PO.IM01.10 · 免疫学

将优化的irinotecan制剂与自扩增RNA联合用于治疗免疫抑制性肺转移黑色素瘤模型

Combining an optimized irinotecan formulation with self-amplyfing RNA to treat an immunosuppressive lung metastasis melanoma model

海报缩略图:将优化的irinotecan制剂与自扩增RNA联合用于治疗免疫抑制性肺转移黑色素瘤模型
编号 1554 展板 8 时间 4/20 09:00–12:00 区域 Section 8 主讲 XuXin Sun, BS
分会场 Combination Immunotherapies
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作者与单位 Authors & Affiliations

XuXin Sun1, Nasim Sarrami1, Irafasha C. Casmil2, Sijie Zhang1, Marcel B. Bally3, Anna K. Blakney2

1BC Cancer Research Institute, Vancouver, BC, Canada,2Michael Smith Laboratory, University of British Columbia, Vancouver, BC, Canada,3Sr. Research Scientist & Unit Head, Adv. Therapeutics, BC Cancer Research Centre, Vancouver, BC, Canada

摘要 Abstract

中文摘要
背景:黑色素瘤是一种侵袭性皮肤癌,在其晚期常转移至肺部。黑色素瘤的肿瘤微环境通常为免疫抑制性,缺乏具有强抗肿瘤活性的免疫细胞。虽然基于白细胞介素-12(IL-12)的免疫治疗已显示出治疗黑色素瘤的潜力,但其临床应用因显著毒性而受限。为此,我们正在开发一种自扩增RNA(saRNA)-脂质纳米颗粒(LNP)系统以在体内产生IL-12。所选制剂类似于Onpattro所用的制剂,后者是一种经临床批准的siRNA制剂,用于将RNA递送至肝细胞。将IL-12 saRNA递送至肝细胞将提高IL-12的血浆水平并维持其表达,从而刺激免疫反应。该saRNA LNP制剂正与一种新型irinotecan脂质体制剂(Irinosome High C)联合使用。该制剂可将肿瘤免疫微环境(TIME)从免疫抑制性转变为免疫支持性。我们认为该制剂非常适合与IL-12 saRNA-LNP联合使用。 方法:在C57BL/6小鼠静脉(iv)给药后,确定了saRNA-LNP安全有效(以血浆IL-12水平判断)的剂量。对于Irinosome High C,在iv给药后确定了安全有效(以抗肿瘤活性评估判断)的剂量。这些疗法被单独及联合用于治疗一种肺转移模型,其中小鼠经iv注射B16F10黑色素瘤细胞。在细胞注射后18天(末次治疗后6天)测定肺部肿瘤负荷,并收集总生存数据及健康状态数据。作为治疗后时间的函数,分离小鼠脾细胞并与B16F10细胞体外共培养,测定免疫介导的细胞杀伤。 结果:与仅接受任一单药治疗的小鼠相比,IL-12 saRNA-LNP与Irinosome High C联合治疗显著改善了B16荷瘤小鼠的生存并降低了肺部肿瘤负荷。脾细胞检测证实IL-12治疗提高了关键免疫细胞因子的水平,包括IL-12、IL-2和IFN-gamma,表明产生了强劲的抗肿瘤免疫反应。 结论:Irinosome High C与IL-12 saRNA-LNP联合代表了一种治疗肺转移性疾病(晚期黑色素瘤患者所见的一种危及生命的并发症)的有前景的新方法。该策略可通过使用一种TIME调节剂结合IL-12介导的免疫活化,提供一种更安全、更有效的治疗选择。目前正在进行研究,以更好地理解驱动增强抗肿瘤反应的潜在机制,并开发相关策略,以推动该方法在多种肿瘤模型中的应用以及从实验室向患者的转化。
查看英文原文 English abstract
Background: Melanoma is an aggressive skin cancer that frequently metastasizes to the lungs in its advanced stages. The tumor microenvironment of melanoma is typically immunosuppressive; lacking immune cells with strong antitumor activity. While interleukin-12 (IL-12) based immunotherapy has shown potential for treating melanoma, its clinical application is limited by significant toxicity. To address this, we are developing a self-amplifying RNA (saRNA)-lipid nanoparticle (LNP) system to produce IL-12 in vivo. The formulation selected is similar to that used for Onpattro, a clinically approved formulation of siRNA designed to deliver RNA to liver hepatocytes. IL-12 saRNA delivery to hepatocytes will increase plasma levels of IL-12 and sustain expression which should stimulate an immune response. This saRNA LNP formulation is being combined with a novel liposomal formulation of irinotecan (Irinosome High C). This formulation can improve the tumor immune microenvironment (TIME)from an immunosuppressive one to an immunosupportive one. We believe that this formulation is ideally suited for combination with IL-12 saRNA-LNPs. Method: The safe and effective (as judged by IL-12 levels on the plasma) dose of saRNA-LNPs was determined in C57BL/6 mice following intravenous (iv) administration. A safe and effective (as judged by assessments of anti-tumor activity) was determined for Irinosome High C following iv administration. These treatments were used alone and in combination to treat a model lung metastasis model where mice were injected iv with B16F10 melanoma cells. Tumor burden in the lungs was determined 18 days after cell injection (6 days after last treatment) and overall survival data was collected along with health status data. As a function of time after treatments splenocytes from mice were isolated and co-cultured with B16F10 cells in vitro and immune mediated cell kill was determined. Results: The combination of IL-12 saRNA-LNP and Irinosome High C significantly improved survival and reduced lung tumor burden in B16 tumor bearing mice compared to those receiving either treatment alone. Splenocyte assays confirmed that IL-12 treatment enhanced levels of key immune cytokines, including IL-12, IL-2, and IFN-gamma, indicating a robust antitumor immune response. Conclusion: The combination of Irinosome High C and IL-12 saRNA-LNPs represents a promising new approach for treating lung metastatic disease a life-threatening complication seen in patients with late-stage melanoma. This strategy may offer a safer, more effective treatment option through use of a TIME modulatory agent with IL-12 mediated immune activation. Studies are on going to better understand the underlying mechanisms driving enhanced antitumor responses and the development of strategies to see this approach transition in various tumor models and from the lab to patients.
利益披露 Disclosure
X. Sun, None.. N. Sarrami, None.. I. C. Casmil, None.. S. Zhang, None.. A. K. Blakney, None.

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