Department of Ultrasound in Medicine, Ningbo First Hospital, Ningbo, 315010, People's Republic of China.
Tongji University School of Medicine, Shanghai, 200072, People's Republic of China.
J Nanobiotechnology. 2022 Oct 15;20(1):453. doi: 10.1186/s12951-022-01659-4.
Pancreatic cancer remains among the most prevalent and aggressive forms of cancer. While immunotherapeutic treatment strategies have shown some promise in affected patients, the benefits of these interventions have been limited by insufficient tumor infiltration by activated T cells.
Here, Titanium diselenide (TiSe) nanosheets were synthesized with good stability. When exposed to ultrasound (US), the TiSe nanosheets served as a reliable nano-sensitizer capable of inducing large amounts of reactive oxygen species (ROS) mediating sonodynamic therapy (SDT) under hypoxic and normoxic conditions. The tumor-released TAAs induced by TiSe nanosheet-mediated SDT promoted immunogenic cell death (ICD) conducive to the maturation of dendritic cells (DCs), and cytokine secretion and the subsequent activation and infiltration of T cells into the tumor. Combining TiSe-mediated SDT with anti-PD-1 immune checkpoint blockade treatment led to the efficient suppression of the growth of both primary tumor and distant tumor, while simultaneously preventing lung metastasis. These improved immunotherapeutic and anti-metastatic outcomes were associated with activated systematic antitumor immune responses, including the higher levels of DC maturation and cytokine secretion, the increased levels of CD8 T cells and the decreased levels of T cells infiltrated in tumors.
TiSe can be used as a sonosensitizer with good efficacy and high safety to mediate efficient SDT. The combination treatment strategy comprised of TiSe-mediated SDT and PD-1 blockade activate anti-tumor immune responses effectively thorough inducing ICD, resulting in the inhibition the growth and metastasis of tumor. The combination therapy holds promise as a novel immunotherapy-based intervention strategy for pancreatic cancer patients.
胰腺癌仍然是最常见和最具侵袭性的癌症之一。虽然免疫治疗策略在受影响的患者中显示出了一些希望,但这些干预措施的益处受到激活的 T 细胞在肿瘤中浸润不足的限制。
在这里,合成了具有良好稳定性的二硒化钛(TiSe)纳米片。当暴露于超声(US)下时,TiSe 纳米片作为一种可靠的纳米敏化剂,能够在缺氧和常氧条件下诱导大量活性氧物质(ROS)介导的声动力学治疗(SDT)。TiSe 纳米片介导的 SDT 诱导的肿瘤释放的 TAA 促进了免疫原性细胞死亡(ICD),有利于树突状细胞(DC)的成熟,以及细胞因子的分泌和随后 T 细胞向肿瘤的激活和浸润。将 TiSe 介导的 SDT 与抗 PD-1 免疫检查点阻断治疗相结合,导致原发肿瘤和远处肿瘤的生长得到有效抑制,同时防止肺转移。这些改善的免疫治疗和抗转移结果与激活的系统性抗肿瘤免疫反应有关,包括 DC 成熟和细胞因子分泌水平的提高、CD8 T 细胞水平的增加以及肿瘤中浸润 T 细胞水平的降低。
TiSe 可用作一种具有良好疗效和高安全性的声敏剂来介导有效的 SDT。TiSe 介导的 SDT 和 PD-1 阻断联合治疗策略通过诱导 ICD 有效激活抗肿瘤免疫反应,从而抑制肿瘤的生长和转移。该联合治疗策略有望成为一种新的基于免疫疗法的胰腺癌患者干预策略。