Institute for Complex Molecular Systems, Laboratory of Chemical Biology, Department of Biomedical Engineering, Eindhoven University of Technology, Groene Loper 7, Eindhoven, 5612 AZ, The Netherlands.
Department of Cardiology, Experimental Cardiology Laboratory, UMC Utrecht Regenerative Medicine Centre, University Medical Centre Utrecht, University Utrecht, Heidelberglaan 100, Utrecht, 3584 CX, The Netherlands.
Adv Healthc Mater. 2021 May;10(10):e2001987. doi: 10.1002/adhm.202001987. Epub 2021 Feb 15.
Recent advances in the field of cardiac regeneration show great potential in the use of injectable hydrogels to reduce immediate flush-out of injected factors, thereby increasing the effectiveness of the encapsulated drugs. To establish a relation between cardiac function and retention of the drug-encapsulating hydrogel, a quantitative in vivo imaging method is required. Here, the supramolecular ureido-pyrimidinone modified poly(ethylene glycol) (UPy-PEG) material is developed into a bioactive hydrogel for radioactive imaging in a large animal model. A radioactive label is synthesized, being a ureido-pyrimidinone moiety functionalized with a chelator (UPy-DOTA) complexed with the radioactive isotope indium-111 (UPy-DOTA- In) that is mixed with the hydrogel. Additionally, bioactive and adhesive properties of the UPy-PEG hydrogel are increased by supramolecular introduction of a UPy-functionalized recombinant collagen type 1-based material (UPy-PEG-RCPhC1). This method enables in vivo tracking of the nonbioactive and bioactive supramolecular hydrogels and quantification of hydrogel retention in a porcine heart. In a small pilot, cardiac retention values of 8% for UPy-PEG and 16% for UPy-PEG-RCPhC1 hydrogel are observed 4 h postinjection. This work highlights the importance of retention quantification of hydrogels in vivo, where elucidation of hydrogel quantity at the target site is proposed to strongly influence efficacy of the intended therapy.
近年来,心脏再生领域的进展表明,在使用可注射水凝胶减少注射因子的即刻冲洗方面具有很大的潜力,从而提高了包封药物的效果。为了建立心脏功能与包封药物水凝胶保留之间的关系,需要一种定量的体内成像方法。在这里,将超分子尿嘧啶嘧啶酮修饰的聚乙二醇(UPy-PEG)材料开发成一种用于大型动物模型放射性成像的生物活性水凝胶。合成了一种放射性标记物,它是一种带有螯合剂(UPy-DOTA)的尿嘧啶嘧啶酮部分功能化的放射性同位素铟-111(UPy-DOTA-In),与水凝胶混合。此外,通过超分子引入 UPy 功能化的重组胶原蛋白基材料(UPy-PEG-RCPhC1),增加了 UPy-PEG 水凝胶的生物活性和粘附性。这种方法能够对非生物活性和生物活性的超分子水凝胶进行体内追踪,并定量猪心内水凝胶的保留情况。在一个小型试验中,在注射后 4 小时观察到 UPy-PEG 的心脏保留值为 8%,而 UPy-PEG-RCPhC1 水凝胶的保留值为 16%。这项工作强调了体内水凝胶保留定量的重要性,其中建议阐明目标部位水凝胶的数量会强烈影响预期治疗的效果。