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相关概念视频

lncRNA - Long Non-coding RNAs02:39

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In humans, more than 80% of the genome gets transcribed. However, only around 2% of the genome codes for proteins. The remaining part produces non-coding RNAs which includes ribosomal RNAs, transfer RNAs, telomerase RNAs, and regulatory RNAs, among other types. A large number of regulatory non-coding RNAs have been classified into two groups depending upon their length – small non-coding RNAs, such as microRNA, which are less than 200 nucleotides in length, and long non-coding RNA...
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MicroRNA (miRNA) are short, regulatory RNA transcribed from introns—non-coding regions of a gene—or intergenic regions—stretches of DNA present between genes. Several processing steps are required to form biologically active, mature miRNA. The initial transcript, called primary miRNA (pri-mRNA), base-pairs with itself forming a stem-loop structure. Within the nucleus, an endonuclease enzyme, called Drosha, shortens the stem-loop structure into hairpin-shaped pre-miRNA. After...
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The Nucleolus02:55

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The nucleolus is the most prominent substructure of the nucleus. When it was first discovered, it was considered to be an isolated organelle that forms fibrils and granules. In 1931, the relationship between the nucleolus and chromosomes was first described by Heitz. He observed that the appearance and size of nucleolus varies depending on the stage of the cell cycle. He also noticed constricted regions on different chromosomes clustered together at definite cell cycle stages. These regions,...
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Low blood levels of the thyroid hormones — triiodothyronine (T3) and thyroxine (T4) — signal the hypothalamus to release the thyrotropin-releasing hormone (TRH). TRH then reaches the pituitary gland and stimulates the release of thyroid-stimulating hormone(TSH) into the bloodstream.
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Exosomes are stable, lipid bilayer-enclosed vesicles capable of crossing biological barriers. They can carry a wide range of molecules required for intercellular communication. Once exosomes are released from the cell where they originated, they enter a recipient cell through various pathways such as fusion, receptor-mediated endocytosis, macropinocytosis, and phagocytosis.
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As the name suggests, non-LTR retrotransposons lack the long terminal repeats characteristic of the LTR retrotransposons. Additionally, both LTR and non-LTR retrotransposons use distinct mechanisms of mobilization. Non-LTR retrotransposons are further divided into two classes - Long interspersed nuclear elements (LINEs) and short interspersed nuclear elements (SINEs), both of which occur abundantly in most mammals, including humans. Some of the active non-LTR retrotransposons in humans are L1...
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相关实验视频

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In Vivo Inhibition of MicroRNA to Decrease Tumor Growth in Mice
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外体非编码RNA:解码它们在甲状腺癌进展中的作用.

Weiming Sun1, Chenjun Jiang2, Qianqian Liu2

  • 1The First Hospital of Lanzhou University, Endocrinology Department, Lanzhou, China.

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|June 27, 2024
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概括

外基因组携带非编码RNAs (ncRNAs),影响甲状腺癌 (TC) 的进展. 这些外体的ncRNAs显示出作为诊断生物标志物和TC的治疗点的希望.

关键词:
环绕RNAss 的时间.外基因组是外基因组的组成部分.在 lncRNAs 中.这就是miRNAs.没有编码的RNAs.甲状腺癌是一种癌症.

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科学领域:

  • 在瘤学瘤学.
  • 分子生物学分子生物学
  • 生物化学 生化学

背景情况:

  • 外体是瘤微环境中细胞间通信的关键媒介.
  • 非编码RNAs (ncRNAs),包括miRNAs,lncRNAs和circRNAs,是外体内关键的调节分子.
  • 外体的ncRNA在甲状腺癌 (TC) 进展中起着重要作用.

研究的目的:

  • 审查外体ncRNAs在甲状腺癌中的作用.
  • 了解外体ncRNAs在TC中的机械参与.
  • 突出外体ncRNAs作为TC的诊断和治疗策略的潜力.

主要方法:

  • 文献综述侧重于外体ncRNAs和甲状腺癌.
  • 对外体ncRNAs影响TC特征的机制的分析.
  • 对诊断和治疗潜力的评估.

主要成果:

  • 外体的ncRNAs调节TC中的关键瘤性过程,如增殖,转移,EMT,血管生成和免疫编辑.
  • 外体保护ncRNAs免受降解,使其能够稳定地表达在血中.
  • 外体ncRNA是TC诊断和预后的有希望的生物标志物.

结论:

  • 外体的ncRNA是甲状腺癌发病过程中不可或缺的一部分.
  • 它们的稳定性和特定表达使它们成为有价值的诊断和预后指标.
  • 外体和它们的ncRNA载荷为TC提供了新的治疗途径.