首页> 外文会议>IIR workshop on cold applications in life sciences >NEWLY DESIGNED TISSUE/CELL STORAGE BAG FOR CRYOPRESERVED HOMOGRAFT BY APPLICATION OF CO_2 LASER WELDING TECHNIQUE
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NEWLY DESIGNED TISSUE/CELL STORAGE BAG FOR CRYOPRESERVED HOMOGRAFT BY APPLICATION OF CO_2 LASER WELDING TECHNIQUE

机译:应用CO_2激光焊接技术设计的超低温冷冻同种异体组织/细胞存储袋

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摘要

Cryopreserved heart valve allografts (homografts) are packed in heat-sealed fluorinated ethylene propylene (FEP) film bag and stored under vapor phase of liquid nitrogen. Supply of those specific storage bags are very limited, and obtained from limited industries. On the other hand, sealing technique by CO_2 laser enables secure closure using its high temperature (over 500 ℃) beam, gives flexibility in sealing line design (not only straight but also any kind of curve or circle), and wider source of product supply can be expected with reasonable cost. This study is to assess the quality of newly designed tissue / cell storage bag for cryopreservation as domestic products by CO_2 laser welding method, which enables drawing any types of sealing line (straight, curve) under any ambient temperature.rnUsing CO_2 laser (Firestar V40, Synrad Co. Ltd, USA), we designed homograft storage bag with FEP films (0.1 mm thick) under several sealing conditions (sealing width, laser intensity), with fixed operating speed (5 mm·s~(-1)). We assessed the quality of welding line, and changes in neighboring film condition.rnStability of welding was best achieved by laser intensity at 10.5 Watt (W), and acceptable at 13.5 W. Tensile test revealed that the line was stable against 20 Newton when sealing was done with laser intensity more than 10.5 W. We have also assessed structural changes of the sealing line and the neighboring film by polarizing microscope, which revealed fine foam formation at sealing line when laser intensity was high.rnCO_2 laser sealing method is feasible in its stability and strength, and quality of the line was achieved when performed by appropriate laser intensity.
机译:将冷冻保存的心脏瓣膜同种异体移植物(同种异体移植物)包装在热密封的氟化乙烯丙烯(FEP)薄膜袋中,并在液氮的气相中存储。这些特定的存储袋的供应非常有限,并且是从有限的行业获得的。另一方面,CO_2激光的密封技术可通过其高温(超过500℃)光束实现安全封闭,在密封线设计(不仅是直的,还可以是任何曲线或圆形)上提供灵活性,并提供广泛的产品来源可以以合理的成本预期。这项研究旨在通过CO_2激光焊接方法评估新设计的用于冷冻保存的家用产品的组织/细胞存储袋的质量,该方法可以在任何环境温度下绘制任何类型的密封线(直线,曲线)。rn使用CO_2激光(Firestar V40 (美国Synrad公司),我们在几种密封条件(密封宽度,激光强度)下,以固定的工作速度(5 mm·s〜(-1))设计了带有FEP膜(0.1毫米厚)的同种移植物存储袋。我们评估了焊接线的质量以及附近覆膜条件的变化。rn在10.5瓦(W)的激光强度下,焊接的稳定性最佳,在13.5 W时是可接受的。拉伸试验表明,密封时,该焊线在20牛顿的情况下稳定。用偏光显微镜评估了密封线和相邻薄膜的结构变化,发现当激光强度高时,密封线处会形成细小的泡沫。rnCO_2激光密封方法可行稳定性和强度,以及通过适当的激光强度完成生产线的质量。

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  • 会议地点 Dresden(DE)
  • 作者单位

    Department of Cardiovascular Surgery, Toho University Medical Center, Sakura Hospital, 564-1, Shimoshizu, Sakura-City, Chiba 285-8741, Japannoboru@Motomura.org;

    Department of Cardiovascular Surgery, Toho University Medical Center, Sakura Hospital, 564-1, Shimoshizu, Sakura-City, Chiba 285-8741, Japan;

    Polymers Laboratory, Mitsui Chemicals, INC;

    Digital Manufacturing Research Center, National Institute of Advanced Industrial Science and Technology;

    Tokyo Women’s Medical University / Waseda University Joint Institution for Advanced Biomedical Sciences;

    Japanese Red Cross Society, Blood Program;

    University of Tokyo Tissue Bank;

    Ueda-seitai Co. Ltd.;

    Ueda-seitai Co. Ltd.;

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