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光动力基质耗竭增强三维胰腺导管腺癌肿瘤模型中治疗性纳米颗粒的递送。

Photodynamic Stromal Depletion Enhances Therapeutic Nanoparticle Delivery in 3D Pancreatic Ductal Adenocarcinoma Tumor Models.

机构信息

Department of Physics, University of Massachusetts at Boston, Boston, MA.

Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill, NC, 27599, USA.

出版信息

Photochem Photobiol. 2023 Jan;99(1):120-131. doi: 10.1111/php.13663. Epub 2022 Aug 3.

Abstract

Pancreatic ductal adenocarcinoma (PDAC) is among the most lethal of human malignancies. PDAC is characterized by dense fibrous stroma which obstructs drug delivery and plays complex tumor-promoting roles. Photodynamic therapy (PDT) is a light-based modality which has been demonstrated to be clinically feasible and effective for tumors of the pancreas. Here, we use in vitro heterocellular 3D co-culture models in conjunction with imaging, bulk rheology and microrheology to investigate photodegradation of non-cellular components of PDAC stroma (photodynamic stromal depletion, PSD). By measuring the rheology of extracellular matrix (ECM) before and after PDT we find that softening of ECM is concomitant with increased transport of nanoparticles (NPs). At the same time, as shown by us previously, photodestruction of stromal fibroblasts leads to enhanced tumor response to PDT. Here we specifically evaluate the capability of PSD to enhance RNA nanomedicine delivery, using a NP carrying an inhibitor of miR-21-5P, a PDAC oncomiR. We confirm improved delivery of this therapeutic NP after PSD by observation of increased expression of PDCD4, a protein target of miR-21-5P. Collectively, these results in 3D tumor models suggest that PSD could be developed to enhance delivery of other cancer therapeutics and improve tumor response to treatment.

摘要

胰腺导管腺癌 (PDAC) 是人类恶性肿瘤中最致命的一种。PDAC 的特征是致密的纤维基质,它阻碍了药物输送,并发挥着复杂的促进肿瘤的作用。光动力疗法 (PDT) 是一种基于光的治疗模式,已被证明对胰腺肿瘤具有临床可行性和有效性。在这里,我们使用体外异细胞 3D 共培养模型结合成像、整体流变学和微流变学来研究 PDAC 基质中非细胞成分的光降解(光动力基质耗竭,PSD)。通过测量 PDT 前后细胞外基质 (ECM) 的流变学,我们发现 ECM 的软化伴随着纳米颗粒 (NPs) 的运输增加。同时,正如我们之前所表明的,基质成纤维细胞的光破坏导致对 PDT 的肿瘤反应增强。在这里,我们特别评估了 PSD 增强 RNA 纳米药物递送的能力,使用携带 miR-21-5P 抑制剂的 NP,miR-21-5P 是一种 PDAC 致癌 miRNA。通过观察 miR-21-5P 的蛋白靶标 PDCD4 的表达增加,我们证实了 PSD 后这种治疗性 NP 的递送得到了改善。总之,这些 3D 肿瘤模型的结果表明,PSD 可以被开发用于增强其他癌症治疗药物的递送,并提高肿瘤对治疗的反应。

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