基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Misaligned Chromosomes are a Major Source of Chromosomal Instability in Breast Cancer.
Misaligned Chromosomes are a Major Source of Chromosomal Instability in Breast Cancer.
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染色体不稳定性(CIN)是细胞分裂过程中染色体持续重排的现象,是人类癌症的标志性特征,可导致肿瘤异质性,并与驱动转移及改变治疗反应相关。尽管多种机制可产生CIN,但由异常双着丝粒附着产生的落后染色体是多种细胞系中CIN的主要原因,且预计在癌症中占主导地位。本研究利用肿瘤微阵列、配对的原发与转移样本以及原发乳腺癌患者来源的类器官,对乳腺癌中的CIN进行了定量分析。令人意外的是,错位染色体比落后染色体更为常见,是原发和转移性肿瘤中CIN的主要来源。这一乳腺癌特征在大多数乳腺癌细胞系中得以保留。重要的是,尽管部分错位染色体在后期开始前完成排列,但残留的部分构成了这些细胞中CIN的最大来源。转移性乳腺癌的CIN发生率高于配对的原发癌,主要由错位染色体增多所致。CIN究竟引起免疫激活还是免疫逃逸尚存争议。我们发现,错位染色体形成具有免疫激活作用的微核的频率显著低于落后染色体和染色体桥,且落后染色体和染色体桥频率更高的乳腺癌招募更多基质TIL(肿瘤浸润淋巴细胞)。这些数据表明,错位染色体是乳腺癌中CIN的主要机制之一,并为特定类型CIN具有不同免疫刺激效应提供了支持。意义:我们调查了在原发性和转移性乳腺癌及相关模型中,导致CIN的有丝分裂缺陷的单细胞图谱。染色体排列异常占主导地位,并且比其他染色体分离错误具有更低的免疫刺激性。
UNLABELLED: Chromosomal instability (CIN), the persistent reshuffling of chromosomes during mitosis, is a hallmark of human cancers that contributes to tumor heterogeneity and has been implicated in driving metastasis and altering responses to therapy. Though multiple mechanisms can produce CIN, lagging chromosomes generated from abnormal merotelic attachments are the major cause of CIN in a variety of cell lines, and are expected to predominate in cancer.
Here, we quantify CIN in breast cancer using a tumor microarray, matched primary and metastatic samples, and patient-derived organoids from primary breast cancer. Surprisingly, misaligned chromosomes are more common than lagging chromosomes and represent a major source of CIN in primary and metastatic tumors. This feature of breast cancers is conserved in a majority of breast cancer cell lines.
Importantly, though a portion of misaligned chromosomes align before anaphase onset, the fraction that remain represents the largest source of CIN in these cells. Metastatic breast cancers exhibit higher rates of CIN than matched primary cancers, primarily due to increases in misaligned chromosomes. Whether CIN causes immune activation or evasion is controversial.
We find that misaligned chromosomes result in immune-activating micronuclei substantially less frequently than lagging and bridge chromosomes and that breast cancers with greater frequencies of lagging chromosomes and chromosome bridges recruit more stromal tumor-infiltrating lymphocytes.
These data indicate misaligned chromosomes represent a major mechanism of CIN in breast cancer and provide support for differential immunostimulatory effects of specific types of CIN. SIGNIFICANCE: We surveyed the single-cell landscape of mitotic defects that generate CIN in primary and metastatic breast cancer and relevant models. Misaligned chromosomes predominate, and are less immunostimulatory than other chromosome segregation errors.
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