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相关概念视频

Epigenetic Regulation01:37

Epigenetic Regulation

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Epigenetic changes alter the physical structure of the DNA without changing the genetic sequence and often regulate whether genes are turned on or off. This regulation ensures that each cell produces only proteins necessary for its function. For example, proteins that promote bone growth are not produced in muscle cells. Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer.
X-chromosome...
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Mitogens and the Cell Cycle02:38

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Mitogens and their receptors play a crucial role in controlling the progression of the cell cycle. However, the loss of mitogenic control over cell division leads to tumor formation. Therefore, mitogens and mitogen receptors play an important role in cancer research. For instance, the epidermal growth factor (EGF) - a type of mitogen and its transmembrane receptor (EGFR), decides the fate of the cell's proliferation. When EGF binds to EGFR, a member of the ErbB family of tyrosine kinase...
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Abnormal Proliferation02:23

Abnormal Proliferation

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Under normal conditions, most adult cells remain in a non-proliferative state unless stimulated by internal or external factors to replace lost cells. Abnormal cell proliferation is a condition in which the cell's growth exceeds and is uncoordinated with normal cells. In such situations, cell division persists in the same excessive manner even after cessation of the stimuli, leading to persistent tumors. The tumor arises from the damaged cells that replicate to pass the damage to the...
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Tumor Progression02:07

Tumor Progression

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Tumor progression is a phenomenon where the pre-formed tumor acquires successive mutations to become clinically more aggressive and malignant. In the 1950s, Foulds first described the stepwise progression of cancer cells through successive stages.
Colon cancer is one of the best-documented examples of tumor progression. Early mutation in the APC gene in colon cells causes a small growth on the colon wall called a polyp. With time, this polyp grows into a benign, pre-cancerous tumor. Further...
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mTOR Signaling and Cancer Progression03:03

mTOR Signaling and Cancer Progression

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The mammalian target of rapamycin or mTOR protein was discovered in 1994 due to its direct interaction with rapamycin. The protein gets its name from a yeast homolog called TOR. The mTOR protein complex in mammalian cells plays a major role in balancing anabolic processes such as the synthesis of proteins, lipids, and nucleotides and catabolic processes, such as autophagy in response to environmental cues, such as availability of nutrients and growth factors.
The mTOR pathway or the...
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Genomic Imprinting and Inheritance02:30

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Diploid organisms inherit genetic material through chromosomes from both parents. Copies of the same gene are known as alleles. In most cases, both alleles are simultaneously expressed and allow various cellular processes to function optimally. If one of the alleles is missing or mutated, the expression of the other allele can compensate; however, this is not true for all genes.
The expression of some genes depends on which parent passed the gene to the offspring, through a phenomenon known as...
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相关实验视频

Updated: Sep 10, 2025

Isolation, Enrichment, and Maintenance of Medulloblastoma Stem Cells
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解读骨髓母细胞瘤:影响瘤发生和治疗结果的表观遗传和代谢变化

Jenny Bonifacio-Mundaca1, Sandro Casavilca-Zambrano1, Christophe Desterke2

  • 1National Tumor Bank, Department of Pathology, National Institute of Neoplastic Diseases, Surquillo 15038, Peru.

Biomedicines
|August 28, 2025
PubMed
概括
此摘要是机器生成的。

本综述探讨了儿科骨髓母细胞瘤代谢和表观遗传之间的联系. 针对这些相互关联的途径, 提供了新的精准医学策略, 以改善治疗结果.

关键词:
表观遗传学骨髓母细胞瘤代谢过程儿童癌症

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科学领域:

  • 儿童神经瘤学
  • 癌症代谢
  • 癌症中的表观遗传学

背景情况:

  • 骨髓母细胞瘤是最常见的儿童恶性脑瘤,有四种不同的分子亚型.
  • 代谢重编程和表观遗传变化对于脑髓母细胞瘤的进展,治疗耐药性和结果至关重要.
  • 了解这些机制之间的相互作用对于开发有效治疗至关重要.

研究的目的:

  • 审查脑髓母细胞瘤的代谢和表观遗传机制之间的相互作用.
  • 专注于它们在分子亚型中的功能作用和治疗影响.
  • 探索针对这些途径的新兴临床前治疗策略.

主要方法:

  • 对PubMed和相关数据库进行了全面的文献审查.
  • 专注于最近对脑髓母细胞瘤代谢途径和表观遗传调节的研究.
  • 包括体外/体内模型和临床前策略的实验结果.

主要成果:

  • 骨髓母细胞瘤表现出支持增殖的代谢适应 (例如,增加糖解,脂质生物合成).
  • 表观遗传机制 (DNA甲基化,基因组修饰,ncRNA) 驱动了攻击性和抵抗性.
  • 代谢中间体作为表观酶的辅助因子,形成强化反循环.

结论:

  • 代谢-表观遗传交叉对讲是一种有前途的治疗点.
  • 针对这些途径,尤其是在组合中,显示出抑制瘤生长和克服抵抗的潜力.
  • 特定亚型的依赖性和生物标志物是精准医学改善结果和降低毒性的关键.