Dysregulation of intercellular communication in vitro and in vivo via extracellular vesicles secreted by pancreatic duct adenocarcinoma cells and generated under the influence of the AG9 elastin peptide-conditioned microenvironment

Lise Nannan, Salomé Decombis, Christine Terryn, Sandra Audonnet, Jean Michel, Sylvie Brassart-Pasco, Willy Gsell, Uwe Himmelreich, Bertrand Brassart
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Abstract

Pancreatic ductal adenocarcinoma (PDAC) is an aggressive malignancy with poor prognosis due to its highly metastatic profile. Intercellular communication between cancer and stromal cells via extracellular vesicles (EVs) is crucial for the premetastatic microenvironment preparation leading to tumour metastasis. This study shows that under the influence of bioactive peptides derived from the extracellular matrix microenvironment, illustrated here by the AG-9 elastin-derived peptide (EDP), PDAC cells secrete more tumour-derived EVs. Compared to PDAC-derived EVs, tumour-derived EVs resulting from AG-9 treatment (PDAC AG-9-derived EVs) significantly stimulated cell proliferation. At constant amount, tumour-derived EVs were similarly taken up by PDAC and HMEC-1 cells. Tumour-derived EVs stimulated cell proliferation, migration, proteinase secretion, and angiogenesis. Bioluminescence imaging allowed tumour-derived EV/FLuc+ tracking in vivo in a PDAC mouse model. The biodistribution of PDAC AG-9-derived EVs was different to PDAC-derived EVs. Our results demonstrate that the microenvironment, through EDP release, may not only influence the genesis of EVs but may also affect tumour progression (tumour growth and angiogenesis), and metastatic homing by modifying the in vivo biodistribution of tumour-derived EVs. They are potential candidates for targeted drug delivery and modulation of tumour progression, and they constitute a new generation of therapeutic tools, merging oncology and genic therapy.

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通过胰腺导管腺癌细胞分泌的细胞外囊泡以及在 AG9 弹性肽调节的微环境影响下生成的细胞外囊泡对体外和体内细胞间通讯的失调作用
胰腺导管腺癌(PDAC)是一种侵袭性恶性肿瘤,由于其高度转移性,预后很差。癌细胞与基质细胞之间通过胞外囊泡(EVs)进行的细胞间通讯对于导致肿瘤转移的转移前微环境准备至关重要。本研究表明,在细胞外基质微环境中提取的生物活性肽(此处以 AG-9 弹性蛋白衍生肽(EDP)为例)的影响下,PDAC 细胞会分泌更多的肿瘤衍生 EVs。与 PDAC 源性 EVs 相比,AG-9 处理产生的肿瘤源性 EVs(PDAC AG-9 源性 EVs)能显著刺激细胞增殖。在数量恒定的情况下,PDAC 和 HMEC-1 细胞对肿瘤衍生的 EVs 的吸收情况相似。肿瘤衍生的 EV 可刺激细胞增殖、迁移、蛋白酶分泌和血管生成。生物发光成像技术可在 PDAC 小鼠模型中对肿瘤衍生 EV/FLuc+ 进行体内追踪。PDAC AG-9衍生EV的生物分布与PDAC衍生EV不同。我们的研究结果表明,微环境通过 EDP 释放不仅可能影响 EVs 的生成,还可能通过改变肿瘤衍生 EVs 在体内的生物分布来影响肿瘤的进展(肿瘤生长和血管生成)和转移归巢。它们是靶向给药和调节肿瘤进展的潜在候选物质,是新一代的治疗工具,将肿瘤学和基因疗法融为一体。
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