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Development of a low-pressure microtargeting biolistic device for transfection of retinal explants

机译:用于视网膜外植体转染的低压微靶向生物枪装置的开发

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摘要

Biolistic transfection offers a key experimental method for molecular perturbation of bona fide, postmitotic neurons within their native local environment in explanted tissues. However, current, commercially available biolistic devices unavoidably deliver traumatic injury to surface layers of explanted tissues because of helium co-emission with DNA-coated gold particles during the shooting process. This makes such methods unsuitable for use with the delicate tissue layers of the mammalian retina. Here, we report the development of a novel and inexpensive microtargeting biolistic device that avoids the trauma associated with conventional entrainment biolistic methods, permitting rapid and efficient transfection of retinal ganglion cells in the adult mammalian retina without significant damage to their local microenvironment. By using low helium inflow pressures and vacuum diversion to eliminate helium emission during the transfection process, we found that the current method allowed efficient transfection as well as morphological and functional preservation of retinal ganglion cells and their local glial microenvironment in transfected retinal explants from adult rats. The use of an ethanol-gold suspension further supported rapid and extended shooting sequences and reduced shot-to-shot variation during transfection compared to existing tubing-based devices. This new biolistic device should be useful not only in the retina, but also in other tissue explant settings in which preservation of local cellular and tissue integrity is a priority.
机译:基因枪转染提供了一种在外来组织的自然局部环境中对善意的有丝分裂后神经元进行分子扰动的关键实验方法。然而,由于氦气在发射过程中与涂有DNA的金颗粒共同发射,当前的市售生物弹药不可避免地会对移植组织的表面层造成创伤性伤害。这使得这种方法不适合用于哺乳动物视网膜的脆弱组织层。在这里,我们报告了一种新型且廉价的微靶向生物弹药设备的开发,该设备避免了与传统的夹带生物弹药方法相关的创伤,允许在成年哺乳动物视网膜中快速有效地转染视网膜神经节细胞,而不会对其局部微环境造成重大损害。通过在转染过程中使用低氦气流入压力和真空转移消除氦气排放,我们发现当前方法允许在成年大鼠转染的视网膜外植体中高效转染以及视网膜神经节细胞及其局部胶质微环境的有效形态学和功能保存。 。与现有的基于输液管的设备相比,乙醇-金悬浮液的使用进一步支持了快速和扩展的拍摄顺序,并减少了转染过程中镜头之间的差异。这种新的生物弹装置不仅应在视网膜中有用,而且在其他组织外植体设置中也应有用,在这些设置中,优先保留局部细胞和组织的完整性。

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