精品一区二区在线欧美日韩_人人狠狠综合久久亚洲_色婷婷亚洲一区二区三区_国产精品久久久久精品综合

  • <var id="xyaoh"><tr id="xyaoh"></tr></var>
  • Wuxi Gotele Metal Products Co., Ltd : CN EN
    首頁 >>新聞動態(tài) >>醫(yī)療設(shè)備新聞

    Innovative Device Heals Organs with a Single Touch

    "By using our novel nanochip technology, injured or compromised organs can be replaced. We have shown that skin is a fertile land where we can grow the elements of any organ that is declining," said Dr. Chandan Sen, director of Ohio State's Center for Regenerative Medicine & Cell Based Therapies, who co-led the study with L. James Lee, professor of chemical and biomolecular engineering with Ohio State's College of Engineering in collaboration with Ohio State's Nanoscale Science and Engineering Center.


    In the study, researchers were able to reprogram skin cells to become vascular cells in badly injured legs of mice and pigs that lacked blood flow. Within one week, active blood vessels appeared in the injured leg, and by the second week, the leg was saved. In lab tests, this technology was also shown to reprogram skin cells in the live body into nerve cells that were injected into brain-injured mice to help them recover from stroke.



    "This is difficult to imagine, but it is achievable, successfully working about 98 percent of the time.”


    “With this technology, we can convert skin cells into elements of any organ with just one touch. This process only takes less than a second and is non-invasive, and then you're off. The chip does not stay with you, and the reprogramming of the cell starts. Our technology keeps the cells in the body under immune surveillance, so immune suppression is not necessary," said Sen, who also is executive director of Ohio State's Comprehensive Wound Center.


    TNT technology has two major components: First is a nanotechnology-based chip designed to deliver cargo to adult cells in the live body. Second is the design of specific biological cargo for cell conversion. This cargo, when delivered using the chip, converts an adult cell from one type to another, said first author Daniel Gallego-Perez, an assistant professor of biomedical engineering and general surgery who also was a postdoctoral researcher in both Sen's and Lee's laboratories.


    TNT doesn't require any laboratory-based procedures and may be implemented at the point of care. The procedure is also non-invasive. The cargo is delivered by zapping the device with a small electrical charge that's barely felt by the patient.


    "The concept is very simple," Lee said. "As a matter of fact, we were even surprised how it worked so well. In my lab, we have ongoing research trying to understand the mechanism and do even better. So, this is the beginning, more to come."


    Researchers plan to start clinical trials next year to test this technology in humans, Sen said.



    Source: sciencedaily.com

    首頁電話產(chǎn)品導航
    CN EN
    永康市| 广丰县| 太康县| 泰安市| 通化市| 贵定县| 惠东县| 泸州市| 航空| 永清县| 广丰县| 维西| 玉溪市| 洛宁县| 襄樊市| 云龙县| 黔东| 黔西县| 得荣县| 镇原县| 开封县| 平南县| 临澧县| 海原县| 象州县| 高清| 岚皋县| 瓦房店市| 马关县| 英山县| 泰和县| 通化市| 马龙县| 霍州市| 遵义市| 新巴尔虎右旗| 洞口县| 安吉县| 株洲市| 弥勒县| 安西县|