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Optimization of Cell Suspension Media for Use in a Cytometric Neuro-Catheter

机译:细胞悬浮介质用于细胞术神经导管的优化

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Parkinson's disease is a neurodegenerative disorder that impairs motor and speech skills due to the degeneration of dopamine-producing cells in the substantia nigra. It is anticipated that future treatments will involve replacing the degenerated cells with cultivated dopamine-producing multipotent cells. Previous studies involving these treatments encountered complications due to death of the majority of injected cells. It is currently unknown if cell death occurs during delivery or after injection. A neuro-catheter has been designed that is capable of taking fluorescence-based cytometric measurements using fiber optic probes. This device will allow researchers, and eventually clinicians, to quantify the number of viable cells delivered. During delivery, a uniform distribution of cells is essential to ensure the viability of the delivered cells. In order to accomplish this, cell suspension materials are required. In order to investigate the effects of suspension materials on cell delivery, a cuvette experiment was designed and implemented. The goal of this experiment was to determine the extent of cell settling issues for several different suspension materials. The 3RT1 rat gliomal cell line was used as a model for neural cell delivery. The viability of the cells was also examined in each of the given suspension materials over a two hour period. Of the tested materials, 1% methyl cellulose in phosphate buffer saline was determined to be the best material for uniform cell delivery.
机译:帕金森病是一种神经变性疾病,由于在实质性NIGRA中产生多巴胺的细胞的退化,损害电机和言语技能。预计未来的治疗将涉及用培养的多巴胺的多电不电量细胞替代退化细胞。以往涉及这些治疗的研究遇到了大多数注射细胞死亡所遇到的并发症。它目前未知,如果在递送期间或注射后发生细胞死亡。设计了一种神经导管,其能够使用光纤探针采用基于​​荧光的细胞仪测量。该设备将允许研究人员,最终临床医生,量化可行的细胞数量。在递送期间,细胞的均匀分布对于确保递送的细胞的活力至关重要。为了实现这一点,需要细胞悬浮材料。为了探讨悬浮材料对细胞递送的影响,设计并实施了比色皿实验。该实验的目标是确定几种不同悬浮材料的细胞沉降问题的程度。 3RT1大鼠胶质细胞系用作神经细胞递送的模型。在两个小时内,还在给定的悬浮材料中的每一个中检查细胞的活力。在测试的材料中,测定磷酸盐缓冲盐中的1%甲基纤维素是均匀细胞递送的最佳材料。

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