Life Sciences and Technology, PerkinElmer Inc., Hopkinton, Massachusetts, USA.
J Biomed Opt. 2013 Oct;18(10):101319. doi: 10.1117/1.JBO.18.10.101319.
Assays for blood levels of prostate-specific antigen (PSA), performed in prostate cancer detection, measure mostly inactive/complexed PSA and do not provide information regarding enzymatically active PSA, which is biologically more relevant. Thus, we designed and synthesized an enzymatically cleavable peptide sequence labeled with near-infrared (NIR) fluorophores (ex/em 740/770 nm) and coupled it to a pharmacokinetic modifier designed to improve its plasma kinetics. In its native state, the agent, PSA750 FAST™ (PSA750), is optically quenched (>95%) and only becomes fluorescent upon cleavage by active PSA, yielding a significant increase in signal. This activation is highly selective for PSA relative to a large panel of disease-relevant enzymes. Active PSA was detected in tumor frozen sections using PSA750 and this activity was abolished in the presence of the inhibitor, alpha-1 anti-chymotrypsin. In vivo imaging of tumor-bearing mice using fluorescence molecular tomography demonstrated a significantly higher fluorescent signal in PSA+ LNCaP tumors as compared to PSA- prostate cancer 3 tumors (13.0±3.7 versus 2.8±0.8 pmol, p=0.023). Ex vivo imaging of tumor sections confirms PSA750-derived NIR signal localization in nonvascular tissue. This is the first report that demonstrates the feasibility and effectiveness of noninvasive, real time, fluorescence molecular imaging of PSA enzymatic activity in prostate cancer.
用于前列腺癌检测的前列腺特异性抗原(PSA)血液水平检测主要测量无活性/复合物 PSA,而不能提供关于具有生物相关性的酶活性 PSA 的信息。因此,我们设计并合成了一种带有近红外(NIR)荧光团(激发/发射 740/770nm)的酶切肽序列,并将其与一种设计用于改善其血浆动力学的药代动力学修饰剂偶联。在其天然状态下,该试剂 PSA750 FAST™(PSA750)的光学猝灭率大于 95%,只有在被活性 PSA 切割时才会发荧光,从而显著增加信号。与一大组与疾病相关的酶相比,这种激活对 PSA 具有高度选择性。使用 PSA750 在肿瘤冷冻切片中检测到活性 PSA,并且在抑制剂 α-1 抗胰凝乳蛋白酶存在下,这种活性被消除。使用荧光分子断层扫描对荷瘤小鼠进行体内成像,结果显示 PSA+LNCaP 肿瘤的荧光信号明显高于 PSA-前列腺癌 3 肿瘤(13.0±3.7 对 2.8±0.8 pmol,p=0.023)。肿瘤切片的离体成像证实了 PSA750 衍生的 NIR 信号在非血管组织中的定位。这是首次报道表明非侵入性、实时、荧光分子成像技术可用于检测前列腺癌中 PSA 酶活性。