β抑制剂和上皮卵巢癌存活率:一项挪威基于人口的队列研究
Leif Lukas Löfling1,2, Nathalie C Støer1, Erica K Sloan3
1Department of Research, Cancer Registry of Norway, Norwegian Institute of Public Health, Oslo, Norway.
International journal of cancer
|January 27, 2025
概括
使用β-阻断剂可能会改善患上上皮质卵巢癌 (EOC) 的女性的生存率. 这项研究发现,在诊断前使用β-阻断剂与较长的EOC特定存活率有关,这表明潜在的治疗益处.
科学领域:
- 在瘤学瘤学.
- 药理学 药理学是指药理学的学科.
- 癌症研究 癌症研究
背景情况:
- 压力激素可以通过β-上腺素受体促进瘤生长和转移.
- 用于管理压力和心血管疾病的β-阻断剂可以抵消这些影响.
研究的目的:
- 调查贝塔抑制剂使用与被诊断为上皮卵巢癌 (EOC) 的女性的生存结果之间的关联.
主要方法:
- 在挪威进行的一项全国性队列研究确定了3911名40岁以上的40岁以上妇女接受EOC手术 (2004-2018).
- 考克斯模型和灵活的参数模型被用于评估前诊断和诊断后β-阻断剂使用和生存之间的关联,并对混因素进行调整.
主要成果:
- 在临床诊断期间使用β-阻断剂与改善EOC特异性生存率相关 (HR=0.85,p=0.048).
- 与整体存活时间的相关性被表明 (HR=0.89,p=0.101).
- 贝塔阻断剂使用者在诊断后的5年中平均寿命长1.28个月.
结论:
- 贝塔抑制剂的使用,特别是在诊断方面,显示出增强EOC特定存活率的潜力.
- 这些发现支持了贝塔抑制剂可能抑制卵巢癌中压力诱导的瘤进展的假设.
相关概念视频
Adrenergic Antagonists: Pharmacological Actions of β-Receptor Blockers
528
β-receptor blockers significantly impact the cardiovascular system by counteracting catecholamine-induced sympathetic responses. These medications decrease heart rate, contractility, and cardiac output, potentially leading to cardiac depression, life-threatening bradycardia, and death. Therapeutically, β-blockers function as mild antihypertensives and are utilized in treating angina pectoris and cardiac arrhythmias. However, nonselective β-blockers inhibit β2-receptors in...
528
Heart Failure Drugs: β-Blockers
311
β-adrenergic antagonists, commonly known as β-blockers, block the effects of sympathetic neurotransmitters such as noradrenaline (NA) and adrenaline (ADR). They have several beneficial effects in heart failure treatment. They reduce heart rate, the force of contraction, and cardiac muscle relaxation. They also slow the atrial-ventricular conduction rate and raise the threshold for arrhythmias. The concentration of β-blockers determines their effects on bronchodilation,...
311
Adrenergic Antagonists: ɑ and β-Receptor Blockers
405
Third-generation β-blockers, such as labetalol and carvedilol, represent a significant advancement in managing cardiovascular conditions. Unlike conventional β-blockers, which can induce peripheral vasoconstriction, third-generation drugs block α1 adrenoceptors. This promotes vasodilation through several mechanisms, such as increased nitric oxide production, inhibition of calcium ion entry, opening of potassium ion channels, and antioxidant action. Labetalol, for instance, is...
405
Antihypertensive Drugs: Types of β-Blockers
572
β receptors are classified into three subclasses: β1, β2, and β3. β1 receptors are primarily located in the heart and kidneys. When they get activated, they increase heart rate, contractility, and renin release. This process enhances blood pressure and aids in stress management. In contrast, β2 receptors are situated mainly in the lungs, blood vessels, and skeletal muscles. Upon activation, they trigger smooth muscle relaxation, causing bronchodilation and...
572
Adrenergic Antagonists: Chemistry and Classification of β-Receptor Blockers
515
β-adrenergic antagonists, or β-blockers, modulate the sympathetic nervous system by targeting β-adrenoceptors and inhibiting catecholamine-mediated sympathetic responses. β-blockers differ in their adrenoceptor subtype affinity, lipophilicity, and α-blocking capabilities. The history of β-blocker development began with the prototype, dichloroisoprenaline, which exhibited partial agonist activity. As a result, propranolol was developed as a pure antagonist but...
515
Antiarrhythmic Drugs: Class II Agents as β-Adrenergic Blockers
705
Adrenergic stimulation generally impacts cardiac rate and rhythm. Specifically, stimulation of the β-adrenoceptors triggers an increase in intracellular calcium ion influx and pacemaker currents, which may cause arrhythmias. Catecholamines like adrenaline also demonstrate β2-adrenoceptor-mediated hypokalemia, impacting cardiac action potential and disrupting the normal cardiac rhythm. Class II antiarrhythmic drugs are β-adrenoceptor antagonists or β-blockers, which...
705


