A startup that synthesizes long, complex DNA using proprietary technology, enabling the flexible design of diverse gene combinations. It also provides comprehensive support from development to manufacturing processes for viral vectors and mRNA required for gene therapy.

We develop, manufacture, and sell wireless power transfer systems that wirelessly supply several watts of power to locations several meters away. Our unique and superior microwave wireless power transfer technologies eliminate power wires and charging and make a society where a variety of devices can use power efficiently anywhere. We manufacture and sell power transmitter and receiver systems that comply with the current regulations. These systems transmit power wirelessly to IoT sensors and small actuators in facilities and equipment in factories, warehouses, distribution centers, etc. We are also developing higher-performance wireless power transfer systems.

A startup developing 3D game-based medical devices to comprehensively assess and treat executive function in children with ADHD. By combining game design with neuroscience, it advances digital transformation in healthcare and expands possibilities for supporting diverse children.

At Beef Sommelier, we provide our B-som Diagnosis with the aim of creating a world where producers can raise their ideal cattle and consumers can enjoy beef that truly matches their preferences. Our technology not only quantifies biological information from beef cattle, but also supports producers in achieving their target meat quality. By introducing a new scientific perspective that goes beyond conventional standards, we make the “unseen qualities” of beef visible and measurable. This enables consumers to clearly understand the characteristics of the beef they choose. B-som is the world’s first scientific diagnostic service that bridges the gap between producers and consumers.

Cells in living organisms function in an orderly manner by cooperating with surrounding cells while interacting with extracellular proteins. However, in cell culture systems, extracellular proteins are largely absent, making it difficult for cells to function properly and often causing them to exhibit physiological activities that differ from those observed in vivo. Our company conducts research on extracellular matrix proteins located outside the cell, and by applying the findings from this research to cell culture technologies, we aim to contribute to the advancement of regenerative medicine and the realization of alternatives to animal experimentation.