construction
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Epithelial–endothelial interaction
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2D–3D multi-organ co-culture
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Disease modeling
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High-throughput drug screening