经桡动脉血管造影术后 C 反应蛋白与白蛋白比率和桡动脉血栓形成

IF 1.9 4区 医学 Q3 MEDICINE, RESEARCH & EXPERIMENTAL Biomarkers in medicine Pub Date : 2024-05-15 DOI:10.1080/17520363.2024.2345578
Serkan Bulguroglu, Yunus Calapkulu, Ural Koc, Mehmet Erdogan, Zehra Gölbası
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引用次数: 0

摘要

目的:旨在评估接受桡动脉造影术的患者体内 C 反应蛋白(CRP)与白蛋白比值(CAR)与桡动脉血栓形成之间的关系。患者及样本;方法:我们前瞻性地纳入了261名连续接受桡动脉造影术的患者,评估桡动脉直径和血栓形成情况。结果桡动脉血栓形成组的 CRP 值明显高于无血栓形成组(分别为 13.01 vs. 4.33 mg/l,p < 0.001)。此外,有血栓形成组和无血栓形成组的 CAR 值也有明显统计学差异(0.102 vs. 0.349,p <0.001)。结论我们的研究首次评估了 CAR 在接受桡动脉血管造影术的患者术后桡动脉血栓形成的情况。CAR 可用于判断冠状动脉造影术后桡动脉血栓形成的情况。
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C-reactive protein to albumin ratio and radial artery thrombosis post transradial angiography

Aim: The aim is to evaluate the relationship between C-reactive protein (CRP) to albumin ratio (CAR) and radial artery thrombosis in patients undergoing radial angiography. Patients & methods: We prospectively included 261 consecutive patients undergoing radial angiography, assessing radial artery diameter and thrombosis presence. Results: The CRP values were significantly higher in radial artery thrombosis group compared with group without thrombosis (13.01 vs. 4.33 mg/l, p < 0.001, respectively). Also CAR was statistically significantly different between the group with thrombosis and the group without thrombosis (0.102 vs. 0.349, p < 0.001). Conclusion: Our study is the first to assess CAR in radial thrombus development post-procedure in patients undergoing radial angiography. CAR can be useful in determining radial artery thrombosis after the coronary angiography.

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来源期刊
Biomarkers in medicine
Biomarkers in medicine 医学-医学:研究与实验
CiteScore
3.80
自引率
4.50%
发文量
86
审稿时长
6-12 weeks
期刊介绍: Biomarkers are physical, functional or biochemical indicators of physiological or disease processes. These key indicators can provide vital information in determining disease prognosis, in predicting of response to therapies, adverse events and drug interactions, and in establishing baseline risk. The explosion of interest in biomarker research is driving the development of new predictive, diagnostic and prognostic products in modern medical practice, and biomarkers are also playing an increasingly important role in the discovery and development of new drugs. For the full utility of biomarkers to be realized, we require greater understanding of disease mechanisms, and the interplay between disease mechanisms, therapeutic interventions and the proposed biomarkers. However, in attempting to evaluate the pros and cons of biomarkers systematically, we are moving into new, challenging territory. Biomarkers in Medicine (ISSN 1752-0363) is a peer-reviewed, rapid publication journal delivering commentary and analysis on the advances in our understanding of biomarkers and their potential and actual applications in medicine. The journal facilitates translation of our research knowledge into the clinic to increase the effectiveness of medical practice. As the scientific rationale and regulatory acceptance for biomarkers in medicine and in drug development become more fully established, Biomarkers in Medicine provides the platform for all players in this increasingly vital area to communicate and debate all issues relating to the potential utility and applications. Each issue includes a diversity of content to provide rounded coverage for the research professional. Articles include Guest Editorials, Interviews, Reviews, Research Articles, Perspectives, Priority Paper Evaluations, Special Reports, Case Reports, Conference Reports and Company Profiles. Review coverage is divided into themed sections according to area of therapeutic utility with some issues including themed sections on an area of topical interest. Biomarkers in Medicine provides a platform for commentary and debate for all professionals with an interest in the identification of biomarkers, elucidation of their role and formalization and approval of their application in modern medicine. The audience for Biomarkers in Medicine includes academic and industrial researchers, clinicians, pathologists, clinical chemists and regulatory professionals.
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