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3D printing is gaining grip as a compelling method of fabricating microfluidic products by providing unique capabilities, such as for example 1) quick design version and prototyping, 2) the potential for automatic production and alignment, 3) the incorporation of numerous courses of products within an individual platform, and 4) the integration of 3D microstructures with prefabricated devices, sensing arrays, and nonplanar substrates. Nevertheless, to extensively deploy 3D printed m