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Top Asahi provides various microfluidic chips, microfluidic chip processing equipment and microfluidic commonly used consumables, and we also provide professional microfluidic chip customization services.
Top Asahi provides various microfluidic chips, microfluidic chip processing equipment and microfluidic commonly used consumables, and we also provide professional microfluidic chip customization services.
Top Dxfluidics is a high-tech enterprise focusing on surface modification of materials, dedicated to providing customized surface modification services for various substrates (e.g. glass, polymers, etc.). Our technologies cover surface hydrophobicity, hydrophilicity, and modification of various functional groups (e.g., amino groups, aldehyde groups, epoxy groups, etc.). Through these modification technologies, we are able to significantly enhance the performance and adaptability of materials to meet the diverse needs of biomedical, electronic technology, aerospace and industrial manufacturing. We offer a variety of functional groups treated substrates (e.g. glass), which are described in the following figure: About us Top Asahi (Suzhou) Microcontrol Technology Co., Ltd. is a high-tech enterprise focusing on the field of microfluidic control, we are committed to providing our customers with microfluidic chip customization, surface modification modification, microfluidic chip processing equipment, as well as microfluidic instrumentation, and other comprehensive microfluidic solutions. The company's team has a wealth of experience and technology accumulation, continue to professional knowledge...
Microtiter plate is a laboratory tool widely used in high throughput screening (HTS), enzyme-linked immunosorbent assay (ELISA), cell culture, nucleic acid and protein assays (PCR, qPCR) and so on. Common specifications include 6-well, 24-well and 96-well, and the materials are mainly polystyrene and polypropylene.
Fluorine oil, as a perfluoroalkane compound, is widely used as the continuous phase of water-in-oil droplets because of its low viscosity, high boiling point and good biocompatibility. What's more, according to the principle of similar solubility, fluorine oil is immiscible with hydrocarbon alkyl compounds, so fluorine oil, as a continuous phase, can be used to prepare not only fluorine oil-in-water droplets, but also fluorine oil-in-acetonitrile, fluorine oil-in-DMF, fluorine oil-in-methanol and other droplets, and at the same time, because the contents of the droplets are insoluble in the fluorine oil, so it can realize almost 100% encapsulation efficiency for the contents of the droplets.
Droplet Microfluidics is a microfluidic technology that manipulates and controls liquid droplets at the micrometer scale for various biological and chemical experiments. Integrating knowledge from microfluidics, chemical analysis, and biology, this technology offers advantages such as high integration, automation, high throughput, and low cost, opening new possibilities in laboratory research and clinical diagnostics. In this article, we will provide a detailed overview of the basic principles, applications, advantages, and challenges of droplet microfluidic chips.
The Spiral Cell Sorting Chip is an innovative forefront microfluidic technology. Its unique design incorporates a spiral-shaped microchannel, enabling efficient continuous separation of suspended particles or cells by adjusting fluid velocity and spiral structure. This technology, renowned for its outstanding sorting efficiency, compact device size, and flexibility, finds extensive applications in cell sorting, particle separation, and biomedical research. This article delves into the principles, design features, and application areas of the Spiral Sorting Chip, with a particular focus on its significance in capturing circulating tumor cells (CTCs) for cancer research.
Step Emulsification Chip is a microfluidic chip technology widely used in the field of droplet microfluidics. It adopts advanced emulsification technology to realize efficient control and precise manipulation of liquid droplets by layering to form a step structure.
Technology in the biomedical field continues to innovate, and single-molecule RNA analysis microarrays (amplification-free) have attracted widespread attention as an advanced bioanalytical technology.
Microfluidic mother machine chip is an advanced biochip technology that integrates microfluidics and cell biology, aiming to simulate and study various stages of mother cells in the cell cycle and related molecular and biological processes. This technology utilizes microstructures such as microchannels, microreactors, and microvalves for highly precise manipulation and observation of mother cells at the microscopic scale. The following is a detailed overview of the mother machine chip, covering its principles, applications, advantages, and potential impact on cell biology and medical research.
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