首页> 外文会议>Conference on Multiphoton Microscopy in the Biomedical Sciences Ⅱ Jan 20-22, 2002 San Jose, USA >Analysis of microparticle penetration into human and porcine skin: non-invasive imaging with multiphoton excitation microscopy
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Analysis of microparticle penetration into human and porcine skin: non-invasive imaging with multiphoton excitation microscopy

机译:微粒穿透人和猪皮肤的分析:多光子激发显微镜的无创成像

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At the University of Oxford and PowderJect Pharmaceuticals plc, a unique form of needle-free injection technology has been developed. Powdered vaccines and drugs in micro-particle form are accelerated in a high-speed gas flow to sufficient velocity to enter the skin, subsequently achieving a pharmaceutical effect. To optimize the delivery of vaccines and drugs with this method a detailed understanding of the interactive processes that occur between the micro-particles and the skin is necessary. Investigations to date of micro-particle delivery into excised human and animal tissue have involved image analyses of histology sections. In the present study, a series of investigations were conducted on excised human and porcine skin using the technique of Multi-Photon fluorescence excitation Microscopy (MPM) to image particles and skin structures post-penetration. Micro-particles of various size and composition were imaged with infrared laser excitation. Three-dimensional images of stratum corneum and epidermal cell deformation due to micro-particle penetration were obtained. Measurements of micro-particle penetration depth taken from z-scan image stacks were used to successfully quantify micro-particle distribution within the skin, without invasively disrupting the skin target. This study has shown that MPM has great potential for the non-invasive imaging of particle-skin interactive processes that occur with the transdermal delivery of powdered micro-particle vaccines and drugs.
机译:牛津大学和PowderJect制药公司开发了一种独特形式的无针注射技术。粉末状的疫苗和药物以高速气流加速至足以进入皮肤的速度,从而达到药物作用。为了使用这种方法优化疫苗和药物的输送,需要对微粒与皮肤之间相互作用过程的详细了解。迄今为止,有关将微粒递送到切除的人和动物组织中的研究涉及组织学切片的图像分析。在本研究中,使用多光子荧光激发显微镜(MPM)技术对切除的人和猪皮肤进行了一系列研究,以对穿透后的颗粒和皮肤结构进行成像。用红外激光激发对各种尺寸和组成的微粒成像。获得了角质层的三维图像和由于微粒穿透导致的表皮细胞变形。从z扫描图像堆栈获取的微粒穿透深度的测量用于成功量化皮肤内微粒的分布,而不会侵入性地破坏皮肤目标。这项研究表明,MPM对于通过粉末状微粒疫苗和药物的透皮给药发生的颗粒-皮肤相互作用过程具有巨大的潜力。

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