CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Targeting Gli1(+) Cells for Oral Tissue Regeneration and Disease Treatment.
Targeting Gli1(+) Cells for Oral Tissue Regeneration and Disease Treatment.
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Hedgehog(Hh)信号通路在组织发育和稳态维持中发挥重要作用。胶质瘤相关癌基因同源物1(Gli1)是Hedgehog信号的关键转录因子,也是该通路的直接靶基因。Gli1阳性(Gli1⁺)细胞是Hh通路的重要效应细胞,在口腔组织发育、稳态维持、损伤后修复及口腔疾病进展中发挥复杂而关键的作用。谱系追踪技术和单细胞RNA测序的近期进展,加深了我们对Gli1⁺细胞的认识:其定义已从单纯的Hh通路效应细胞扩展至异质性间充质干细胞亚群,显著丰富了对口腔生物学和病理学的理解。本综述系统总结Gli1⁺细胞的基本特征及其在口腔组织中的功能,并讨论其在口腔疾病发生发展中的作用,以及基于Gli1⁺细胞的组织再生和疾病治疗最新进展。通过整合Gli1⁺细胞的生物学特性、其在疾病中的免疫调节作用及以Gli1⁺细胞为核心的组织再生策略,我们旨在为阐明维持口腔组织稳态的细胞和分子机制提供理论基础。这些认识有望推动口腔再生医学新型精准治疗方法的发展。
The Hedgehog (Hh) signaling pathway plays an essential role in tissue development and homeostasis. Glioma-associated oncogene homolog 1 (Gli1) functions as a key transcription factor in Hedgehog signaling and acts as a direct target gene within this pathway. Gli1-positive (Gli1 + ) cells functions as pivotal effector cells of the Hh pathway, and play complex and critical roles in oral tissue development, homeostasis, post-injury repair, and oral disease progression. Recent advances in lineage-tracing techniques and single-cell RNA sequencing have deepened our understanding of Gli1 + cells, evolving from simple Hh pathway effectors to heterogeneous mesenchymal stem cell subsets, significantly enriching our knowledge of oral biology and pathology.
This review systematically summarizes the fundamental characteristics of Gli1 + cells and their function in oral tissues. Their contributions to the initiation and progression of oral diseases, and the latest advances in Gli1 + cell-based tissue regeneration and disease treatment are also discussed.
By integrating our findings on the biological properties of Gli1 + cells into their immunomodulatory roles in disease and Gli1 + cell-centered tissue regeneration strategies, we aim to provide a theoretical foundation for elucidating the cellular and molecular mechanisms that maintain oral tissue homeostasis. These insights pave the way for novel and precise therapeutic approaches in oral regenerative medicine.
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