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.
肿瘤细胞治疗研究
英文原题:Targeting the Axl and mTOR Pathway Synergizes Immunotherapy and Chemotherapy to Butylidenephthalide in a Recurrent GBM.
Targeting the Axl and mTOR Pathway Synergizes Immunotherapy and Chemotherapy to Butylidenephthalide in a Recurrent GBM.
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鉴于 (Z)-BP 的多种独特功能、化疗的更高敏感性以及 pembrolizumab 与 CIK 细胞的协同作用,可能影响了该复发 GBM 患者所见的良好预后。
固有肿瘤异质性和免疫抑制微环境在治疗耐药中的作用已被确定对更好地管理多形性胶质母细胞瘤(GBM)具有重要意义。一些研究表明,具有不同机制的联合药物可能在治疗复发性GBM方面具有前景。
通过Cerebraca Wafers(CWs)颅内持续递送(Z)-n-丁烯基苯酞[(Z)-BP]以消除不可切除的脑肿瘤,联合替莫唑胺(TMZ)、pembrolizumab和细胞因子诱导的杀伤(CIK)细胞给药,用于治疗一例复发性胶质母细胞瘤患者。监测神经系统不良事件和伤口愈合延迟,以评估耐受性和疗效。应用神经肿瘤学反应评估标准评估无进展生存期(PFS);此外,分析GBM组织的分子特征,并使用原代培养研究其潜在机制。
残余肿瘤中的脑内 (Z)-BP 不仅能抑制癌症干细胞,还能提高血清中的干扰素 gamma 水平,进而导致 GBM 消退和免疫应答性微环境。在复发性 GBM 中,通过 (Z)-BP 靶向受体酪氨酸激酶,包括 Axl 和表皮生长因子受体 (EGFR),并抑制 mechanistic target of rapamycin (mTOR),被确定可在 pembrolizumab 和 TMZ 存在下与 CIK 细胞协同作用。因此,这一耐受性良好的方案可同时阻断多条癌症通路,从而使 PFS 延长并改善生活质量达 22 个月。
The role of inherent tumor heterogeneity and an immunosuppressive microenvironment in therapeutic resistance has been determined to be of importance for the better management of glioblastoma multiforme (GBM). Some studies have suggested that combined drugs with divergent mechanisms may be promising in treating recurrent GBM.
Intracranial sustained (Z)- n -butylidenephthalide [(Z)-BP] delivery through Cerebraca Wafers (CWs) to eliminate unresectable brain tumors was combined with the administration of temozolomide (TMZ), pembrolizumab, and cytokine-induced killer (CIK) cells for treating a patient with recurrent glioblastoma. Neurological adverse events and wound healing delay were monitored for estimating tolerance and efficacy. Response Assessment in Neuro-Oncology criteria were applied to evaluate progression-free survival (PFS); further, the molecular characteristics of GBM tissues were analyzed, and the underlying mechanism was investigated using primary culture.
Intracerebral (Z)-BP in residual tumors could not only inhibit cancer stem cells but also increase interferon gamma levels in serum, which then led to the regression of GBM and an immune-responsive microenvironment. Targeting receptor tyrosine kinases, including Axl and epidermal growth factor receptor (EGFR), and inhibiting the mechanistic target of rapamycin (mTOR) through (Z)-BP were determined to synergize CIK cells in the presence of pembrolizumab and TMZ in recurrent GBM. Therefore, this well-tolerated regimen could simultaneously block multiple cancer pathways, which allowed extended PFS and improved quality of life for 22 months.
Given the several unique functions of (Z)-BP, greater sensitivity of chemotherapy and the synergism of pembrolizumab and CIK cells could have affected the excellent prognosis seen in this patient with recurrent GBM.
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