Unveiling the native architecture of adult cardiac tissue using the 3D-NaissI method.

IF 6.2 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Nicolas Pataluch, Céline Guilbeau-Frugier, Véronique Pons, Amandine Wahart, Clément Karsenty, Jean-Michel Sénard, Céline Gales
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引用次数: 0

Abstract

Accurately imaging adult cardiac tissue in its native state is essential for regenerative medicine and understanding heart disease. Current fluorescence methods encounter challenges with tissue fixation. Here, we introduce the 3D-NaissI (3D-Native Tissue Imaging) method, which enables rapid, cost-effective imaging of fresh cardiac tissue samples in their closest native state, and has been extended to other tissues. We validated the efficacy of 3D-NaissI in preserving cardiac tissue integrity using small biopsies under hypothermic conditions in phosphate-buffered saline, offering unparalleled resolution in confocal microscopy for imaging fluorescent small molecules and antibodies. Compared to conventional histology, 3D-NaissI preserves cardiac tissue architecture and native protein epitopes, facilitating the use of a wide range of commercial antibodies without unmasking strategies. We successfully identified specific cardiac protein expression patterns in cardiomyocytes (CMs) from rodents and humans, including for the first time ACE2 localization in the lateral membrane/T-Tubules and SGTL2 in the sarcoplasmic reticulum. These findings shed light on COVID-19-related cardiac complications and suggest novel explanations for therapeutic benefits of iSGLT2 in HFpEF patients. Additionally, we challenge the notion of "connexin-43 lateralization" in heart pathology, suggesting it may be an artifact of cardiac fixation, as 3D-NaissI clearly revealed native connexin-43 expression at the lateral membrane of healthy CMs. We also discovered previously undocumented periodic ring-like 3D structures formed by pericytes that cover the lateral surfaces of CMs. These structures, positive for laminin-2, delineate a specific spatial architecture of laminin-2 receptors on the CM surface, underscoring the pivotal role of pericytes in CM function. Lastly, 3D-NaissI facilitates the mapping of native human protein expression in fresh cardiac autopsies, offering insights into both pathological and non-pathological contexts. Therefore, 3D-NaissI provides unparalleled insights into native cardiac tissue biology and holds the promise of advancing our understanding of physiology and pathophysiology, surpassing standard histology in both resolution and accuracy.

利用 3D-NaissI 方法揭示成人心脏组织的原生结构。
准确成像成人心脏组织在其天然状态是必不可少的再生医学和了解心脏疾病。目前的荧光方法遇到了组织固定的挑战。在这里,我们介绍了3d - naisi (3D-Native Tissue Imaging,原生组织成像)方法,该方法能够快速、经济地成像处于最接近原生状态的新鲜心脏组织样本,并已扩展到其他组织。我们通过在磷酸盐缓冲盐水中低温条件下进行小活检,验证了3d - naisi在保护心脏组织完整性方面的功效,在共聚焦显微镜下为荧光小分子和抗体成像提供了无与伦比的分辨率。与传统组织学相比,3d - naisi保留了心脏组织结构和天然蛋白表位,促进了广泛的商业抗体的使用,而无需揭膜策略。我们成功地鉴定了啮齿动物和人类心肌细胞(CMs)中特定的心脏蛋白表达模式,包括ACE2在外侧膜/ t小管中的定位和SGTL2在肌浆网中的定位。这些发现揭示了与covid -19相关的心脏并发症,并为iSGLT2在HFpEF患者中的治疗效果提供了新的解释。此外,我们对心脏病理学中“连接蛋白-43偏侧化”的概念提出了质疑,认为这可能是心脏固定的产物,因为3d - naisi清楚地显示了健康CMs侧膜上天然的连接蛋白-43表达。我们还发现了以前未记载的由覆盖cm侧面的周细胞形成的周期性环状3D结构。这些结构对层粘胶蛋白-2呈阳性,描绘了层粘胶蛋白-2受体在CM表面的特定空间结构,强调了周细胞在CM功能中的关键作用。最后,3d - naisi促进了新鲜心脏解剖中天然人类蛋白表达的绘制,为病理和非病理背景提供了见解。因此,3d - naisi为原生心脏组织生物学提供了无与伦比的见解,并有望推进我们对生理学和病理生理学的理解,在分辨率和准确性方面都超过标准组织学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cellular and Molecular Life Sciences
Cellular and Molecular Life Sciences 生物-生化与分子生物学
CiteScore
13.20
自引率
1.20%
发文量
546
审稿时长
1.0 months
期刊介绍: Journal Name: Cellular and Molecular Life Sciences (CMLS) Location: Basel, Switzerland Focus: Multidisciplinary journal Publishes research articles, reviews, multi-author reviews, and visions & reflections articles Coverage: Latest aspects of biological and biomedical research Areas include: Biochemistry and molecular biology Cell biology Molecular and cellular aspects of biomedicine Neuroscience Pharmacology Immunology Additional Features: Welcomes comments on any article published in CMLS Accepts suggestions for topics to be covered
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