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Cardiac Targeting Peptide a Novel Cardiac Vector: Studies in Bio-Distribution Imaging Application and Mechanism of Transduction

机译:心脏靶向肽一种新型的心脏载体:生物分布成像应用和转导机制的研究。

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摘要

Our previous work identified a 12-amino acid peptide that targets the heart, termed cardiac targeting peptide (CTP). We now quantitatively assess the bio-distribution of CTP, show a clinical application with the imaging of the murine heart, and study its mechanisms of transduction. Bio-distribution studies of cyanine5.5-N-Hydroxysuccinimide (Cy5.5) labeled CTP were undertaken in wild-type mice. Cardiac targeting peptide was labeled with Technetium 99m (99mTc) using the chelator hydrazino-nicotinamide (HYNIC), and imaging performed using micro-single photon emission computerized tomography/computerized tomography (SPECT/CT). Human-induced pluripotent stem cell (iPSC)-derived cardiomyocytes (CMCs) were incubated with dual-labeled CTP, and imaged using confocal microscopy. TriCEPs technology was utilized to study the mechanism of transduction. Bio-distribution studies showed peak uptake of CTP at 15 min. 99mTc-HYNIC-CTP showed heart-specific uptake. Robust transduction of beating human iPSC-derived CMCs was seen. TriCEPs experiments revealed five candidate binding partners for CTP, with Kcnh5 being felt to be the most likely candidate as it showed a trend towards being competed out by siRNA knockdown. Transduction efficiency was enhanced by increasing extracellular potassium concentration, and with Quinidine, a Kcnh5 inhibitor, that blocks the channel in an open position. We demonstrate that CTP transduces the normal heart as early as 15 min. 99mTc-HYNIC-CTP targets the normal murine heart with substantially improved targeting compared with 99mTc Sestamibi. Cardiac targeting peptide’s transduction ability is not species limited and has human applicability. Cardiac targeting peptide appears to utilize Kcnh5 to gain cell entry, a phenomenon that is affected by pre-treatment with Quinidine and changes in potassium levels.
机译:我们之前的工作确定了靶向心脏的12个氨基酸的肽,称为心脏靶向肽(CTP)。现在,我们定量评估CTP的生物分布,显示对小鼠心脏成像的临床应用,并研究其转导机制。在野生型小鼠中进行了花菁5.5-N-羟基琥珀酰亚胺(Cy5.5)标记的CTP的生物分布研究。使用螯合剂肼基烟酰胺(HYNIC)用Technetium 99m( 99m Tc)标记心脏靶向肽,并使用微单光子发射计算机断层扫描/计算机断层扫描(SPECT / CT)进行成像。将人诱导的多能干细胞(iPSC)衍生的心肌细胞(CMC)与双标记CTP孵育,并使用共聚焦显微镜成像。利用TriCEPs技术研究了转导机制。生物分布研究显示CTP在15分钟时达到峰值吸收。 99m Tc-HYNIC-CTP表现出心脏特异性摄取。观察到了跳动的人iPSC衍生的CMC的强大转导。 TriCEPs实验揭示了CTP的五个候选结合伴侣,Kcnh5被认为是最可能的候选伴侣,因为它显示出被siRNA敲除竞争的趋势。通过增加细胞外钾的浓度和使用Kcnh5抑制剂奎尼丁(可在开放位置阻断通道)来提高转导效率。我们证明了CTP最早可在15分钟内转导正常心脏。与 99m Tc Sestamibi相比, 99m Tc-HYNIC-CTP靶向正常鼠心,靶向性大大提高。心脏靶向肽的转导能力不受物种限制,并具有人类适用性。心脏靶向肽似乎利用Kcnh5获得细胞进入,这种现象受奎尼丁预处理和钾水平变化的影响。

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