Buchsbaum Donald J, Chaudhuri Tandra R, Yamamoto Masato, Zinn Kurt R
Department of Radiation Oncology, University of Alabama at Birmingham 35294-6832, USA.
Ann Nucl Med. 2004 Jun;18(4):275-83. doi: 10.1007/BF02984464.
An approach to image radiolabeled peptide localization at tumor sites by inducing tumor cells to synthesize membrane expressed human somatostatin receptor subtype 2 (hSSTr2) with a high affinity for radiolabeled somatostatin analogues is described. The use of gene transfer technology to induce expression of high affinity membrane hSSTr2 can enhance the specificity and degree of radiolabeled peptide localization in tumors. Employing this strategy, induction of high levels of hSSTr2 expression with selective tumor uptake of radiolabeled peptides was achieved in both subcutaneous non-small cell lung cancer and intraperitoneal ovarian cancer mouse human tumor xenograft models. The features of this genetic transduction imaging approach are: (1) constitutive expression of a tumor-associated receptor is not required; (2) tumor cells are altered to express a new target receptor or increased quantities of a constitutive receptor at levels which may significantly increase tumor targeting of radiolabeled peptides compared to uptake in normal tissues; (3) gene transfer can be accomplished by local or regional injection of adenoviral vectors; (4) it is feasible to target adenovirus vectors to tumor cells by modifying adenoviral tropism (binding) or by the use of tumor-specific promoters such that the hSSTr2 will be specifically expressed in the desired tumor; and (5) this technique can be used to image expression of a second therapeutic gene.
描述了一种通过诱导肿瘤细胞合成对放射性标记的生长抑素类似物具有高亲和力的膜表达人生长抑素受体亚型2(hSSTr2)来定位肿瘤部位放射性标记肽的方法。利用基因转移技术诱导高亲和力膜hSSTr2的表达可提高放射性标记肽在肿瘤中的定位特异性和程度。采用这种策略,在皮下非小细胞肺癌和腹腔内卵巢癌小鼠人肿瘤异种移植模型中均实现了高水平hSSTr2表达的诱导以及放射性标记肽的选择性肿瘤摄取。这种基因转导成像方法的特点是:(1)不需要组成性表达肿瘤相关受体;(2)肿瘤细胞被改变以表达新的靶受体或增加组成性受体的数量,与正常组织摄取相比,这些受体的水平可能会显著增加放射性标记肽的肿瘤靶向性;(3)基因转移可以通过局部或区域注射腺病毒载体来完成;(4)通过改变腺病毒嗜性(结合)或使用肿瘤特异性启动子将腺病毒载体靶向肿瘤细胞是可行的,这样hSSTr2将在所需肿瘤中特异性表达;(5)该技术可用于对第二个治疗基因的表达进行成像。