首页> 外文会议>Lasers in Surgery: Advanced Characterization, Therapeutics, and Systems IX >Angiogenic response in the chick chorioallantoic membrane model to laser-irradiated cartilage
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Angiogenic response in the chick chorioallantoic membrane model to laser-irradiated cartilage

机译:鸡绒膜尿囊膜模型对激光辐照软骨的血管生成反应

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Abstract: Laser radiation can be used to reshape cartilage grafts via thermally mediated stress relaxation. While several studies have addressed the biophysical changes accompanying reshaping, cartilage viability following laser irradiation has not been extensively investigated. The objective of this study was to determine the extent of angioinvasion of irradiated cartilage explant placed onto the chick chorioallantoic membrane (CAM) model. Angioinvasion of the tissue matrix does not occur in viable cartilage tissue, whereas denatured tissue is readily vasculairzed and/or resorbed in vivo. Porcine septal cartilage specimens were removed from freshly sacrificed animals and divided into three protocols consisting of an untreated control, cartilage boiled in saline solution for one hour, and a laser irradiated group. Following laser irradiation, tissue specimens were washed in antibiotic solution sand cut into small cubes. The cartilage specimens were placed onto the surface of twenty CAMs, six of which, survived the entire 14 days incubation period. After incubation, the membranes and specimens were fixed in situ with formaldehyde, an then photographed using a dissection microscope. Cartilage specimens were prepared for histologic evaluation and stained with hematoxylin and eosin. Examination with a dissecting microscope showed no obvious vascular invasion of the cartilage or loss of gross tissue integrity in both the control and laser treated groups. In contrast, boiled specimens appeared to be partially or completely resorbed by the surrounding CAM vascular network. These gross findings were also confirmed by histological examination. In summary, our preliminary studies suggest that cartilage specimens treated using the present laser parameters remain resistant to angioinvasion or metabolism by the CAM, whereas boiled tissue undergoes resorption. Clinically, uncontrolled heating may result in total resorption of cartilage with catastrophic sequelae such as infection, necrosis, and total graft resorption. This study underscores the importance of preserving cartilage viability during laser surgical procedures relying on a photothermal mechanism. !18
机译:摘要:激光辐射可用于通过热介导的应力松弛来重塑软骨移植物。虽然一些研究已经解决了伴随塑形的生物物理变化,但是激光辐照后的软骨活力尚未得到广泛研究。这项研究的目的是确定放置在鸡绒膜尿囊膜(CAM)模型上的辐照软骨外植体的血管侵犯程度。在活的软骨组织中不会发生组织基质的血管浸润,而变性的组织在体内易于血管化和/或吸收。从新鲜处死的动物中取出猪中隔软骨标本,分为三个方案,包括未处理的对照,在盐溶液中煮沸一小时的软骨和激光照射组。激光照射后,将组织标本在切成小方块的抗生素溶液砂中洗涤。将软骨标本放置在20个CAM的表面上,其中六个在整个14天的温育期中幸存下来。孵育后,将膜和标本用甲醛原位固定,然后使用解剖显微镜拍照。准备软骨标本进行组织学评估,并用苏木精和曙红染色。用解剖显微镜检查在对照组和激光治疗组中均未发现明显的软骨血管侵犯或总体组织完整性丧失。相反,煮沸的标本似乎被周围的CAM血管网络部分或完全吸收。这些总体发现也通过组织学检查得到证实。总而言之,我们的初步研究表明,使用当前激光参数处理的软骨标本仍能抵抗CAM引起的血管浸润或新陈代谢,而煮沸的组织则会吸收。临床上,不受控制的加热可能导致软骨完全吸收,并伴有灾难性后遗症,例如感染,坏死和移植物完全吸收。这项研究强调了依靠光热机制在激光手术过程中保持软骨活力的重要性。 !18

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