Codelivery Nanosystem Targeting the Deep Microenvironment of Pancreatic Cancer
journal contributionposted on 06.05.2019, 00:00 by Xinli Chen, Wenxi Zhou, Chen Liang, Si Shi, Xianjun Yu, Qinjun Chen, Tao Sun, Yifei Lu, Yujie Zhang, Qin Guo, Chao Li, Yu Zhang, Chen Jiang
Pancreatic ductal adenocarcinoma (PDAC) is considered as one of the most aggressive malignancies due to its unique microenvironment of which the cardinal histopathological feature is the remarkable desmoplasia of the stroma, taking up about 80% of the tumor mass. The desmoplastic stroma negatively affects drug diffusion and the infiltration of T cells, leading to an immunosuppressive microenvironment. However, this unique microenvironment can limit the physical spread of pancreatic cancer via a neighbor suppression effect. Here, a tumor central stroma targeting and microenvironment responsive strategy was applied to generate a nanoparticle coloading paclitaxel and phosphorylated gemcitabine. The designed nanoparticle disrupted the central stroma while preserving the external stroma, thereby promoting the antitumor effectiveness of chemotherapeutics. Additionally, the resulting nanoparticle can modulate the tumor immunosuppressive microenvironment by augmenting the number of cytotoxic T cells and restraining the percentage of T regulatory cells. The relatively intact external stroma can effectively maintain the neighbor suppression effect and prevent tumor metastasis. Combining stroma targeting with the delivery of stimuli-responsive polymeric nanoparticles embodies an effective tumor-tailored drug delivery system.
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tumor-tailored drug delivery systemphosphorylated gemcitabinedesmoplastic stromadrug diffusionantitumor effectivenesstumor metastasisCodelivery Nanosystem Targetingmicroenvironmenthistopathological featurepancreatic cancertumor massPancreatic Cancer Pancreatic ductal adenocarcinomacytotoxic T cellsT cellsPDACnanoparticle coloading paclitaxelneighbor suppression effectDeep Microenvironment