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相关概念视频

Characteristics of Life01:23

Characteristics of Life

Biology is a natural science that studies life and living organisms, including their structure, function, development, interactions, evolution, distribution, and taxonomy. The field's scope is extensive and divided into several specialized disciplines, such as anatomy, physiology, ethology, genetics, and many more. All living things share a few key traits, including cellular organization, heritable genetic material and the ability to adapt/evolve, metabolism to regulate energy needs, the...
Mesenchymal Stem Cells01:19

Mesenchymal Stem Cells

Mesenchymal stem cells (MSCs) are adult stem cells that can differentiate into most connective tissue cell types, except for hematopoietic cells, depending upon the source of MSCs. For example, bone-marrow-derived MSCs (BM-MSCs) can differentiate into osteocytes, hepatocytes, and pancreatic and neuronal cells. MSCs can be isolated from various sources such as bone marrow, placenta, adipose tissue, teeth, and Wharton’s jelly, a gelatinous substance in the umbilical cord. The ease of their access...
Applications Of NMR In Biology01:25

Applications Of NMR In Biology

Nuclear magnetic resonance (NMR) spectroscopy is a very valuable analytical technique for researchers. It has been used for more than 50 years as an analytical tool. F. Bloch and E. Purcell formulated NMR in 1946 and won the 1952 Nobel Prize in Physics  for their work. Biological macromolecules such as proteins, nucleic acids, lipids, and organic molecules including pharmaceutical compounds, can be studied using this versatile tool that exploits the magnetic properties of certain nuclei.
The...
Clinical Applications of Epidermal Stem Cells01:19

Clinical Applications of Epidermal Stem Cells

Epidermal stem cells (EpiSCs) are mainly located at the basal layer of the epidermis. These cells repair minor injuries of the skin and replace dead skin cells. However, EpiSCs’ cannot heal severe wounds such as major burns or those from diabetes or hereditary disorders. In such cases, culturing the epidermal stem cells from the patient is possible and has yielded successful treatment options, such as laboratory-grown skin grafts. These grafts are synthesized using a patient’s own EpiSCs...
Microorganisms in Medicine and Therapeutics01:29

Microorganisms in Medicine and Therapeutics

Microorganisms play a fundamental role in vaccine development, gene therapy, and therapeutic production. Their biological properties are harnessed to advance medicine and public health. Beyond immunization, microorganisms contribute to gut health, antibiotic synthesis, and genetic disease treatment.Live Attenuated and Inactivated VaccinesLive attenuated vaccines, such as the measles, mumps, and rubella (MMR) vaccine, utilize weakened forms of pathogens to closely resemble natural infections.
iChip01:24

iChip

The cultivation of environmental microorganisms has long been hindered by the inability to replicate complex native conditions in vitro. The isolation chip (iChip) addresses this limitation by facilitating the growth of previously uncultivable microorganisms through in situ incubation. Designed for high-throughput microbial cultivation, the iChip comprises hundreds of microchambers, each capable of housing a single microbial cell. These microchambers are loaded with a mixture of molten agar and...

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相关实验视频

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High-throughput Identification of Bacteria Repellent Polymers for Medical Devices
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High-throughput Identification of Bacteria Repellent Polymers for Medical Devices

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活跃生物医学材料及其应用.

Christie Ying Kei Lung1

  • 1Restorative Dental Sciences, Faculty of Dentistry, The University of Hong Kong, Hong Kong, China.

Journal of functional biomaterials
|September 27, 2024
PubMed
概括

活性生物医学材料促进患者在受伤或疾病后的愈合和功能恢复. 这些先进的材料对于再生医学和改善患者的治疗结果至关重要.

科学领域:

  • 生物医学工程 生物医学工程
  • 材料科学 材料科学 材料科学
  • 再生医学是一种再生医学.

背景情况:

  • 活跃的生物医学材料被设计为与生物系统动态相互作用.
  • 它们的开发旨在加速自然愈合过程并恢复组织功能.
  • 这些材料比被动植入物具有显著的进步.

研究的目的:

  • 探索活跃生物医学材料的设计原则和应用.
  • 突出它们在增强受伤和疾病恢复中的作用.
  • 讨论这些材料在未来医疗干预中的潜力.

主要方法:

  • 关于活性材料设计的当前文献的综述.
  • 对展示物质与设备相互作用的案例研究进行分析.
  • 讨论制造技术和表征方法.

主要成果:

  • 活性物质显示出与宿主组织的增强整合.
  • 它们可以积极调节细胞反应以促进再生.
  • 例如,可以使用药物释放的植入物和嵌入微型执行器的支架.

结论:

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  • 活性生物医学材料在治疗策略方面提供了一个有希望的前沿.
  • 它们积极参与治愈的能力意味着恢复性医学的范式转变.
  • 需要进一步的研究才能充分发挥其临床潜力.