4.8 Article

The effect of internalizing human single chain antibody fragment on liposome targeting to epithelioid and sarcomatoid mesothelioma

期刊

BIOMATERIALS
卷 32, 期 10, 页码 2605-2613

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2010.11.073

关键词

Immunoliposomes; scFv antibody; Mesothelioma; SPECT/CT imaging; Tumor targeting

资金

  1. NIH [R01 CA135358]
  2. American Cancer Society [IRG-97-150-10, R01 CA118919, R01 CA129491]

向作者/读者索取更多资源

Immunoliposomes (Its) anchored with internalizing human antibodies capable of targeting all subtypes of mesothelioma can be useful for targeted imaging and therapy of this malignant disease. The objectives of this study were to evaluate both the in vitro and in vivo tumor targeted internalization of novel internalizing human single chain antibody (scFv) anchored ILs on both epithelioid (M28) and sarcomatoid (VAMT-1) subtypes of human mesothelioma. ILs were prepared by post-insertion of mesothelioma-targeting human scFv (M1) onto preformed liposomes and radiolabeled with In-111 (In-111-IL-M1), along with control non-targeted liposomes (In-111-CL). Incubation of In-111-IL-M1 with M28, VAMT-1, and a control non-tumorigenic cell line (BPH-1) at 37 degrees C for 24 h revealed efficient binding and rapid internalization of ILs into both subtypes of tumor cells but not into the BPH-1 cells; internalization accounted for approximately 81-94% of total cell accumulation in mesothelioma cells compared to 37 -55% in control cells. In tumor-bearing mice intravenous (i.v.) injection of In-111-IL-M1 led to remarkable tumor accumulation: 4% and 4.7% injected dose per gram (% ID/g) for M28 and VAMT-1 tumors, respectively, 48 h after injection. Furthermore, tumor uptake of In-111-IL-M1 in live xenograft animal models was verified by single photon emission computed tomography (SPECT/CT). In contrast, i.v. injection of In-111-CL in tumor-bearing mice revealed very low uptake in both subtypes of mesothelioma, 48 h after injection. In conclusion, M1 scFv-anchored ILs showed selective tumor targeting and rapid internalization into both epithelioid and sarcomatoid subtypes of human mesothelioma, demonstrating its potential as a promising vector for enhanced tumor drug targeting. (C) 2010 Elsevier Ltd. All rights reserved.

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