用于光生物调节的吲哚菁绿共轭光治疗纳米颗粒

K. Shinoda, A. Suganami, Y. Moriya, Masamichi Yamashita, Tsutomu Tanaka, A. Suzuki, H. Suito, Y. Akutsu, Kengo Saito, Y. Shinozaki, Kazuoki Isojima, Naohito Nakamura, Yasushi Miyauchi, H. Shirasawa, H. Matsubara, Y. Okamoto, T. Nakayama, Y. Tamura
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引用次数: 0

摘要

光疗学代表了一种非常有前途的癌症治疗范例,尽管为临床使用选择合适的光学成像仪仍然具有挑战性。我们评估了脂质体配方的磷脂偶联吲哚菁绿(标记为LP-iDOPE)的光治疗纳米颗粒相关特性,用于近红外(NIR)-发光二极管(LED)光照射器进行光生物调节的癌症诊断和治疗。使用体内近红外荧光成像,我们证明LP-iDOPE选择性地递送到肿瘤部位,具有高积累和长半衰期。NIR-LED光照射LP-iDOPE积聚的肿瘤区域后,效应CD8+ T细胞在次级淋巴器官被激活并迁移,随后释放干扰素-γ和肿瘤坏死因子-α等细胞因子,导致肿瘤有效消退。我们的癌症免疫治疗策略使用LP-iDOPE作为光治疗纳米颗粒和NIR-LED光照射器作为光生物调节装置,代表了一种有前途的非侵入性癌症治疗方法。
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Indocyanine Green Conjugated Phototheranostic Nanoparticle for Photobiomodulation
Phototheranostics represents a highly promising paradigm for cancer therapy, although selecting an appropriate optical imager for clinical use remains challenging. We evaluated the phototheranostic nanoparticle-related properties of liposomally formulated phospholipid-conjugated indocyanine green, denoted as LP-iDOPE, for cancer diagnosis and treatment using photobiomodulation with a near-infrared (NIR)-light emitting diode (LED) light irradiator. Using in vivo NIR fluorescence imaging, we demonstrated that LP-iDOPE was selectively delivered to tumor sites with high accumulation and a long half-life. Following NIR-LED light irradiation of the tumor region of LP-iDOPE accumulation, effector CD8+ T cells were activated at the secondary lymphoid organs, migrated, and subsequently released cytokines including interferon-γ and tumor necrosis factor-α, resulting in effective tumor regression. Our cancer immunotherapy strategy using LP-iDOPE as a phototheranostic nanoparticle and an NIR-LED light irradiator as a photobiomodulation device represents a promising approach to noninvasive cancer therapy.
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