在兔光治疗性角膜切除术模型中,胶原交联影响基质伤口愈合和混浊形成。

IF 1.8 3区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Molecular Vision Pub Date : 2023-07-16 eCollection Date: 2023-01-01
Bret A Moore, Iman Jalilian, Soohyun Kim, Makiko Mizutani, Madison Mukai, Connor Chang, Alec M Entringer, Kamesh Dhamodaran, Vijay Krishna Raghunathan, Leandro B C Teixeira, Christopher J Murphy, Sara M Thomasy
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引用次数: 0

摘要

目的:本研究的目的是使用体内兔模型评估联合光治疗角膜切除术(PTK)和上皮脱离UV-A/核黄素角膜胶原交联(CXL)后角膜基质的弹性模量、角膜细胞-成纤维细胞-肌细胞转化和雾翳形成。方法:家兔在PTK前35天接受PTK和CXL、仅PTK或CXL。术后第7、14、21、42、70和90天进行反弹眼压测量、傅立叶域光学相干断层扫描和超声测厚。尸检后评估了原子力显微镜、组织学炎症和α-平滑肌肌动蛋白(α-SMA)的免疫组织化学。结果:同时接受PTK和CXL治疗后,角膜基质雾的形成明显大于仅接受PTK治疗并持续90天以上的角膜基质雾。同时接受CXL和PTK的组与在PTK前接受CXL的组之间的基质雾度没有显著差异。尽管在第21天同时接受CXL和PTK的组与在PTK之前接受CXL的组相比,α-SMA在细胞核数量上的强度显著更大,但在任何时间点,各组间的基质炎症都没有差异。同时接受CXL和PTK治疗的角膜的弹性模量明显高于单独接受PTK的角膜。结论:我们发现CXL后,无论是在PTK时或之前进行,基质混浊的形成和基质硬度都显著增加。进一步了解与确定角膜伤口愈合持续时间和结果有关的生物物理线索,对于理解CXL后的瘢痕形成和开发改进的治疗方案至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Collagen crosslinking impacts stromal wound healing and haze formation in a rabbit phototherapeutic keratectomy model.

Collagen crosslinking impacts stromal wound healing and haze formation in a rabbit phototherapeutic keratectomy model.

Collagen crosslinking impacts stromal wound healing and haze formation in a rabbit phototherapeutic keratectomy model.

Collagen crosslinking impacts stromal wound healing and haze formation in a rabbit phototherapeutic keratectomy model.

Purpose: The purpose of this study was to evaluate the elastic modulus, keratocyte-fibroblast-myocyte transformation, and haze formation of the corneal stroma following combined phototherapeutic keratectomy (PTK) and epithelium-off UV-A/riboflavin corneal collagen crosslinking (CXL) using an in vivo rabbit model.

Methods: Rabbits underwent PTK and CXL, PTK only, or CXL 35 days before PTK. Rebound tonometry, Fourier-domain optical coherence tomography, and ultrasound pachymetry were performed on days 7, 14, 21, 42, 70, and 90 post-operatively. Atomic force microscopy, histologic inflammation, and immunohistochemistry for α-smooth muscle actin (α-SMA) were assessed post-mortem.

Results: Stromal haze formation following simultaneous PTK and CXL was significantly greater than in corneas that received PTK only and persisted for more than 90 days. No significant difference in stromal haze was noted between groups receiving simultaneous CXL and PTK and those receiving CXL before PTK. Stromal inflammation did not differ between groups at any time point, although the intensity of α-SMA over the number of nuclei was significantly greater at day 21 between groups receiving simultaneous CXL and PTK and those receiving CXL before PTK. The elastic modulus was significantly greater in corneas receiving simultaneous CXL and PTK compared with those receiving PTK alone.

Conclusions: We showed that stromal haze formation and stromal stiffness is significantly increased following CXL, regardless of whether it is performed at or before the time of PTK. Further knowledge of the biophysical cues involved in determining corneal wound healing duration and outcomes will be important for understanding scarring following CXL and for the development of improved therapeutic options.

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来源期刊
Molecular Vision
Molecular Vision 生物-生化与分子生物学
CiteScore
4.40
自引率
0.00%
发文量
25
审稿时长
1 months
期刊介绍: Molecular Vision is a peer-reviewed journal dedicated to the dissemination of research results in molecular biology, cell biology, and the genetics of the visual system (ocular and cortical). Molecular Vision publishes articles presenting original research that has not previously been published and comprehensive articles reviewing the current status of a particular field or topic. Submissions to Molecular Vision are subjected to rigorous peer review. Molecular Vision does NOT publish preprints. For authors, Molecular Vision provides a rapid means of communicating important results. Access to Molecular Vision is free and unrestricted, allowing the widest possible audience for your article. Digital publishing allows you to use color images freely (and without fees). Additionally, you may publish animations, sounds, or other supplementary information that clarifies or supports your article. Each of the authors of an article may also list an electronic mail address (which will be updated upon request) to give interested readers easy access to authors.
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