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Bonding of human meniscal and articular cartilage with photoactive 18-naphthalimide dyes

机译:用光活性18-萘胺染料粘接人半月板和关节软骨

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This study focused on meniscal cartilage repair by using the laser-activated photoactive 1,8- naphthalimide dye N,N'-bis-$LFBC@6-$LB@2-(2-(2- aminoethoxy)ethoxy)ethoxyethyl$RB@amino-1H-benz (de)isoquinolin-1,3(2H)-dion-2- yl$RTBC@-1,11-diamino-3,6,9-trioxaundecane. Harvested cadaveric human menisci were debrided and carved into strips 1 mm thick, 10 mm long, and 3 mm wide. Each strip was divided into two flaps, the surface painted with photoactive dye, the painted surfaces overlapped, the sample wrapped in Saran film, and the composite sandwiched between two glass slides at a pressure of approximately 3 kg/cm$+2$/. The sample then was transilluminated by argon ion laser light of 457.9-nm wavelength at a power density of 200 mW/cm$+2$/ with exposure times up to 5 h (3902 J/cm$+2$/ energy density). Essentially, the same procedures were performed for human femoral articular cartilage samples. Control experiments were conducted with laser irradiation alone and with dye alone. All the specimens were stored in isotonic saline solution for 2 h after irradiation to ensure hydration. The bond shear-strength was then tested and samples prepared for optical and electron transmission microscopy. Shear strength values of up to 1.8 kg/cm$+2$/ for meniscal tissues and 1.2 kg/cm$+2$/ for articular cartilaginous tissues were obtained for exposures of 3902 J/cm$+2$/. Shear strength values of approximately 0.9 kg/cm$+2$/ and 0.4 kg/cm$+2$/, respectively, for meniscus and cartilage were obtained with 459 J/cm$+2$/ exposure. Dye- and light-only controls exhibited 0 kg/cm$+2$/ shear strength values. Microscopy revealed close contact at the bonded surface in the laser-activated, dye-treated-specimens. This study shows that the laser-activated photoactive dyes have the capability of athermally bonding the meniscal and articular cartilage surfaces.
机译:本研究专注于使用激光活化的光活性1,8-萘胺染料N,N'-BIS-$ LFBC @ 6- $ LB @ 2-(2-(2-氨基乙氧基)乙氧基)乙氧基乙基$ RB @氨基-1H-苯茨(DE)异喹啉-1,3(2H) - DION-2-YL $ RTBC @ -1,11-偶数-3,6,9-三氧合烷。收获的尸体人体肿块肿块被拆卸,雕刻成1毫米厚,10毫米长,宽3毫米。将每个条带分为两个襟翼,表面涂有光活性染料,涂漆表面重叠,样品包裹在砂胶膜中,并将复合材料夹在两个玻璃载玻片之间,压力约为3kg / cm $ + 2 $ /。然后通过457.9-nm波长的氩离子激光以200mW / cm $ + 2 $ / 2美元/曝光时间的电力密度通过氩离子激光进行过滤,高达5小时(3902 j / cm $ + 2 $ /能量密度)。基本上,对人股关节软骨样品进行了相同的程序。通过单独的激光照射和单独使用染料进行控制实验。照射后,将所有标本储存在等渗盐水溶液中2小时,以确保水合。然后测试粘合剪切强度和用于光学和电子传输显微镜的样品。为3902 J / cm $ + 2 $ + 2 $ + 2 $ / 2美元的剪切强度值高达1.8千克/厘米$ + 2 $ / 12 kg / cm $ + 2 $ / 4.2 kg / cm $ + 2 $ /折衷的软骨组织。剪切强度值分别为0.9千克/厘米至2美元/和0.4千克/厘米$ + 2 $ /,用于弯月面和软骨,有459 j / cm $ + 2 $ /曝光。仅染色和灯光控制呈现0千克/厘米$ + 2 $ /剪切强度值。显微镜检查在激光活化的染料处理样本中的粘合表面上显示紧密接触。该研究表明激光活化的光活性染料具有半月板和关节软骨表面的动脉键合的能力。

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