Detailed study of collagen, vasculature, and innervation in the human cardiac conduction system

IF 2.3 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Denis Depes , Ari Mennander , Timo Paavonen , Mary N. Sheppard , Ivana Kholová
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引用次数: 0

Abstract

Background

The cardiac conduction system (CCS) creates and propagates electrical signals generating the heartbeat. This study aimed to assess the collagen content, vasculature, and innervation in the human sinoatrial and atrioventricular CCS, and surrounding tissue.

Materials and methods

Ten sinoatrial and 17 atrioventricular CCS samples were collected from 17 adult human autopsied hearts. Masson trichrome stain was used to examine collagen, cardiomyocytes, and fat proportions. Immunohistochemically, vessels and lymphatics were studied by CD31 (pan-endothelial marker) and D2-40 (lymphatic endothelium marker) antibodies. General nerve densities were assessed by S100, while sympathetic nerves were studied using tyrosine hydroxylase, parasympathetic nerves with choline acetyltransferase, and GAP43 (neural growth marker) antibodies looked at these components. All components were quantified with QuPath software (Queens University, Belfast, Northern Ireland).

Results

Interstitial collagen was more than two times higher in the sinoatrial vs. atrioventricular CCS (55% vs. 22%). The fat content was 6.3% in the sinoatrial CCS and 6.5% in the atrioventricular CCS. The lymphatic vessel density was increased in the sinoatrial and atrioventricular CCS compared to the surrounding tissue and was lower in the sinoatrial vs. atrioventricular CCS (P=.043). The overall vasculature density did not differ between the SA and AV CCS. The overall innervation and neural growth densities were significantly increased in the CCS compared to the surrounding tissue. The overall innervation was higher in the atrial vs. ventricular CCS (P=.018). The neural growth was higher in the atrial vs. ventricular CCS (P=.018). The sympathetic neural supply was dominant in all the studied regions with the highest density in the sinoatrial CCS.

Conclusions

Our results provide new insights into the unique morphology of the human CCS collagen, fat, vasculature, and innervation. A deeper understanding of the CCS anatomical components and morphologic substrates’ role will help in elucidating the causes of cardiac arrhythmias and provide a basis for further therapeutic interventions.

Abstract Image

Abstract Image

人体心脏传导系统中胶原蛋白、血管和神经支配的详细研究
背景心脏传导系统(CCS)产生并传播产生心跳的电信号。本研究旨在评估人类中房和房室 CCS 及其周围组织中的胶原蛋白含量、血管和神经支配。用 Masson 三色染色法检查胶原蛋白、心肌细胞和脂肪比例。免疫组化方面,使用 CD31(泛内皮标志物)和 D2-40(淋巴内皮标志物)抗体研究血管和淋巴管。用 S100 评估一般神经密度,用酪氨酸羟化酶研究交感神经,用胆碱乙酰转移酶研究副交感神经,用 GAP43(神经生长标记)抗体研究这些成分。所有成分都用 QuPath 软件进行了量化。结果中房 CCS 与房室 CCS 相比,间质胶原含量高出两倍多(55% 对 22%)。中房CCS的脂肪含量为6.3%,房室CCS为6.5%。与周围组织相比,窦房结和房室结CCS的淋巴管密度增加,窦房结CCS的淋巴管密度低于房室结CCS(P=0.043)。SA 和 AV CCS 的总体血管密度没有差异。与周围组织相比,CCS 的整体神经支配和神经生长密度明显增加。心房和心室 CCS 的整体神经支配密度更高(P=0.018)。心房 CCS 的神经生长密度高于心室 CCS(P=0.018)。交感神经供应在所有研究区域中均占主导地位,其中中房 CCS 密度最高。深入了解 CCS 的解剖成分和形态基质的作用将有助于阐明心律失常的原因,并为进一步的治疗干预提供依据。
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来源期刊
Cardiovascular Pathology
Cardiovascular Pathology 医学-病理学
CiteScore
7.50
自引率
2.70%
发文量
71
审稿时长
18 days
期刊介绍: Cardiovascular Pathology is a bimonthly journal that presents articles on topics covering the entire spectrum of cardiovascular disease. The Journal''s primary objective is to publish papers on disease-oriented morphology and pathogenesis from clinicians and scientists in the cardiovascular field. Subjects covered include cardiovascular biology, prosthetic devices, molecular biology and experimental models of cardiovascular disease.
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