一系列68ga标记的DOTA-LLP2A偶联物用于黑色素瘤极晚期抗原-4正电子发射断层成像的比较

IF 4.5 2区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL Molecular Pharmaceutics Pub Date : 2025-02-03 Epub Date: 2025-01-03 DOI:10.1021/acs.molpharmaceut.4c01204
Peng Zhou, Yujing Wu, Guoqing Han, Juntao Jiang, Hongyong Wang, Chunxiong Lu, Yaling Liu, Jun Wu, Pei Zou, Hao Wu
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引用次数: 0

摘要

黑色素瘤的全球发病率稳步上升,其特点是高侵袭性,导致晚期预后差。在黑素瘤的早期诊断中,放射标记PET成像探针的发展仍然是一个未满足的临床需求。整合素VLA-4是黑色素瘤转移的关键因子,有望解决现有黑色素瘤成像探针特异性不足的问题。本研究通过修改不同的羧基位点,并基于对vla4的高亲和力配体LLP2A的结构,使用各种聚乙二醇(PEG)连接剂,评估68ga标记的DOTA-LLP2A PET探针对黑色素瘤成像的影响。采用固相法合成了配体中间体LLP2A- nh2和LLP2A(tBu)-OH及其共轭物(探针前体)。在vla -4阳性的B16F10细胞和vla -4阴性的A375细胞中评估探针的特异性和细胞毒性。通过PET显像和生物分布研究比较探针在B16F10和A375异种移植物模型中的靶向效果。免疫荧光法检测组织中vla4的表达,H&E染色法检测探针的安全性。与2-氨基己二酸(Aad)侧链修饰探针([68Ga]Ga-T-AD)(1.43±0.23%ID/g, 1 h)相比,经氨基环己烷羧酸(Ach)修饰的探针([68Ga]Ga-T-CH)在B16F10黑色素瘤中的信号积累更大(3.90±0.43%ID/g)。由Ach衍生的三种PEG偶联物的PET图像显示肿瘤信号清晰,背景噪声低,肿瘤信号强度从[68Ga]Ga-T6逐渐增加到[68Ga]Ga-T4和[68Ga]Ga-T2。从生物分布来看,[68Ga]Ga-T2组的肿瘤摄取、瘤肌比和瘤血比均显著高于[68Ga]Ga-T4和[68Ga]Ga-T6组(1 h肿瘤:3.58±0.28 vs 2.90±0.16 vs 1.87±0.22%ID/g;肿瘤/肌肉:1小时13.38±0.43 vs 10.62±0.70 vs 7.19±1.15;肿瘤/血:1 h 8.64±1.12 vs 5.32±0.91 vs 4.36±0.59;P < 0.05)。这些数据表明,在Ach位点连接的PEG衍生物[68Ga]Ga-T2、[68Ga]Ga-T4和[68Ga]Ga-T6系列是黑色素瘤和其他潜在的vla -4阳性肿瘤的优秀68Ga标记探针。其中,[68Ga]Ga-T2在黑色素瘤中显示出最高的肿瘤-背景对比度,是最有希望用于临床转化的候选者。
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Comparison of a Series of 68Ga-Labeled DOTA-LLP2A Conjugates for Positron Emission Tomography Imaging of Very Late Antigen-4 in Melanoma.

Melanoma, with its steadily rising global incidence, is characterized by high invasiveness, leading to poor prognosis in advanced stages. There remains an unmet clinical need for the development of radiolabeled PET imaging probes for the early diagnosis of melanoma. Integrin VLA-4, a key factor in melanoma metastasis, presents a promising protein target to address the specificity shortcomings of existing probes in melanoma imaging. This study evaluates 68Ga-labeled DOTA-LLP2A PET probes for melanoma imaging by modifying different carboxyl sites and employing various polyethylene glycol (PEG) linkers based on the structure of the high-affinity ligand LLP2A for VLA-4. The ligand intermediates LLP2A-NH2 and LLP2A(tBu)-OH, as well as their conjugates (probe precursors), were synthesized via solid-phase synthesis. The specificity and cytotoxicity of the probes were assessed in VLA-4-positive B16F10 cells and VLA-4-negative A375 cells. Targeting efficacy of the probes in B16F10 and A375 xenograft models was compared through PET imaging and biodistribution studies. VLA-4 expression in tissues was evaluated via immunofluorescence, while H&E staining was employed to assess the safety profile of the probes. The probe ([68Ga]Ga-T-CH) modified at the Aminocyclohexane carboxylic acid (Ach) exhibited greater signal accumulation in B16F10 melanoma (3.90 ± 0.43%ID/g at 1 h) compared to the 2-aminoadipic acid (Aad) side-chain-modified probe ([68Ga]Ga-T-AD) (1.43 ± 0.23%ID/g at 1 h). PET images of the three PEG conjugates derived from the Ach demonstrated bright tumor signals and low background noise, showing a progressive increase in tumor signal intensity from [68Ga]Ga-T6 to [68Ga]Ga-T4 and [68Ga]Ga-T2. Tumor uptake, tumor-to-muscle ratio, and tumor-to-blood ratio from biodistribution were significantly higher for [68Ga]Ga-T2 than for [68Ga]Ga-T4 and [68Ga]Ga-T6 (tumor: 3.58 ± 0.28 vs 2.90 ± 0.16 vs 1.87 ± 0.22%ID/g at 1 h; tumor/muscle: 13.38 ± 0.43 vs 10.62 ± 0.70 vs 7.19 ± 1.15 at 1 h; tumor/blood: 8.64 ± 1.12 vs 5.32 ± 0.91 vs 4.36 ± 0.59 at 1 h; P < 0.05). These data suggest that the series of PEG derivatives [68Ga]Ga-T2, [68Ga]Ga-T4, and [68Ga]Ga-T6, linked at the Ach site, are excellent 68Ga-labeled probes for melanoma and other potential VLA-4-positive tumors. Among them, [68Ga]Ga-T2 shows the highest tumor-to-background contrast for melanoma, positioning it as the most promising candidate for clinical translation.

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来源期刊
Molecular Pharmaceutics
Molecular Pharmaceutics 医学-药学
CiteScore
8.00
自引率
6.10%
发文量
391
审稿时长
2 months
期刊介绍: Molecular Pharmaceutics publishes the results of original research that contributes significantly to the molecular mechanistic understanding of drug delivery and drug delivery systems. The journal encourages contributions describing research at the interface of drug discovery and drug development. Scientific areas within the scope of the journal include physical and pharmaceutical chemistry, biochemistry and biophysics, molecular and cellular biology, and polymer and materials science as they relate to drug and drug delivery system efficacy. Mechanistic Drug Delivery and Drug Targeting research on modulating activity and efficacy of a drug or drug product is within the scope of Molecular Pharmaceutics. Theoretical and experimental peer-reviewed research articles, communications, reviews, and perspectives are welcomed.
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