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Changes of collagen ultrastructure in breast cancer tissue determined by second-harmonic generation double Stokes-Mueller polarimetric microscopy

机译:二次谐波第二次Stokes-Mueller偏振显微镜测定乳腺癌组织中胶原超微结构的变化

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摘要

Second-harmonic generation (SHG) double Stokes-Mueller polarimetric microscopy is applied to study the alteration of collagen ultrastructure in a tissue microarray containing three pathological human breast cancer types with differently overexpressed estrogen receptor (ER), progesterone receptor (PgR), and human epidermal growth factor receptor 2 (HER2). Kleinman symmetry is experimentally validated in breast tissue for 1028 nm laser wavelength and it has been shown that measurements with only linearly polarized incoming and outgoing states can determine molecular nonlinear susceptibility tensor component ratio, average in-plane orientation of collagen fibers and degree of linear polarization of SHG. Increase in the susceptibility ratio for ER, PgR, HER2 positive cases, reveals ultrastructural changes in the collagen fibers while the susceptibility ratio increase and decrease in degree of linear polarization for ER and PgR positive cases indicate alteration of the ultrastructure and increased disorder of the collagen fibers within each focal volume. The study demonstrates a potential use of polarimetric SHG microscopy for collagen characterization and cancer diagnostics.
机译:次谐波世代(SHG)双Stokes-Mueller偏光显微镜用于研究组织微阵列中胶原超微结构的变化,该组织微阵列包含三种病理类型的人类乳腺癌,雌激素受体(ER),孕激素受体(PgR)和过表达程度不同表皮生长因子受体2(HER2)。 Kleinman对称性在1028 nm激光波长的乳腺组织中得到了实验验证,并且已经表明,仅使用线性偏振入射和出射状态进行的测量才能确定分子非线性磁化率张量分量比,胶原纤维的平均面内取向和线性偏振度SHG。 ER,PgR,HER2阳性病例的磁化率增加,表明胶原纤维的超微结构改变,而ER和PgR阳性病例的磁化率增加和线性极化程度的降低表明胶原超微结构的改变和胶原紊乱的增加每个焦点体积内的纤维。这项研究证明了偏振SHG显微镜在胶原蛋白表征和癌症诊断中的潜在用途。

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