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所在平台: Udemy |
课程主页: https://www.udemy.com/course/medical-biochemistry-blood-nucleotide-metabolism/
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**课程名称:** 医学生物化学:血红素与核苷酸代谢 **课程概述:** 本课程深入探讨铁代谢、血红素的合成与分解,以及核苷酸的合成与代谢。课程以生动有趣的方式,分为七个部分,包含约二十四段教学视频。 **课程结构(共24讲,7个部分):** 1. **血红素合成和相关疾病** * 铁代谢 * 铁代谢紊乱 * 血红素合成 * 血红素合成紊乱 1 * 血红素合成紊乱 2 2. **血红蛋白与相关疾病** * 珠蛋白链 * 血红蛋白 * 高铁血红蛋白与羧基血红蛋白 * 血红蛋白病 * 镰状细胞病 * 地中海贫血 3. **血红素降解与胆红素代谢** * 溶血与血红素分解 * 胆红素代谢 * 高胆红素血症与黄疸 4. **血红素代谢临床案例选择题** * 选择题 1 * 选择题 2 5. **嘌呤核苷酸代谢** * 概述 * 嘌呤核苷酸从头合成 * 嘌呤核苷酸合成的调控与临床相关性 * 嘌呤降解与再利用途径 * 高尿酸血症与痛风 * 其他临床相关性 6. **嘧啶核苷酸代谢** * 嘧啶从头合成与调控 * 核糖核苷酸还原酶及其他酶 * 乳清酸尿症 * 嘧啶降解与再利用途径 7. **核苷酸代谢临床案例** * 临床选择题 课程还将包含与血红素代谢和核苷酸代谢相关的临床选择题复习。
In this course, we will start our journey with the story of iron metabolism to how heme is synthesized and broken down, then take a look at Nucleotide synthesis and degradation with clinical correlate. To teach this in a very interesting manner, we have divided this course into seven (7) sections with about twenty-four (24) lecture videos all togetherThis course consists of twenty-four (24) lectures divided into 7 sections:Heme Synthesis and DisordersIron MetabolismIron Metabolism DisordersHeme SynthesisHeme Synthesis Disorders 1Heme Synthesis Disorders 2Hemoglobin and DisordersGlobin ChainsHemoglobinMethemoglobin and CarboxyhemoglobinHemoglobinopathiesSickle Cell DiseaseThalassemiasHeme Degradation and Bilirubin MetabolismHemolysis & Heme BreakdownBilirubin MetabolismHyperbilirubinemia and JaundiceClinical Case MCQs on Heme MetabolismMCQs 1MCQs 2Purine Nucleotide MetabolismOverviewPurine Nucleotide De Novo SynthesisRegulation and Clinical Correlates of Purine Nucleotide SynthesisPurine Degradation and Salvage PathwayHyperuricemia and GoutOther Clinical CorrelatesPyrimidine Nucleotide MetabolismPyrimidine De Novo Synthesis & RegulationRibonucleotide Reductase & Oher EnzymesOrotic AciduriasPyrimidine Degradation & Salvage PathwayClinical Cases on Nucleotide MetabolismClinical MCQs on Nucleotide MetabolismWe will also consider some clinical Multiple Choice Questions Review as it relates to Heme metabolism and Nucleotide Metabolism.