Formulated siRNAs targeting Rankl prevent osteolysis and enhance chemotherapeutic response in osteosarcoma models

兰克尔 骨肉瘤 癌症研究 小干扰RNA 骨溶解 破骨细胞 骨保护素 医学 骨吸收 化学 基因沉默 基因敲除 药理学 受体 激活剂(遗传学) 内科学 转染 外科 生物化学 基因
作者
Julie Rousseau,Virginie Escriou,François Lamoureux,Régis Brion,Julie Chesneau,Séverine Battaglia,Jérôme Amiaud,Daniel Scherman,Dominique Heymann,Françoise Rédini,Valérie Trichet
出处
期刊:Journal of Bone and Mineral Research [Wiley]
卷期号:26 (10): 2452-2462 被引量:34
标识
DOI:10.1002/jbmr.455
摘要

Abstract The development of osteosarcoma, the most common malignant primary bone tumor is characterized by a vicious cycle established between tumor proliferation and paratumor osteolysis. This osteolysis is mainly regulated by the receptor activator of nuclear factor κB ligand (RANKL). Preclinical studies have demonstrated that Rankl blockade by soluble receptors is an effective strategy to prevent osteolytic lesions leading to osteosarcoma inhibition. A new therapeutic option could be to directly inhibit Rankl expression by small interfering RNAs ( Rkl‐ siRNAs) and combine these molecules with chemotherapy to counteract the osteosarcoma development more efficiently. An efficient siRNA sequence directed against both mouse and rat mRNAs coding Rankl was first validated in vitro and tested in two models of osteosarcoma: a syngenic osteolytic POS‐1 model induced in immunocompetent mice and a xenograft osteocondensant model of rat OSRGA in athymic mice. Intratumor injections of Rankl ‐directed siRNAs in combination with the cationic liposome RPR209120/DOPE reduced the local and systemic Rankl production and protected bone from paratumor osteolysis. Although Rkl‐ siRNAs alone had no effect on tumor development in both osteosarcoma models, it significantly blocked tumor progression when combined with ifosfamide compared with chemotherapy alone. Our results indicate that siRNAs could be delivered using cationic liposomes and thereby could inhibit Rankl production in a specific manner in osteosarcoma models. Moreover, the Rankl inhibition mediated by RNA interference strategy improves the therapeutic response of primary osteosarcoma to chemotherapy. © 2011 American Society for Bone and Mineral Research

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