fibrinoplastin的音标为["faɪbrɪnəʊsplætɪs] ,基本翻译为“纤维蛋白溶解酶”,速记技巧为“fibrinoplastin=fibro(纤维)+oplast(形成)+in+sis(作用)=纤维蛋白溶解酶”。
Fibrinoplastin是一个由希腊语和英语词素组成的词,其主要的词源是“fibrin” (纤维) 和 “-oplastin” (形成素)。它的主要含义是“纤维形成剂”或“纤维合成素”。
变化形式:
1. Fibrin: 来自拉丁语“fibrinus”,意为纤维。
2. -oplastin: 是一个后缀,表示“形成素”。
相关单词:
1. Fibrinogen (n.) - 纤维蛋白原,一种血液中的蛋白质,参与血液凝固过程。
2. Fibrinolysis (n.) - 纤维蛋白溶解,指血液凝固过程中纤维蛋白的溶解过程。
3. FibrinopepTIde assay (n.) - 纤维蛋白肽A检测,用于检测血液中纤维蛋白降解产物的一种方法。
4. Fibrin-thrombus (n.) - 纤维蛋白血栓,一种由纤维蛋白和血小板组成的血栓。
5. Fibrin-stabilizing factor (n.) - 纤维稳定因子,一种血浆蛋白质,有助于维持纤维蛋白在血液凝固过程中的稳定性。
6. Fibrin-degrading enzyme (n.) - 纤维降解酶,一种能够分解纤维蛋白的酶。
7. Fibrin-like material (n.) - 类似纤维的物质,指具有纤维特性的物质。
8. Fibrinogen receptor (n.) - 纤维蛋白原受体,一种在细胞表面表达的蛋白质受体,参与血液凝固过程。
9. Fibrinogenolytic enzyme (n.) - 纤维蛋白溶解酶,一种能够分解纤维蛋白的酶,参与伤口愈合过程。
10. Fibrinogen receptor-associated protein (n.) - 纤维蛋白原受体相关蛋白,一种参与血液凝固和炎症反应的蛋白质。
以上这些单词都与fibrinoplastin有直接或间接的关系,反映了其在生物医学和生理学中的重要性和广泛的应用。
短语:
1. fibrinoplastin 纤维蛋白合成酶
2. fibrinolytic enzyme 纤溶酶
3. fibrinolytic system 纤溶系统
4. fibrinolytic activity 纤溶活性
5. fibrinolytic inhibitors 纤溶抑制物
6. fibrinolytic enzyme inhibitors 纤溶酶抑制剂
7. fibrinolytic cascade 纤溶级联反应
例句:
1. The fibrinolytic system plays a crucial role in maintaining blood clotting and preventing excessive bleeding.
2. Fibrinolytic inhibitors can be used to treat conditions such as heart disease and stroke.
3. Fibrinoplastin can be used to enhance the production of new blood vessels.
4. Fibrinolytic enzymes are important for wound healing and tissue repair.
5. The fibrinolytic cascade is a complex network of proteins that work together to maintain blood flow.
6. Understanding the role of fibrinoplastin in the body can help us develop new treatments for diseases related to blood clotting.
7. Fibrinogen is a key component of the fibrinolytic system, which helps maintain blood flow and prevents excessive bleeding.
英文小作文:
Fibrinoplastin: The Key to New Blood Vessels
Fibrinoplastin, a protein found in plants, has the potential to revolutionize the field of regenerative medicine by enhancing the production of new blood vessels. When injected into the body, fibrinoplastin can stimulate the growth of endothelial cells, which form the lining of blood vessels, into a network that can support new tissue growth and provide oxygen and nutrients to cells. This process can be used to treat conditions such as diabetes, cardiovascular disease, and stroke, which are all characterized by poor blood flow and lack of new blood vessels. Understanding the role of fibrinoplastin and its potential for therapeutic use can help us develop new and more effective treatments for diseases related to blood clotting and vascular health.
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