Campbell Kirby R, Campagnola Paul J
Department of Biomedical Engineering, University of Wisconsin-Madison , 1550 Engineering Drive, Madison, Wisconsin 53706, United States.
J Phys Chem B. 2017 Mar 2;121(8):1749-1757. doi: 10.1021/acs.jpcb.6b06822. Epub 2017 Feb 16.
Extensive remodeling of the extracellular matrix (ECM) occurs in many epithelial cancers. For example, in ovarian cancer, upregulation of collagen isoform type III has been linked to invasive forms of the disease, and this change may be a potential biomarker. To examine this possibility, we implemented wavelength-dependent second harmonic generation circular dichroism (SHG-CD) imaging microscopy to quantitatively determine changes in chirality in ECM models comprised of different Col I/Col III composition. In these models, Col III was varied between 0 and 40%, and we found increasing Col III results in reduced net chirality, consistent with structural biology studies of Col I and III in tissues where the isoforms comingle in the same fibrils. We further examined the wavelength dependence of the SHG-CD to both optimize the response and gain insight into the underlying mechanism. We found using shorter SHG excitation wavelengths resulted in increased SHG-CD sensitivity, where this is consistent with the electric-dipole-coupled oscillator model suggested previously for the nonlinear chirality response from thin films. Moreover, the sensitivity is further consistent with the wavelength dependency of SHG intensity fit to a two-state model of the two-photon absorption in collagen. We also provide experimental calibration protocols to implement the SHG-CD modality on a laser scanning microscope. We last suggest that the technique has broad applicability in probing a wide range of diseased states with changes in collagen molecular structure.
细胞外基质(ECM)的广泛重塑发生在许多上皮性癌症中。例如,在卵巢癌中,III型胶原异构体的上调与该疾病的侵袭性形式有关,这种变化可能是一种潜在的生物标志物。为了研究这种可能性,我们采用了波长依赖性二次谐波产生圆二色性(SHG-CD)成像显微镜来定量确定由不同Col I/Col III组成的ECM模型中手性的变化。在这些模型中,Col III的含量在0%至40%之间变化,我们发现随着Col III含量的增加,净手性降低,这与在组织中Col I和III的结构生物学研究一致,在这些组织中,异构体在同一纤维中共存。我们进一步研究了SHG-CD的波长依赖性,以优化响应并深入了解其潜在机制。我们发现使用较短的SHG激发波长会提高SHG-CD的灵敏度,这与先前针对薄膜非线性手性响应提出的电偶极耦合振荡器模型一致。此外,灵敏度进一步与SHG强度的波长依赖性一致,该强度符合胶原中双光子吸收的双态模型。我们还提供了在激光扫描显微镜上实施SHG-CD模式的实验校准方案。最后,我们认为该技术在探测胶原分子结构发生变化的广泛疾病状态方面具有广泛的适用性。