RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Formononetin enhances cisplatin chemotherapy sensitivity in osteosarcoma by inducing ferroptosis and reconstructing the immune microenvironment.
Formononetin enhances cisplatin chemotherapy sensitivity in osteosarcoma by inducing ferroptosis and reconstructing the immune microenvironment.
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本研究首次证明 formononetin 可增强骨肉瘤对 cisplatin 的敏感性。通过使用骨肉瘤 PDX 模型并进行全面的单细胞测序分析,我们发现 formononetin 是 cisplatin 治疗的一种有前景的增敏剂。我们的发现提供了新的治疗见解和机制理解,可能有助于克服骨肉瘤中的 cisplatin 不敏感性,并有可能改善患者结局。
骨肉瘤是一种起源于骨组织的罕见恶性肿瘤。尽管新辅助化疗取得了进展,但过去五十年来,骨肉瘤患者的5年生存率一直停滞在60%左右,主要原因在于化疗不敏感的发生。顺铂作为当前治疗方案中的基石药物,在骨肉瘤患者中仍然缓解率较低,这凸显了需要制定策略来增强顺铂敏感性的必要性。
本研究的目的是探讨生物活性化合物芒柄花黄素在使骨肉瘤细胞对顺铂敏感方面的作用。
我们利用骨肉瘤 PDX 模型评估了 formononetin 与 cisplatin 的联合治疗效果。对来自这些模型的肿瘤组织进行了单细胞 RNA 测序和单细胞 ATAC 测序,以提供治疗效果的详细分子图谱。建立骨肉瘤 PDX 模型,随后给予 formononetin 和 cisplatin 治疗。共分析了 7216 个人源骨肉瘤细胞和 89,558 个小鼠源细胞,以评估它们在 cisplatin 敏感性和肿瘤免疫微环境变化中的作用。
我们的研究结果表明,骨肉瘤对顺铂的不敏感与铁死亡密切相关。Formononetin 通过抑制 MAZ/GPX4 轴并诱导铁死亡,使骨肉瘤细胞对顺铂敏感。此外,formononetin 增加了 NK 细胞浸润和免疫活性,同时减少了耗竭 Cd8 + T 细胞和肿瘤相关中性粒细胞的浸润,从而重编程肿瘤免疫微环境并进一步增强顺铂敏感性。
Osteosarcoma is a rare malignant tumor originating from bone tissue. Despite advancements in neoadjuvant chemotherapy, the 5-year survival rate for osteosarcoma patients has plateaued around 60 % for the past fifty years, primarily due to the development of chemo-insensitivity. Cisplatin, a cornerstone in current treatment regimens, still has a low response rate in osteosarcoma patients, highlighting the need for strategies to enhance cisplatin sensitivity.
The purpose of this study is to explore the effects of formononetin, a bioactive compound, in sensitizing osteosarcoma cells to cisplatin. STUDY DESIGN: We utilized PDX models of osteosarcoma to evaluate the combined therapeutic effect of formononetin and cisplatin. Single-cell RNA sequencing and single-cell ATAC sequencing were performed on tumor tissues from these models to provide a detailed molecular profile of the treatment effects.
PDX models of osteosarcoma were established, followed by treatment with formononetin and cisplatin. A total of 7216 human-derived osteosarcoma cells and 89,558 mouse-derived cells were analyzed to assess their role in cisplatin sensitivity and tumor immune microenvironment changes.
Our findings demonstrated that cisplatin insensitivity in osteosarcoma is strongly linked to ferroptosis. Formononetin sensitized osteosarcoma cells to cisplatin by inhibiting MAZ/GPX4 axis and inducing ferroptosis. Additionally, formononetin increased NK cell infiltration and immune activity, while reducing the infiltration of exhausted Cd8 + T cells and tumor-associated neutrophils, thereby reprogramming the tumor immune microenvironment and further enhancing cisplatin sensitivity.
This study is the first to demonstrate that formononetin can enhance cisplatin sensitivity in osteosarcoma. By using osteosarcoma PDX models and performing comprehensive single-cell sequencing analyses, we identified formononetin as a promising sensitizer for cisplatin treatment. Our findings offer new therapeutic insights and mechanistic understanding that could help overcome cisplatin insensitivity in osteosarcoma and potentially improve patient outcomes.
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