Here, we will discuss porous polyimide films with a uniform pore structure, life science research tools with fine through holes, and other microfabrication products.

Microphysiological system(MPS)

Fluid3D-X: the cutting-edge MPS chip for drug discovery, and the perfusion culture system,both developed through our core microprocessing technologies.

Featuring a double-layer microfluidic channel structure equipped with a microporous membrane, the microfluidic chip is designed for optimal pharmacokinetic evaluation.

Features

  • Plastic is used as a chip material to achieve low absorption.
  • A unique manufacturing process enables flexible microchannel design change.
  • Low cytotoxicity and good observability (fluorescence/phase-contrast)

Fluid3D-X in the text is a pending or registered trademark of TOK.

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MPS装置全体画像.jpg
ユニークで均一な微細構造3

Perfusion culture of primary human hepatocytes

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Figure. PHH maintained cell morphology (A) and ability of albumin secretion (B) Toxicity comparison of Fialuridine

SIEVEWELL Cell Capture Device

SIEVEWELL Cell Capture Device
SIEVEWELL Cell Capture Device
SIEVEWELL Cell Capture Device
SIEVEWELL Cell Capture Device
SIEVEWELL Cell Capture Device
SIEVEWELL Cell Capture Device

Life Science Research Tool With Microscopic Pores That Trap Cells and Allow Solutions to Pass Through.

These devices use transparent, anti-fluorescent materials with microscopic cell-sized structures. It is now being used by universities and research institutes around the world as a cell retention tool to supplement rare cancer cells in the fluid for genetic analysis, and as an analysis tool for the phenomenon known as NETosis/NETs (Neutrophil extracellular traps).

SIEVEWELL in the text is a pending or registered trademark of TOK.

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