相关实验视频
Updated: Jan 16, 2026

07:49
Measuring Local Anaphylaxis in Mice
Published on: October 14, 2014
19.9K
在静脉注射乙氨基后,由于乙氨基引起的术后过敏反应:一个病例报告
Yasuhiro Amano1, Yosuke Taki2, Yuko Konishi3
1Department of Anesthesiology, Nagoya University Graduate of School of Medicine, 65 Tsurumai-Cho, Showa-Ku, Nagoya, 466-8550, Japan. amano.yasuhiro.f1@f.mail.nagoya-u.ac.jp.
JA clinical reports
|September 26, 2025
概括
静脉注射乙氨基的过敏反应是罕见的. 过敏测试证实了乙氨基,而不是曼尼托尔,作为一个患者的原因,允许未来安全使用其他乙氨基产品.
科学领域:
- 临床免疫学临床免疫学
- 药理学 药理学是指药理学的学科.
- 过敏和喘 过敏和喘
背景情况:
- 对静脉注射乙氨基的过敏反应是罕见的.
- 像曼尼托尔这样的助剂在某些情况下被怀疑是罪祸首.
- 准确的过敏原鉴定对于患者的安全至关重要.
研究的目的:
- 在接受静脉注射乙氨基的患者中确定过敏反应的致病原体.
- 要区分活性药物和辅助剂作为过敏原.
- 为了指导未来的管理,并防止不必要的药物规避.
主要方法:
- 一个67岁的妇女在手术期间出现过敏反应的案例介绍.
- 静脉注射乙氨基 (Acelio®) 给药之前发生了这一事件.
- 皮肤测试和基因细胞激活测试对乙氨基和曼尼托尔进行了测试.
主要成果:
- 患者经历了无脉冲电活动的过敏反应.
- 过敏测试显示了对Acelio®和乙氨基的积极反应.
- 对曼尼托尔的反应是负面的,证实了乙氨基是致病剂.
结论:
- 在静脉注射乙氨基配方中准确识别过敏原至关重要.
- 区分活性成分和辅助剂可以防止不必要的限制.
- 这一案例凸显了特定过敏测试对于明智的临床决策的重要性.
更多相关视频
相关概念视频
Parenteral Anesthetics: Overview
602
Intravenous anesthetics are drugs administered parenterally to induce anesthesia or sedation. Propofol is a widely used agent formulated as a 1% emulsion in soybean oil, glycerol, and egg phosphatide. It induces rapid anesthesia primarily due to its rapid distribution from the bloodstream to target tissues and is metabolized in the liver. However, it can cause significant pain on injection and hypertriglyceridemia. Fospropofol, a water-based prodrug of propofol, lacks these adverse effects.
602
Local Anesthetics: Clinical Application as Epidural Anesthesia
687
Epidural anesthetics are administered in the fat-filled epidural space, the outermost part of the spinal canal. This technique is commonly employed for pain management and anesthesia during lower abdomen and pelvis surgeries or labor and delivery.
Since epidural anesthetics can be infused through an epidural catheter, all types of drugs, including short-acting ones, can be administered. Chloroprocaine and lidocaine are examples of short and long-duration anesthetics, respectively. Bupivacaine...
Since epidural anesthetics can be infused through an epidural catheter, all types of drugs, including short-acting ones, can be administered. Chloroprocaine and lidocaine are examples of short and long-duration anesthetics, respectively. Bupivacaine...
687
Local Anesthetics: Clinical Application as Intravenous Regional Anesthesia
1.2K
Intravenous regional anesthesia or the Bier block technique is used to anesthetize a specific limb or extremity. It uses exsanguinated or blood-drained vessels to transport local anesthetics or LAs to the peripheral nerve trunks. Lidocaine without vasoconstrictors like epinephrine is most commonly used for this technique. Other drugs used are prilocaine, ropivacaine, and chloroprocaine. Bupivacaine is not recommended for this technique due to its high cardiac toxicity.
One of the advantages of...
One of the advantages of...
1.2K
Local Anesthetics: Adverse Effects
757
While local anesthetics are generally safe and well-tolerated, they can occasionally cause adverse effects that vary in severity. Local anesthetics can induce toxicity at two distinct levels. They can either produce local effects through direct contact with the neural elements or be absorbed into the bloodstream from the injection site, leading to systemic effects.
Once absorbed into the systemic circulation, local anesthetics can affect the organs that depend on the functioning of sodium...
Once absorbed into the systemic circulation, local anesthetics can affect the organs that depend on the functioning of sodium...
757
Local Anesthetics: Pharmacokinetics
1.2K
The potency and duration of action of local anesthetics (LAs) are determined by their pharmacokinetics. Pharmacokinetics describes how LAs are absorbed, distributed, metabolized, and eliminated from the body. When administered to the vascular tissues, LAs are quickly absorbed and enter the systemic circulation, reducing their localized effects. Adding vasoconstrictors such as epinephrine to LAs reduces their absorption into the systemic circulation, making them clinically effective. The...
1.2K
Prevention of Further Absorption of Poison
1.2K
In cases of acute poisoning, the primary objective is to prevent further absorption of the toxic substance into the body. Immediate interventions using various decontamination techniques targeting the gastrointestinal (GI) tract can achieve this. Decontamination is crucial to prevent poison from entering the systemic circulation, which involves washing affected areas with water and mild soap and removing contaminated clothing. Once external decontamination is done, attention must be turned to...
1.2K

