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光化学内化增强巨噬细胞递送化疗。

Photochemical internalization enhanced macrophage delivered chemotherapy.

机构信息

Beckman Laser Institute and Medical Clinic, University of California, Irvine 1002 Health Sciences Rd, Irvine, CA, 92617, United States.

Beckman Laser Institute and Medical Clinic, University of California, Irvine 1002 Health Sciences Rd, Irvine, CA, 92617, United States.

出版信息

Photodiagnosis Photodyn Ther. 2018 Mar;21:156-162. doi: 10.1016/j.pdpdt.2017.12.002. Epub 2017 Dec 6.

Abstract

BACKGROUND

Macrophage (Ma) vectorization of chemotherapeutic drugs has the advantage for cancer therapy in that it can actively target and maintain an elevated concentration of drugs at the tumor site, preventing their spread into healthy tissue. A potential drawback is the inability to deliver a sufficient number of drug-loaded Ma into the tumor, thus limiting the amount of active drug delivered. This study examined the ability of photochemical internalization (PCI) to enhance the efficacy of released drug by Ma transport.

METHODS

Tumor spheroids consisting of either F98 rat glioma cells or F98 cells combined with a subpopulation of empty or doxorubicin (DOX)-loaded mouse Ma (RAW264.7) were used as in vitro tumor models. PCI was performed with the photosensitizer AlPcS and laser irradiation at 670 nm.

RESULTS

RAW264.7 Ma pulsed with DOX released the majority of the incorporated DOX within two hours of incubation. PCI significantly increased the toxicity of DOX either as pure drug or derived from monolayers of DOX-loaded Ma. Significant growth inhibition of hybrid spheroids was also observed with PCI even at subpopulations of DOX-loaded Ma as low as 11% of the total initial hybrid spheroid cell number.

CONCLUSION

Results show that RAW264.7 Ma, pulsed with DOX, could effectively incorporate and release DOX. PCI significantly increased the ability of both free and Ma-released DOX to inhibit the growth of tumor spheroids in vitro. The growth of F98 + DOX loaded Ma hybrid spheroids were synergistically reduced by PCI, compared to either photodynamic therapy or released DOX acting alone.

摘要

背景

将化疗药物递送至巨噬细胞(Ma)载体对于癌症治疗具有优势,因为它可以主动靶向并维持肿瘤部位药物的高浓度,防止药物扩散到健康组织中。一个潜在的缺点是无法将足够数量的载药 Ma 递送至肿瘤中,从而限制了有效药物的递送量。本研究检查了光化学内化(PCI)通过 Ma 转运增强释放药物功效的能力。

方法

使用由 F98 大鼠神经胶质瘤细胞或 F98 细胞与空载或阿霉素(DOX)负载的小鼠 Ma(RAW264.7)亚群组成的肿瘤球体作为体外肿瘤模型。用光敏剂 AlPcS 和 670nm 激光照射进行 PCI。

结果

用 DOX 脉冲处理的 RAW264.7 Ma 在孵育两小时内释放了大部分结合的 DOX。PCI 显著增加了游离 DOX 或源自 DOX 负载 Ma 单层的 DOX 的毒性。即使在 DOX 负载 Ma 的亚群低至总初始杂交球体细胞数的 11%时,也观察到杂交球体的显著生长抑制。

结论

结果表明,用 DOX 脉冲处理的 RAW264.7 Ma 可以有效地结合和释放 DOX。PCI 显著提高了游离和 Ma 释放的 DOX 抑制体外肿瘤球体生长的能力。与单独的光动力疗法或单独释放的 DOX 相比,PCI 协同降低了 F98+DOX 负载 Ma 杂交球体的生长。

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