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相关概念视频

Blood Transfusion01:15

Blood Transfusion

613
Blood transfusion is a critical medical procedure that saves lives and treats various medical conditions. It involves transferring blood from a donor to a recipient. This process requires a thorough understanding of the ABO blood group system and its associated antigens and antibodies.
Blood Transfusion Overview
A blood transfusion is a medical procedure used to replace blood lost due to injury, surgery, or to treat conditions such as anemia or cancer. During a transfusion, donor blood is...
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Blood Transfusion and Agglutination02:45

Blood Transfusion and Agglutination

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Blood transfusion is a therapeutic measure to restore the blood volume after extensive blood loss due to an accident or a medical procedure. Blood transfusion involves drawing a certain amount of blood from a suitable donor and infusing it into the recipient.
History
The history of blood transfusion dates back to the 17th century, when early attempts were made in animals. In 1818 James Blundell, a British doctor, performed the first successful human blood transfusion. Later in 1900, Karl...
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Erythropoiesis01:14

Erythropoiesis

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Red blood cells  (RBCs) transport oxygen to all body tissues. These cells survive only for 120 days and then need to be replenished. Erythropoiesis is the process of RBC production. In healthy individuals, erythropoiesis ensures all tissues are amply supplied with oxygen. In addition, blood loss due to injury leads to a drop in the physiological oxygen level that will cause erythropoiesis. Any defect in erythropoiesis leads to several physiological disorders, including thalassemia, anemia,...
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Structure and Function of Erythrocytes01:29

Structure and Function of Erythrocytes

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There are between 4.2 and 6 million erythrocytes, also known as red blood cells, in every microliter of blood. These cells are small, flattened biconcave discs with centers that are depressed.
The erythrocyte plasma membrane is associated with proteins such as spectrin, which forms a flexible cytoplasmic meshwork. This meshwork allows erythrocytes to twist, turn, become cup-shaped, and regain their biconcave shape as they pass through narrow capillaries. Additionally, erythrocytes can form...
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Lifecycle of Erythrocytes01:22

Lifecycle of Erythrocytes

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Erythrocytes, also known as red blood cells, constantly move through blood capillaries. As a result, they damage their plasma membrane due to the continuous friction. Typically, after 100 to 120 days, erythrocytes become rigid and fragile as they wear out. As they pass through small vessels in the spleen and liver, they can get trapped and break apart into fragments.
The resident phagocytic macrophages deal with these damaged cells by engulfing them and separating their globin and heme groups....
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Bone Marrow Sampling and Transplants01:22

Bone Marrow Sampling and Transplants

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Bone marrow transplant is a potential cure for several diseases, including cancer and specific genetic disorders. Notably, this procedure is applicable for patients suffering from aplastic anemia, certain types of leukemia, severe combined immunodeficiency disease (SCID), Hodgkin's disease, non-Hodgkin's lymphoma, multiple myeloma, thalassemia, sickle-cell disease, and certain cancers.
The transplant begins with high doses of chemotherapy and radiation treatment, which aim to destroy...
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Antigens Protected Functional Red Blood Cells By The Membrane Grafting Of Compact Hyperbranched Polyglycerols
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红细胞:一个潜在的输送系统.

Mengran Chen1, Yamei Leng1, Chuan He2

  • 1Department of Hematology, West China Hospital, Sichuan University/West China School of Nursing, Sichuan University, Chengdu, 610041, Sichuan, People's Republic of China.

Journal of nanobiotechnology
|August 23, 2023
PubMed
概括

由于其独特的特性,红细胞 (RBC) 显示出作为药物输送载体的希望. 本综述探讨了它们的特性和生物医学应用,以提高治疗效果.

关键词:
生物成像是一种生物成像.交付系统的交付系统.红细胞是血液中的红细胞.治疗策略 治疗策略

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科学领域:

  • 生物医学工程 生物医学工程
  • 细胞生物学 细胞生物学
  • 药物输送系统 药物输送系统

背景情况:

  • 红细胞 (RBC) 是人体中最常见的细胞.
  • 红细胞具有独特的生物和物理属性,使其适合各种应用.
  • 它们的低免疫性和延长的循环时间是其关键优势.

研究的目的:

  • 为了比较红细胞的生理和物理特征.
  • 分析RBC作为潜在的交付工具的优势.
  • 总结RBC及其衍生物的当前生物医学应用.

主要方法:

  • 文献综述和对红细胞特性进行比较分析.
  • 对基于RBC的交付系统的现有研究进行了审查.
  • 综合关于生物医学应用的数据.

主要成果:

  • 红细胞表现出有利于药物输送的独特特性.
  • 低免疫性和长时间循环增强了它们的潜力.
  • 在生物医学中已经开发出多种应用.

结论:

  • 作为先进的交付系统,RBC及其衍生品具有显著的潜力.
  • 了解红细胞特征对于优化治疗策略至关重要.
  • 进一步的研究可以扩大它们在各种生物医学领域的实用性.