• Microfluidics is fundamentally about achieving precise control of fluids at the micrometer scale. By manipulating minute volumes with high spatial and temporal resolution, microfluidic technologies have become indispensable tools across chemical synthesis, biological research, diagnostics, and emerging biomedical applications. Yet despite decades of progress, the field continues to face a persistent trade-off between operability, accessibility, […]

  • As microfluidic systems evolve toward higher functional integration and greater sensing accuracy, manufacturing precision has become a defining factor in device performance. In particular, applications such as single-cell impedance spectroscopy demand not only micron-scale resolution, but also the ability to seamlessly integrate structures with vastly different feature sizes into a single, monolithic device. This is […]

  • A research team from the School of Pharmaceutical Sciences, Wuhan University has developed a pH-responsive bilayer microneedle patch that achieves ultrasound-activated antibacterial therapy and immune modulation, offering a powerful new non-antibiotic strategy for infected wound treatment. The study, titled “Three-in-one bilayer microneedle patch for ultrasound-activated antibacterial therapy and immune modulation in wound healing”, has been […]

  • The human gut is one of the most complex and dynamic microbial ecosystems. Often referred to as a “forgotten organ,” the intestinal microbiome plays a decisive role in digestion, immune modulation, metabolic balance, and even neurological health. Yet despite decades of research, one fundamental challenge has remained unresolved: how to accurately sample microorganisms from different […]

  • BMF, a global leader in micro scale 3D printing, is set to launch its upgraded S150 BIO system in the APAC region. Tailored for life science and biomedical research, the new S150 BIO combines high optical precision of 25 μm with compatibility for biomaterials and hydrogel printing, delivering a powerful solution for researchers seeking precision, flexibility, […]

  • Shenzhen, China — November 11, 2025 — BMF APAC has officially released the microCube T10, a new desktop-class micro 3D printing system featuring 10.8 μm optical precision. Designed to make high-resolution microfabrication accessible to more research teams and small enterprises, the T10 combines lab-grade accuracy with a compact, easy-to-use desktop form factor. Equipped with BMF’s […]

  • As global freshwater scarcity intensifies, solar-driven seawater desalination is emerging as a sustainable and environmentally friendly solution. Yet, traditional solar evaporators often struggle in high-salinity environments due to salt crystallization and clogging, resulting in decreased evaporation efficiency and limited durability. Recently, a research team from Harbin Institute of Technology (HIT) has developed a bamboo shoot-inspired […]

  • BMF APAC and Shenzhen MultiMatter Science and Technology Co., Ltd. have joined forces to solve long-standing bottlenecks in high-end manufacturing. Their first joint result is the microCube M150 — a high-precision, multi-material photopolymer 4D printer designed for scientific research institution and industrial use. With an optical resolution of 25 µm, M150 supports integrated processing of […]

  • Transforming patient-speific vascular geometries into functional microfluidic devices has long been a challenge, hindered by complex workflows and long fabrication cycles. A new study published in Advanced Materials by Professor Arnold Ju’s team at the University of Sydney presents a breakthrough: an automated, high-precision platform that fabricates patient-specific vascular chips in under two hours—a process […]

  • Medical device development is rapidly moving toward smaller, smarter and more personalized solutions. To enable effective miniaturization and functional integration, whether for endoscopic tips, microfluidic implants, or ultra-thin dental restorations, manufacturers need production technologies that can reliably reproduce complex geometries at micron and sub-micron scales while meeting industrial tolerances and medical safety requirements. At BMF we’ve focused […]