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用放射性标记的α-黑素细胞刺激素进行受体介导的黑色素瘤靶向:配体净电荷的相关性

Receptor-Mediated Melanoma Targeting with Radiolabeled α-Melanocyte-Stimulating Hormone: Relevance of the Net Charge of the Ligand.

作者信息

Bapst Jean-Philippe, Eberle Alex N

机构信息

Laboratory of Endocrinology, Department of Biomedicine, University Hospital and University Children's Hospital, University of Basel, Basel, Switzerland.

Collegium Helveticum, ETH Zurich, Zurich, Switzerland.

出版信息

Front Endocrinol (Lausanne). 2017 Apr 26;8:93. doi: 10.3389/fendo.2017.00093. eCollection 2017.

Abstract

A majority of melanotic and amelanotic melanomas overexpress melanocortin type 1 receptors (MC1Rs) for α-melanocyte-stimulating hormone. Radiolabeled linear or cyclic analogs of α-MSH have a great potential as diagnostic or therapeutic tools for the management of malignant melanoma. Compounds such as [In]DOTA-NAP-amide exhibit high affinity for the MC1R , good tumor uptake , but they may suffer from relatively high kidney uptake and retention . We have shown previously that the introduction of negative charges into radiolabeled DOTA-NAP-amide peptide analogs may enhance their excretion and reduce kidney retention. To address the question of where to place negative charges within the ligand, we have extended these studies by designing two novel peptides, Ac-Nle-Asp-His-d-Phe-Arg-Trp-Gly-Lys(DOTA)-d-Asp-d-Asp-OH (DOTA-NAP-d-Asp-d-Asp) with three negative charges at the -terminal end (overall net charge of the molecule -2) and DOTA-Gly-Tyr(P)-Nle-Asp-His-d-Phe-Arg-Trp-NH (DOTA-Phospho-MSH) with two negative charges in the -terminal region (net charge -1). The former peptide showed markedly reduced receptor affinity and biological activity by >10-fold compared to DOTA-NAP-amide as reference compound, and the latter peptide displayed similar bioactivity and receptor affinity as the reference compound. The uptake by melanoma tumor tissue of [In]DOTA-Phospho-MSH was 7.33 ± 0.47 %ID/g 4 h after injection, i.e., almost equally high as with [In]DOTA-NAP-amide. The kidney retention was 2.68 ± 0.18 %ID/g 4 h after injection and hence 44% lower than that of [In]DOTA-NAP-amide. Over an observation period from 4 to 48 h, the tumor-to-kidney ratio of [In]DOTA-Phospho-MSH was 35% more favorable than that of the reference compound. In a comparison of DOTA-NAP-d-Asp-d-Asp, DOTA-Phospho-MSH and DOTA-NAP-amide with five previously published analogs of DOTA-NAP-amide that altogether cover a range of peptides with an overall net charge between +2 and -2, we now demonstrate that a net charge of -1, with the extra negative charges preferably placed in the -terminal region, has led to the lowest kidney uptake and retention. Charges of +2 or -2 markedly increased kidney uptake and retention. In conclusion, the novel DOTA-Phospho-MSH may represent a new lead compound for negatively charged linear MC1R ligands that can be further developed into a clinically relevant melanoma targeting radiopeptide.

摘要

大多数黑素性和无黑素性黑色素瘤过度表达α - 黑素细胞刺激激素的黑素皮质素1型受体(MC1R)。α - MSH的放射性标记线性或环状类似物作为恶性黑色素瘤治疗的诊断或治疗工具具有巨大潜力。诸如[铟]DOTA - NAP - 酰胺之类的化合物对MC1R具有高亲和力、良好的肿瘤摄取,但它们可能存在相对较高的肾脏摄取和滞留。我们之前已经表明,将负电荷引入放射性标记的DOTA - NAP - 酰胺肽类似物中可能会增强其排泄并减少肾脏滞留。为了解决在配体中何处放置负电荷的问题,我们通过设计两种新型肽扩展了这些研究,即Ac - Nle - Asp - His - d - Phe - Arg - Trp - Gly - Lys(DOTA) - d - Asp - d - Asp - OH(DOTA - NAP - d - Asp - d - Asp),其在末端带有三个负电荷(分子的总净电荷为 - 2),以及DOTA - Gly - Tyr(P) - Nle - Asp - His - d - Phe - Arg - Trp - NH(DOTA - 磷酸 - MSH),其在末端区域带有两个负电荷(净电荷为 - 1)。与作为参考化合物的DOTA - NAP - 酰胺相比,前一种肽显示出受体亲和力和生物活性明显降低超过10倍,而后一种肽显示出与参考化合物相似的生物活性和受体亲和力。注射后4小时,[铟]DOTA - 磷酸 - MSH在黑色素瘤肿瘤组织中的摄取为7.33±0.47%ID/g,即几乎与[铟]DOTA - NAP - 酰胺一样高。注射后4小时肾脏滞留为2.68±0.18%ID/g,因此比[铟]DOTA - NAP - 酰胺低44%。在4至48小时的观察期内,[铟]DOTA - 磷酸 - MSH的肿瘤与肾脏比率比参考化合物有利35%。在将DOTA - NAP - d - Asp - d - Asp、DOTA - 磷酸 - MSH和DOTA - NAP - 酰胺与之前发表的五种DOTA - NAP - 酰胺类似物进行比较时,这些类似物总共涵盖了一系列总净电荷在 + 2和 - 2之间的肽,我们现在证明净电荷为 - 1,额外的负电荷优选放置在末端区域,导致了最低的肾脏摄取和滞留。 + 2或 - 2的电荷显著增加了肾脏摄取和滞留。总之,新型DOTA - 磷酸 - MSH可能代表一种新的带负电荷线性MC1R配体的先导化合物,可进一步开发成临床相关的靶向黑色素瘤的放射性肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2f2/5405074/fa7029d9d166/fendo-08-00093-g001.jpg

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