Chip
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.
Glass microfluidic chip is a crucial tool in microfluidic technology, utilizing glass as the manufacturing material for the chip. Compared to traditional polymer chips, glass chips exhibit outstanding optical transparency, chemical inertness, thermal stability, and biocompatibility. These characteristics make glass chips widely applied in life science research, medical diagnostics, drug screening, and other fields. The fabrication processes for glass chips are diverse, involving methods such as micromachining and chemical etching to precisely create microstructures and microchannels, achieving the integration of microfluidic systems. The highly controllable manufacturing process provides a stable and reliable platform for experiments, and the transparency facilitates real-time observation of cells, particles, or biochemical reactions within the microfluid, offering advanced and dependable solutions for the application of microfluidic technology.
Suitable for cell culture, drug screening, cell capture and other related chip manufacturing, the material itself is hydrophobic in nature and can be surface modified by chemical or physical means.
Dual Flow Channel Design Organoid Chip An advanced organoid chip technology inspired by the concept of organoid chips, it consists of two independent channels that support 2D and 3D cell cultures to mimic physiological environments, especially in the study of the effect of fluid shear stress on gene expression in blood vessels.
Sperm sorting chips represent an advanced technological tool designed specifically for reproductive therapy. Its core advantages include efficient selection of ideal sperm without the need for cumbersome sample preparation, as well as a standardized and streamlined operational process. This innovative chip combines optimized channel dimensions and incubation time to maximize sorting efficiency. Through this technology, high-quality sperm with attributes such as high motility, normal morphology, low ROS (Reactive Oxygen Species), and low DNA fragmentation can be quickly and accurately selected. The sperm sorting chip not only significantly reduces sample preparation time but also mitigates the impact of traditional centrifugation methods on semen quality, providing embryologists with an efficient and straightforward method to select the highest quality sperm, thereby enhancing the success rate of reproductive therapy.
Cell migration, which refers to the movement of a cell after it receives a migration signal or senses a concentration gradient of some substance. During movement, the cell repeats the cyclic process of extending synapses/pseudopods anteriorly and then pulling on the posterior cytosol. The cytoskeleton and its binding proteins, as well as the intercellular matrix, are the material basis for this process, which is finely regulated by a variety of other substances.
Cell culture microarrays, also known as cell chips or microfluidic cell culture chips, are an innovative tool in the field of cell biology that is changing the landscape of cell research and medical applications in unprecedented ways.
The Nucleic Acid Mass Spectrometry Chip (SpectroCHIP Array) is an advanced biochip technology primarily applied in genomics research and DNA sequencing. This chip features highly integrated functions, enabling simultaneous gene sequencing of multiple DNA samples on a single chip. Utilizing high-throughput optical detection technology allows efficient and precise analysis of DNA fragments. Its design addresses the need for high automation, enabling users to acquire large-scale genetic data more rapidly and reliably. This technology finds extensive applications in disease research, personalized medicine, and bioinformatics, playing a crucial role in advancing genomics research and DNA sequencing. The innovative design of the Nucleic Acid Mass Spectrometry Chip makes it a highly acclaimed technology in the current field of gene sequencing.
A 3D cell culture chip is a biotechnology tool used to simulate and study three-dimensional cell growth environments in the laboratory. Traditional cell culture is usually performed in a 2D petri dish, but this method cannot accurately simulate the 3D growth of cells in the human body.
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