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Ann Biomed Eng. 2014 Sep;42(9):1791-805. doi: 10.1007/s10439-014-1019-3. Epub 2014 May 10.
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Angiogenic responses are enhanced in mechanically and microscopically characterized, microbial transglutaminase crosslinked collagen matrices with increased stiffness.在机械和微观特征上增强了血管生成反应,具有更高刚性的微生物转谷氨酰胺酶交联胶原基质。
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Measuring single-cell gene expression dynamics in bacteria using fluorescence time-lapse microscopy.使用荧光延时显微镜测量细菌中单细胞基因表达的动态变化。
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Cornea microstructure and mechanical responses measured with nonlinear optical and optical coherence microscopy using sub-10-fs pulses.使用亚10飞秒脉冲通过非线性光学和光学相干显微镜测量角膜微观结构和力学响应。
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Direct comparisons of the morphology, migration, cell adhesions, and actin cytoskeleton of fibroblasts in four different three-dimensional extracellular matrices.直接比较四种不同三维细胞外基质中成纤维细胞的形态、迁移、细胞黏附及肌动蛋白细胞骨架。
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Cellular imaging: Taking a long, hard look.细胞成像:进行全面、深入的观察。
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Enabling tools for engineering collagenous tissues integrating bioreactors, intravital imaging, and biomechanical modeling.用于工程化胶原组织的工具,包括生物反应器、活体成像和生物力学建模。
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Optical coherence microscopy in scattering media.散射介质中的光学相干显微镜术。
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Cell motility and mechanics in three-dimensional collagen matrices.细胞在三维胶原基质中的迁移和力学性质。
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Characterization of engineered tissue development under biaxial stretch using nonlinear optical microscopy.使用非线性光学显微镜对双轴拉伸下工程组织发育的表征。
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采用集成非线性光学显微镜-光相干显微镜系统测量动态多组分工程组织重排和基质沉积。

Dynamic multicomponent engineered tissue reorganization and matrix deposition measured with an integrated nonlinear optical microscopy-optical coherence microscopy system.

机构信息

Texas A&M University, Department of Biomedical Engineering, 5045 Emerging Technologies Building, College Station, Texas 77843.

Texas A&M Health Science Center, Department of Molecular and Cellular Medicine, 142 Reynolds Medical Building, College Station, Texas 77843.

出版信息

J Biomed Opt. 2014 Mar;19(3):36014. doi: 10.1117/1.JBO.19.3.036014.

DOI:10.1117/1.JBO.19.3.036014
PMID:24647972
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3959743/
Abstract

Multicomponent tissue models are viable tools to better understand cell responses in complex environments, but present challenges when investigated with live cell microscopy noninvasively. In this study, integrated nonlinear optical microscopy-optical coherence microscopy (NLOM-OCM) was used to characterize cell interactions within three-dimensional (3-D), multicomponent extracellular matrices. In fibrin-collagen mixtures, 3T3 fibroblasts were observed to recruit both fibrin and collagen fibers while remodeling matrices. Also, NLOM-OCM was used to observe collagen deposition by neonatal human dermal fibroblasts within originally fibrin matrices over an extended time. It was observed that preferentially aligned collagen deposition could be achieved with aligned fibroblasts but that cell alignment could be achieved without aligning the extant extracellular matrix. In summary, this multimodel imaging system has potential for both real-time and longitudinal imaging of living 3-D cultures, which is particularly important for evaluating cell microenvironments in composite scaffolds or serial characterization of engineered tissue constructs during culture.

摘要

多组分组织模型是更好地理解复杂环境中细胞反应的有效工具,但在非侵入性地使用活细胞显微镜进行研究时,它们会带来挑战。在这项研究中,集成的非线性光学显微镜-光相干显微镜(NLOM-OCM)被用于表征三维(3-D)多组分细胞外基质中的细胞相互作用。在纤维蛋白-胶原混合物中,观察到 3T3 成纤维细胞在重塑基质的同时募集纤维蛋白和胶原纤维。此外,NLOM-OCM 还用于观察新生儿人真皮成纤维细胞在最初的纤维蛋白基质中在较长时间内沉积胶原。结果表明,通过与成纤维细胞对齐,可以实现优先对齐的胶原沉积,但无需对齐现有的细胞外基质即可实现细胞对齐。总之,这种多模式成像系统具有实时和纵向成像活 3-D 培养物的潜力,这对于评估复合支架中的细胞微环境或在培养过程中对工程组织构建体进行连续表征特别重要。