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等离子体金纳米星光免疫治疗后免疫细胞追踪的活体光学成像

英文原题:Intravital optical imaging for immune cell tracking after photoimmunotherapy with plasmonic gold nanostars.

查看英文原题

Intravital optical imaging for immune cell tracking after photoimmunotherapy with plasmonic gold nanostars.

PubMed 2022/08/31(内容时间) Nanotechnology Q3 · IF 2.9(JCR 2025)

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中文摘要

膀胱癌已被列为男性和女性中最常见的癌症之一,约一半的诊断属于晚期和/或转移性疾病。我们通过将金纳米星介导的光热疗法与检查点抑制剂免疫疗法相结合,开发了一种新型癌症治疗方法,用于治疗膀胱癌。小鼠动物模型的实验结果表明,我们开发的光免疫疗法比任何单独研究的治疗都更有效。此外,我们使用背侧皮肤褶皱视窗动物模型的活体光学成像来研究光免疫疗法后远端肿瘤中的免疫反应和免疫细胞积聚。所用小鼠在单核细胞、NK 细胞和树突状细胞上具有 CX3CR1-GFP 受体,使我们能够通过荧光成像动态追踪它们的存在。我们的原理验证性研究结果表明,光免疫疗法触发了抗癌免疫反应,产生抗癌免疫细胞,这些细胞积聚在转移性肿瘤中。我们的研究结果表明,活体光学成像是未来研究中研究免疫反应和光免疫疗法机制的一种高效且多功能的工具。

展开英文摘要原文

Bladder cancer has been ranked as one of the most commonly occurring cancers in men and women with approximately half of the diagnoses being the late stage and/or metastatic diseases.

We have developed a novel cancer treatment by combining gold nanostar-mediated photothermal therapy with checkpoint inhibitor immunotherapy to treat bladder cancer. Experiment results with a murine animal model demonstrated that our developed photoimmunotherapy therapy is more efficacious than any individual studied treatment.

In addition, we used intravital optical imaging with a dorsal skinfold window chamber animal model to study immune responses and immune cell accumulation in a distant tumor following our photoimmunotherapy. The mice used have the CX3CR1-GFP receptor on monocytes, natural killer cells, and dendritic cells allowing us to dynamically track their presence by fluorescence imaging.

Our proof-of-principle study results showed that the photoimmunotherapy triggered anti-cancer immune responses to generate anti-cancer immune cells which accumulate in metastatic tumors.

Our study results illustrate that intravital optical imaging is an efficient and versatile tool to investigate immune responses and mechanisms of photoimmunotherapy in future studies.

论文信息

作者
Chorniak E、Liu Y、Odion R、Etienne W、Canning A、Nair SK、Maccarini P、Palmer GM
第一作者单位
Department of Radiation Oncology, Duke University Medical Center, Durham, NC 27710, United States of America.United States
通讯作者单位
Department of Biomedical Engineering, Duke University, Durham, NC 27708, United States of America.United States
期刊
Nanotechnology2022 Aug 31
原文标识
PubMed 35961291 · DOI 10.1088/1361-6528/ac893a