Cheng Kenneth T., Ferro-Flores Guillermina, Arteaga de Murphy Consuelo
National Center for Biotechnology Information, NLM, NIH,
Departamento de Materiales Radiactivos, Instituto Nacional de Investigaciones Nucleares,
Tc-Ethylenediamine-,-diacetic acid/hydrazinonicotinamide-[Lys]-bombesin (Tc-EDDA/HYNIC-[Lys]-BN) is a peptide analog of human gastrin-releasing peptide (GRP) conjugated with Tc, and it was developed for planar gamma and single-photon emission computed tomography (SPECT) imaging of tumors with overexpressed GRP receptors (GRP-R) (1). Tc is a gamma emitter with a physical half-life () of 6.02 h. The amphibian bombesin (BBN or BN), a peptide of 14 amino acids, is an analog of human GRP, a peptide of 27 amino acids, that binds to GRP-R (BB2) with high affinity and specificity (2, 3). Both GRP and BN share an amidated C-terminus sequence homology of seven amino acids, -Trp-Ala-Val-Gly-His-Leu-Met-NH. BN-Like peptides have been shown to induce various biological responses in diverse tissues, including the central nervous system (CNS) and the gastrointestinal (GI) system (4, 5). They also act as potential growth factors for both normal and neoplastic tissues. Specific BN receptors (BN-R) have been identified in CNS and GI tissues and a number of tumor cell lines. The BN-R superfamily includes at least four different subtypes, namely the GRP-R subtype, the neuromedin B receptor subtype (BB1), the BB3 subtype, and the BB4 subtype (6). Overexpression of GRP-R in various human tumors (e.g., breast, prostate, lung, colon, ovarian, and pancreatic cancers) provides opportunities to image tumors with the use of specific molecular imaging agents designed to target the GRP-R (3, 7-10). There have been varying degrees of success in the current development of GRP-R–targeted radiopharmaceuticals for diagnostic or therapeutic applications (10). Various BN analogs have been labeled with Tc and In for SPECT imaging (1, 11-13). Baidoo et al. (12) synthesized and radiolabeled [Lys]-BN (Pyr-Gln-Lys-Leu-Gly-Asn-Gln-Trp-Ala-Val-Gly-His-Leu-Met-NH) with Tc through the diaminedithiol (DADT) bifunctional chelating agent. The Tc-DADT-[Lys]-BN showed high affinity to the BN-R in rat brain membrane preparations. Because of its favorable physical properties, Tc is the radionuclide of choice for routine clinical applications of SPECT imaging (14). HYNIC is a bifunctional coupling agent for Tc-labeling of peptides that can achieve high specific activities without interfering with the amino acid sequence responsible for receptor binding (15-17). In this approach, Tc is bound to the hydrazine group, and other coordination sites are occupied by one or more coligands . The choice of coligand can influence the stability and hydrophilicity of the radiolabeled peptide (15, 18). Convenient freeze-dried kit formulations with HYNIC for labeling peptides with Tc have been achieved (19). Using the HYNIC labeling strategy and EDDA/-tris(hydroxymethyl)-methylglycine (tricine) as the coligands, Ferro-Flores et al. (1) successfully prepared Tc-EDDA/HYNIC-[Lys]-BN as a potential molecular imaging probe for GRP-R.
锝标记的乙二胺-N,N'-二乙酸/肼基烟酰胺-[赖氨酸]-蛙皮素(Tc-EDDA/HYNIC-[赖氨酸]-BN)是一种与锝结合的人胃泌素释放肽(GRP)的肽类似物,它被开发用于对过表达GRP受体(GRP-R)的肿瘤进行平面γ和单光子发射计算机断层扫描(SPECT)成像(1)。锝是一种γ发射体,物理半衰期(t1/2)为6.02小时。两栖类蛙皮素(BBN或BN)是一种由14个氨基酸组成的肽,是27个氨基酸的人GRP的类似物,它以高亲和力和特异性与GRP-R(BB2)结合(2,3)。GRP和BN都有一个由七个氨基酸组成的酰胺化C末端序列同源性,即-Trp-Ala-Val-Gly-His-Leu-Met-NH2。已证明类蛙皮素肽在包括中枢神经系统(CNS)和胃肠道(GI)系统在内的多种组织中诱导各种生物学反应(4,5)。它们还作为正常组织和肿瘤组织的潜在生长因子。在CNS、GI组织和许多肿瘤细胞系中已鉴定出特异性BN受体(BN-R)。BN-R超家族至少包括四种不同的亚型,即GRP-R亚型、神经降压素B受体亚型(BB1)、BB3亚型和BB4亚型(6)。GRP-R在各种人类肿瘤(如乳腺癌、前列腺癌、肺癌、结肠癌、卵巢癌和胰腺癌)中的过表达为使用设计用于靶向GRP-R的特异性分子成像剂对肿瘤进行成像提供了机会(3,7-10)。目前开发用于诊断或治疗应用的靶向GRP-R的放射性药物取得了不同程度的成功(10)。各种BN类似物已用锝和铟标记用于SPECT成像(1,11-13)。拜杜等人(12)通过二胺二硫醇(DADT)双功能螯合剂合成并用锝标记了[赖氨酸]-BN(Pyr-Gln-Lys-Leu-Gly-Asn-Gln-Trp-Ala-Val-Gly-His-Leu-Met-NH2)。Tc-DADT-[赖氨酸]-BN在大鼠脑膜制剂中对BN-R显示出高亲和力。由于其良好的物理性质,锝是SPECT成像常规临床应用的首选放射性核素(14)。HYNIC是一种用于肽的锝标记的双功能偶联剂,它可以在不干扰负责受体结合的氨基酸序列的情况下实现高比活度(15-�17)。在这种方法中,锝与肼基结合,其他配位位点被一个或多个共配体占据。共配体的选择可以影响放射性标记肽的稳定性和亲水性(15,18)。已经实现了使用HYNIC的方便的冻干试剂盒配方用于用锝标记肽(19)。使用HYNIC标记策略并以EDDA/N,N,N',N'-四(羟甲基)甘氨酸(tricine)作为共配体,费罗-弗洛雷斯等人(1)成功制备了Tc-EDDA/HYNIC-[赖氨酸]-BN作为GRP-R的潜在分子成像探针。