首页> 外文会议>Conference on Photonic Mechanisms for Low-Light Therapy >Increased expression of mitochondrial benzodiazepine receptors following low-level light treatment facilitates enhanced protoporphyrin IX production in glioma-derived cells in vitro
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Increased expression of mitochondrial benzodiazepine receptors following low-level light treatment facilitates enhanced protoporphyrin IX production in glioma-derived cells in vitro

机译:低水平轻微处理后的线粒体苯并二氮卓受体的表达增加有助于在体外增强胶质瘤衍生细胞中的增强的原子卟啉IX

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This study investigates whether low level light treatment (LLLT) can enhance the expression of Peripheral-type mitochondrial benzodiazepine receptors (PBRs) on the glioma-derived tumour cell line, CNS-1, and by doing so promote the synthesis of protoporphyrin IX (PpIX) and increase the photodynamic therapy (PDT)-induced cell kill using 5-aminolevulinic acid (ALA). The endogenous photosensitizer, (PpIX) and related metabolites including coproporphyrin III are known to traffic via the PBRs on the outer mitochondrial membrane on their passage into or out of the mitochondria. Astrocyte-derived cells within the brain express PBRs, while neurons express the central-type of benzodiazepine receptor. CNS-1 cells were exposed to a range of differing low-level light protocols immediately prior to PDT. LLLT involved using broad-spectrum light or monochromatic laser light specific to 635 or 905 nm wavelength. Cells (5&mgr;10~5) were exposed to a range of LLLT doses (0, 1 or 5 J/cm~2) using a fixed intensity of 10 mW/cm~2 and subsequently harvested for cell viability, immunofluorescence or western blot analysis of PBR expression. The amount of PpIX within the cells was determined using chemical extraction techniques. Results confirm the induction of PBR following LLLT is dependent on the dose and wavelength of light used. Broadspectrum light provided the greatest cell kill following PDT, although LLLT with 635 nm or 905 nm also increased cell kill as compared to PDT alone. All LLLT regimens increased PBR expression compared to controls with corresponding increases in PpIX production. These data suggest that by selectively increasing PBR expression in tumour cells, LLLT may facilitate enhanced cell kill using ALA-PDT without damaging surrounding normal brain.
机译:本研究研究了低水平光处理(LLLT)是否可以增强外周型线粒体苯二氮卓受体(PBR)对胶质瘤衍生的肿瘤细胞系,CNS-1的表达,并通过这样做促进原因卟啉IX的合成(PPIX )通过5-氨基乙酰丙烯酸(ALA)增加光动力治疗(PDT)诱导的细胞杀伤。内源性光敏剂,(PPIX)和相关代谢物,包括群卟啉III,通过外部线粒体膜上的PBR在它们的通过进出线粒体上而已知流量。脑表达PBR内的星形胶质细胞衍生细胞,而神经元表达苯二氮卓受体的中心类型。 CNS-1细胞在PDT之前立即暴露于一系列不同的低级光协议。 LLLT参与使用特定于635或905nm波长的广谱光或单色激光。使用固定强度为10mW / cm〜2的固定强度,将细胞(5&mgr; 10〜5)暴露于LLLT剂量(0,1或5J / cm〜2)的范围内,随后收获细胞活力,免疫荧光或Western印迹PBR表达分析。使用化学提取技术测定细胞内的PPIX的量。结果证实,LLLT后PBR的诱导取决于所用光的剂量和波长。宽谱光线提供了PDT之后最大的细胞杀戮,尽管与单独的PDT相比,具有635nm或905nm的Lllt也增加了细胞杀灭。与PPIX生产相应增加的对照相比,所有LLLT方案增加了PBR表达。这些数据表明,通过选择性地增加肿瘤细胞中的PBR表达,LLLT可以促进使用ALA-PDT的增强细胞杀死,而不会损坏普通脑。

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