Adopting plant-based resin developed with the motto of being friendly to people and the environment!
The "Pinnix Light" is a disposable type of lancet that integrates a puncture device and puncture needle, used for blood glucose measurement and other purposes. Unlike conventional metal needles, it uses a plant-based resin (polylactic acid) developed under the motto of "creating products that are kind to people and the environment." The use of resin provides excellent elasticity, resulting in a needle that has no impact on the human body. The shape of the puncture needle resembles that of a mosquito's needle, and the tip is serrated to reduce friction resistance with subcutaneous tissue, thereby minimizing pain to the human body and making it less likely to break as a needle. It is currently used primarily for blood sampling during blood glucose measurements for diabetes patients. 【Features】 - A resin injection needle that reduces pain by mimicking a mosquito's needle - Consideration for human impact and safe disposal due to the use of plant-based resin - Each lancet is individually packaged in a completely sealed manner → Ensures cleanliness and sterility of the product - Being made of resin, it can be incinerated after use - Medical device approval number: 22300BZX00293000 For more details, please contact us or download the catalog.
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【Features】 ○ A lancet made from environmentally friendly plants ○ Soft sensation during use, leaving no unpleasant pain after puncture ○ Safely locks internally after use, with a disposable structure that cannot be reused ○ Completely sealed individual packaging ensures cleanliness and sterility ○ 100 pieces per bag ● For more details, please contact us or download the catalog.
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Lightnix is a venture company established in 2002 with the aim of developing environmentally friendly medical devices. As a result of our research, we completed a plant-based resin lancet needle in 2012, receiving approval from the Ministry of Health and the FDA, and launched a lancet needle made entirely in Japan from the materials used. Through our unique technology that mimics mosquito needles, we successfully developed a low-invasive design that results in smaller wounds compared to traditional metal needles. Currently, we are also focusing on utilizing this technology to develop intradermal vaccine delivery devices.