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Use of flow cytometry to assess chondrocyte viability after laser reshaping of cartilage

机译:激光重塑软骨后使用流式细胞术评估软骨细胞活力

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Abstract: Lasers have been shown to cause permanent shape change in cartilage via photothermally induced mechanical stress relaxation. While the biophysical properties of cartilage during laser irradiation have been studied, tissue viability following laser irradiation has not been fully characterized. In this study, cell viability staining and flow cytometry were used to determine chondrocyte viability following photothermal stress relaxation. Porcine septal cartilage slabs (10 $MUL 25 $MUL 1.5 mm) were irradiated with light from a Nd:YAG laser ($lambda equals 1.32 micrometer, 25 W/cm$+2$/) while surface temperature, stress relaxation, and diffuse reflectance were recorded. Each slab received one, two, or three laser exposures (respective exposure times of 6.7, 7.2, 10 s), determined from measurements of diffuse reflectance, which correlate with mechanical stress relaxation. Irradiated samples were then divided into two groups analyzed immediately and at five days following laser exposure (the latter group was maintained in culture). Chondrocytes were isolated following serial enzymatic digestion with hyaluronidase, protease, and collagenase II for a total of 17 hours. Chondrocytes were then stained using SYTO$+R$//DEAD Red$+TM$/ (Molecular Probes; Eugene, OR) wherein live cells stained green (530 nm) and dead cells stained red (630 nm) when excited at 488 nm. A flow cytometer (FACScan, Becton Dickinson, Franklin Lakes, NJ) was then used to detect differential cell fluorescence; size; granularity; and the number of live cells, dead cells, and post irradiation debris in each treatment population. Nearly 60% of chondrocytes from reshaped cartilage samples isolated shortly after irradiation, were viable as determined using flow cytometry while non- irradiated controls were 100 percent viable. Specimens irradiated two or three times with the laser demonstrated increasing amounts of cellular debris along with a reduction in chondrocyte viability: 31 percent following two laser exposures, and 16 percent after three laser exposures. In those samples maintained in culture medium and assayed 5 days after irradiation, viability was reduced by 28 to 88 percent, with the least amount of deterioration in untreated and singly irradiated samples. Functional fluorescent dyes combined with flow cytometric analysis successfully determines the effect of laser irradiation on the viability of reshaped cartilage. The flow cytometric approach to viability is accurate, fast, and can handle large sample numbers and sizes. Most importantly, since the method reveals that a single laser exposure of 6.7 s (sufficient for sustained shape change) causes less than 40 percent acute reduction in viability, photothermal reshaping of cartilage may be further researched as a clinical alternative to conventional techniques. !10
机译:摘要:已经证明激光通过光热诱导的机械应力松弛引起软骨的永久性形状变化。虽然已经研究了激光照射过程中软骨的生物物理特性,但激光照射后的组织活力尚未得到充分表征。在这项研究中,细胞活力染色和流式细胞仪用于确定光热应力松弛后的软骨细胞活力。用Nd:YAG激光(λ等于1.32微米,25 W / cm $ + 2 $ /)照射猪中隔软骨板(10 $ MUL 25 $ MUL 1.5 mm),同时表面温度,应力松弛和扩散记录反射率。每块平板接受一,二或三次激光曝光(分别为6.7、7.2、10 s的曝光时间),这是根据漫反射率的测量确定的,这与机械应力松弛相关。然后将辐照后的样品立即分为两组,并在激光暴露后五天进行分析(后一组保持培养)。用透明质酸酶,蛋白酶和胶原酶II进行系列酶消化后,分离软骨细胞共17个小时。然后使用SYTO $ + R $ // DEAD Red $ + TM $ /(Molecular Probes; Eugene,OR)对软骨细胞染色,其中当在488 nm激发时,活细胞染成绿色(530 nm),死细胞染成红色(630 nm)。 。然后使用流式细胞仪(FACScan,Becton Dickinson,Franklin Lakes,NJ)检测细胞荧光差异。尺寸;粒度;以及每个治疗人群中活细胞,死细胞和放射后碎片的数量。如使用流式细胞仪测定的,在放射后不久从重塑的软骨样品中分离出的软骨细胞中,近60%的细胞是可行的,而未辐照的对照细胞则是100%可行的。用激光辐照两次或三次的标本显示,细胞碎片的数量增加,软骨细胞活力降低:两次激光照射后为31%,三次激光照射后为16%。在那些保存在培养基中并在辐照后5天进行测定的样品中,活力降低了28%至88%,未处理的和单独辐照的样品中的变质最少。功能性荧光染料与流式细胞仪分析相结合成功地确定了激光照射对重塑软骨活力的影响。流式细胞术的生存能力是准确,快速的,并且可以处理大量的样本和大小。最重要的是,由于该方法揭示了一次6.7 s的激光照射(足以保持持续的形状变化)会导致活力急剧下降不到40%,因此可以进一步研究软骨的光热整形作为传统技术的临床替代方法。 !10

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