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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.
构建一种灌胶简便的微流控芯片,用于细胞的三维培养,并可实现多参数调控细胞微环境,用于研究细胞不同的应激反应。同时,还考察该芯片形成稳定的浓度梯度和压力梯度的效果。 设计了一个由 3 通道 组成的微流控芯片构型,整个微通道的高度为 220 μm。 中间通道用于细胞三维支架的构建,宽为 400 μm,2 个旁通道用于细胞培养液的更新、生化因子的浓度梯度以及压力梯度的 生 成,宽 均 为 500 μm,旁通道与中间通道之间分别由 4 个斜型微 横桥连接,微横桥直径为 250 μm,作用是实现细胞与培养基的物质交换,以及施加对细胞的物理化学 刺激。 同时由于微横桥的尺寸较小,通过毛细力的作用避免了水凝…
Gene microarray chip (Gene microarray chip) is a high-throughput gene analysis platform, which is widely used in the fields of gene expression, gene mutation, gene detection and genomics research.
Microfluidic mixing chip is a chip based on microfluidic technology, which is mainly used for mixing different fluids together to realize high-precision and high-efficiency mixing and reaction.
A microfluidic cell sorting chip is a chip prepared using microfluidics and micro- and nanofabrication technologies for precise separation and sorting of mixed cells or microorganisms.
Microfluidic intestinal organ chip is a biochip based on microfluidic technology, which can be used to study intestinal physiology, pathological processes and intestinal-microbial interactions. It simulates the anatomy, physiological structure and function of the intestine, and can realize long-term culture and simulation of the intestine in vitro.
Overview of Liver Chip Microfluidic Liver Chip is an organ chip fabricated using microfluidic technology to mimic the liver, which can simulate the structure, function and metabolic pathways of the liver, and provides an efficient and reliable experimental platform for the study of liver diseases and the screening of hepatotoxic drugs.
Outline of Tumor Chip Microfluidic Tumor Chip is a microchip system that can simulate the human tumor microenvironment. It simulates the process of tumor growth by controlling the flow of fluids and cells within the chip through microfluidic technology, and allows real-time monitoring and analysis of tumor cell growth, migration, invasiveness and drug response.
A microfluidic vascular chip is a miniature device that mimics the human vascular system in vitro and usually consists of a microfluidic chip, a cell culture device, and a microimaging device.
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