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Biomolecular profiling of metastatic prostate cancer cells in bone marrow tissue using FTIR microspectroscopy: a pilot study

机译:FTIR显微术对骨髓组织中转移性前列腺癌细胞的生物分子谱分析:一项初步研究

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摘要

Prostate cancer (CaP) cells preferentially metastasise to the bone marrow, a microenvironment that plays a substantial role in the sustenance and progression of the CaP tumour. Here we use a combination of FTIR microspectroscopy and histological stains to increase molecular specificity and probe the biochemistry of metastatic CaP cells in bone marrow tissue derived from a limited source of paraffin-embedded biopsies of different patients. This provides distinction between the following dominant metabolic processes driving the proliferation of the metastatic cells in each of these biopsies: glycerophospholipid synthesis from triacylglyceride, available from surrounding adipocytes, in specimen 1, through significantly high (p ≤ 0.05) carbohydrate (8.23 ± 1.44 cm?1), phosphate (6.13 ± 1.5 cm?1) and lipid hydrocarbon (24.14 ± 5.9 cm?1) signals compared with the organ-confined CaP control (OC CaP), together with vacuolation of cell cytoplasm; glycolipid synthesis in specimen 2, through significantly high (p ≤ 0.05) carbohydrate (5.51 ± 0.04 cm?1) and high lipid hydrocarbon (17.91 ± 2.3 cm?1) compared with OC CaP, together with positive diastase-digested periodic acid Schiff staining in the majority of metastatic CaP cells; glycolysis in specimen 3, though significantly high (p ≤ 0.05) carbohydrate (8.86 ± 1.78 cm?1) and significantly lower (p ≤ 0.05) lipid hydrocarbon (11.67 ± 0.4 cm?1) than OC CaP, together with negative diastase-digested periodic acid Schiff staining in the majority of metastatic CaP cells. Detailed understanding of the biochemistry underpinning the proliferation of tumour cells at metastatic sites may help towards refining chemotherapeutic treatment.
机译:前列腺癌细胞(CaP)优先转移至骨髓,这种微环境在CaP肿瘤的维持和发展中起着重要作用。在这里,我们结合使用FTIR显微技术和组织学染色剂来增加分子特异性,并探查骨髓组织中转移性CaP细胞的生物化学,这些细胞来源于不同患者的石蜡包埋的活组织检查的有限来源。这提供了以下驱动这些活检组织中转移细胞增殖的主要代谢过程之间的区别:标本1中的三酰基甘油酯(可从周围的脂肪细胞中获得)从甘油三酸酯合成到显着高(p≤0.05)的碳水化合物(8.23±1.44 cm) ?1 ),磷酸盐(6.13±1.5 cm?1 )和脂质烃(24.14±5.9 cm?1 )信号与器官限制CaP对照(OC CaP)相比,连同细胞质的空泡化;与OC CaP相比,通过显着高(p≤0.05)的碳水化合物(5.51±0.04 cm?1 )和高脂质烃(17.91±2.3 cm?1 )合成了2号样品中的糖脂,以及在大多数转移性CaP细胞中,消化酶消化的高碘酸Schiff阳性;样品3中的糖酵解作用,尽管碳水化合物(8.86±1.78 cm?1 )明显较高(p≤0.05),脂质烃(11.67±0.4 cm?1 )显着降低(p≤0.05)(OC)在大多数转移性CaP细胞中,CaP加上阴性的​​消化酶消化的高碘酸Schiff染色。详细了解在转移部位肿瘤细胞增殖的生化基础可能有助于改善化学治疗方法。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2007年第5期|1621-1631|共11页
  • 作者单位

    School of Chemical Engineering and Analytical Science The University of Manchester P.O. Box 88 Manchester M60 1QD UK;

    School of Chemical Engineering and Analytical Science The University of Manchester P.O. Box 88 Manchester M60 1QD UK;

    School of Chemical Engineering and Analytical Science The University of Manchester P.O. Box 88 Manchester M60 1QD UK;

    School of Chemical Engineering and Analytical Science The University of Manchester P.O. Box 88 Manchester M60 1QD UK;

    Histopathology Department Christie Hospital NHS Trust Manchester M20 4BX UK;

    Histopathology Department Christie Hospital NHS Trust Manchester M20 4BX UK;

    ProMPT Genito Urinary Cancer Research Group The Paterson Institute for Cancer Research The University of Manchester Christie Hospital NHS Trust Wilmslow Road Manchester M20 4BX UK;

    ProMPT Genito Urinary Cancer Research Group The Paterson Institute for Cancer Research The University of Manchester Christie Hospital NHS Trust Wilmslow Road Manchester M20 4BX UK;

    ProMPT Genito Urinary Cancer Research Group The Paterson Institute for Cancer Research The University of Manchester Christie Hospital NHS Trust Wilmslow Road Manchester M20 4BX UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Prostate cancer; Infrared microspectroscopy; Metastases; Lipid;

    机译:前列腺癌;红外光谱;转移;脂质;

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