单核吞噬细胞在含阿霉素脂质体转运到实体瘤中的作用的研究。

G Storm, H J Van Gessel, P A Steerenberg, P A Speth, F H Roerdink, J Regts, M Van Veen, W H De Jong
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引用次数: 14

摘要

本文研究了单核吞噬细胞系统(MPS)细胞是否作为含阿霉素(DXR)脂质体进入实体瘤的运输系统。研究在携带Lou/M Wsl的实体IgM免疫细胞瘤大鼠中进行。在该肿瘤系统中,在DXR和顺铂诱导的肿瘤消退期间观察到巨噬细胞积累。荷瘤大鼠静脉注射1 mg/kg DXR(游离或包埋于脂质体中),连续4天。通过组织学和细胞学比较游离和脂质体DXR治疗对肿瘤细胞组成的影响。DXR脂质体(唇DXR)治疗诱导巨噬细胞积累类似于游离DXR。两种治疗方法在肿瘤细胞变化方面没有发现差异。用流式细胞术测定游离或唇部DXR处理期间不同时间肿瘤相关细胞DXR的含量。大多数dxr荧光与死细胞和细胞碎片有关。游离DXR处理动物肿瘤中分离的巨噬细胞与唇部DXR处理动物中分离的巨噬细胞中DXR含量无明显差异。为了研究dxr -脂质体是否被肿瘤组织(通过巨噬细胞或直接由组织本身)摄取,我们给荷瘤大鼠注射了[3H]菊粉标记的dxr -脂质体。将未处理大鼠的放射性标记唇DXR与未处理大鼠的放射性标记唇DXR诱导巨噬细胞聚集的分布进行比较。在未处理和预处理的动物中,给予的3h剂量大部分在肝脏和脾脏中恢复。只有一小部分从肿瘤和其他组织中恢复。这一分数不高于同等数量的游离[3H]菊粉注射时得到的分数。总之,本研究表明,即使在治疗过程中巨噬细胞通过内皮屏障,dxr -脂质体也不会进入实体IgM免疫细胞瘤。因此,巨噬细胞介导的DXR脂质体进入肿瘤的运输不太可能参与脂质体包裹DXR诱导肿瘤消退的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the role of mononuclear phagocytes in the transportation of doxorubicin-containing liposomes into a solid tumor.

The present paper is concerned with the question whether cells of the mononuclear phagocyte system (MPS) function as a transport system for doxorubicin (DXR)-containing liposomes into solid tumors. The investigations were performed in solid IgM immunocytoma bearing Lou/M Wsl rats. In this tumor system macrophage accumulation was observed during DXR and cisplatin induced tumor regression. Tumor-bearing rats were treated i.v. with 1 mg/kg DXR (either free or entrapped in liposomes) for 4 consecutive days. Changes in the cellular composition of the tumor were studied by histology and cytology comparing free and liposomal DXR treatment. Therapy with DXR-liposomes (lip DXR) induced macrophage accumulation similar to free DXR. No differences in cellular changes in the tumor between both types of treatment were found. The DXR-content of tumor-associated cells was measured at various times during treatment with free or lip DXR by means of flow cytometry. Most DXR-fluorescence was associated with dead cells and cellular debris. No clear-cut differences in DXR-content were found between macrophages isolated from tumors of free DXR treated animals and those isolated from lip DXR treated animals. In order to investigate whether DXR-liposomes are taken up by tumor tissue (either via macrophages or directly by the tissue itself), [3H]inulin-labeled DXR-liposomes were administered to tumor-bearing rats. The distribution of radiolabeled lip DXR in non-treated rats was compared with that in rats which were pretreated with non-radiolabeled lip DXR to induce macrophage accumulation. In both untreated and pretreated animals most of the administered 3H-dose was recovered in liver and spleen. Only a minor fraction was recovered from the tumor and other tissues. This fraction was not higher than that obtained when a comparable amount of free [3H]inulin was injected. In conclusion, this study suggests that DXR-liposomes do not enter the solid IgM immunocytoma, even when during therapy macrophages pass the endothelial barrier. Therefore, it is unlikely that macrophage-mediated transportation of DXR-liposomes into the tumor is involved in the mechanism of tumor regression induced by liposome-entrapped DXR.

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