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Low-dose photodynamic therapy increases endothelial cell proliferation and VEGF expression in nude mice brain
Authors:Xuepeng Zhang  Feng Jiang  Zheng Gang Zhang  Steven N Kalkanis  Xin Hong  Ana C deCarvalho  Jieli Chen  Hongyan Yang  Adam M Robin  Michael Chopp
Institution:(1) Neurology Department, Henry Ford Health Sciences Center, Henry Ford Hospital, 2799 West Grand Blvd., Detroit, MI 48202, USA;(2) Physics Department, Oakland University, Rochester, MI, USA;(3) Neurosurgery Department, Henry Ford Health Sciences Center, Henry Ford Hospital, Detroit, MI, USA;(4) Institue for Neuroscience, University of Texas at Austin, Austin, TX, USA
Abstract:We tested whether low-dose photodynamic therapy (PDT) induces an angiogenic response in the normal brain of nude mice (n=20). Normal brains of nude mice were subjected to PDT at low doses (Photofrin: 2 mg/kg; optical: 2 J/cm2 and 4 J/cm2). BrdU (50 mg/kg) was injected (intraperitoneally, i.p.) daily from PDT treatment to sacrifice (1 and 2 weeks after PDT). Laser scanning confocal microscopy, immunohistochemistry, and immunofluorescence staining were performed to assay angiogenic response. Morphological results show no significant tissue damage induced by PDT and two- and three-dimensional image analyses revealed no significant difference in vascular structure between the areas of exposure to PDT and contralateral areas in all mice. However, the number of BrdU immunoreactive cells were significantly increased in the areas of PDT treatment compared with contralateral hemisphere in both groups, and the number of BrdU-positive cells increased in a PDT-dose-dependent manner. Furthermore, immunohistochemical data indicate that PDT at these low doses significantly induces the expression of the vascular endothelial growth factor (VEGF) in PDT-treated regions in the 1-week group, but not in the 2-week group. These data indicate that low-dose PDT results in increased VEGF expression and endothelial cell proliferation in normal brains.
Keywords:Photodynamic therapy  Endothelial cell  Vascular endothelial growth factor  Angiogenesis  Glioma
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