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Formation of an Artificial Blood Vessel: Adhesion Force Measurements with Optical Tweezers

机译:形成人工血管:用光学镊子粘附力测量

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We are investigating the formation of a tissue capsule around a foreign body. This tissue capsule can be used as an autologous graft for the replacement of diseased blood vessels or for bypass surgery. The graft is grown in the peritoneal cavity of the recipient and the formation starts with the adhesion of cells to the foreign body. We identify the cell type and measure the adhesion of these cells to foreign materials using optical tweezers. Cell adhesion to macroscopic samples and microspheres is investigated. No difference in the adhesion force was measurable for polyethylene, silicon and Tygon on a scale accessible to optical tweezers. The density of adherent cells was found to vary strongly, being highest on polyethylene. The mean rupture forces for cell-microsphere adhesion ranged from 24 to 39 pN and changed upon preadsorption of bovine serum albumin. For plain microspheres, the highest mean rupture force was found for PMMA, which also showed the highest adhesion probability for the cell-microsphere interaction.
机译:我们正在研究在异物周围形成组织胶囊。该组织胶囊可用作替代患病血管或旁路手术的自体移植物。移植物在受体的腹膜腔中生长,并且形成从细胞的粘附到异物。我们使用光学镊子识别细胞类型并测量这些细胞对外来物质的粘附性。研究了对宏观样品和微球的细胞粘附。粘附力的差异对于聚乙烯,硅和Tygon可用于光学镊子的等级。发现粘附细胞的密度强烈变化,在聚乙烯上是最高的。用于细胞微球粘合的平均破裂力范围为24至39pn,并在牛血清白蛋白的预装中改变。对于普通的微球,发现PMMA的最高平均破裂力,该PMMA也显示了细胞微球相互作用的最高粘附性概率。

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