The Vascular Biology and Therapeutics Program and the Department of Surgery, Yale University School of Medicine, New Haven, CT, 06520, USA.
Basic Medical College of Zhengzhou University, Henan, China.
Sci Rep. 2017 Jan 10;7:40142. doi: 10.1038/srep40142.
Prosthetic grafts and patches are commonly used in cardiovascular surgery, however neointimal hyperplasia remains a significant concern, especially under low flow conditions. We hypothesized that delivery of rapamycin from nanoparticles (NP) covalently attached to patches allows sustained site-specific delivery of therapeutic agents targeted to inhibit localized neointimal hyperplasia. NP were covalently linked to pericardial patches using EDC/NHS chemistry and could deliver at least 360 ng rapamycin per patch without detectable rapamycin in serum; nanoparticles were detectable in the liver, kidney and spleen but no other sites within 24 hours. In a rat venous patch angioplasty model, control patches developed robust neointimal hyperplasia on the patch luminal surface characterized by Eph-B4-positive endothelium and underlying SMC and infiltrating cells such as macrophages and leukocytes. Patches delivering rapamycin developed less neointimal hyperplasia, less smooth muscle cell proliferation, and had fewer infiltrating cells but retained endothelialization. NP covalently linked to pericardial patches are a novel composite delivery system that allows sustained site-specific delivery of therapeutics; NP delivering rapamycin inhibit patch neointimal hyperplasia. NP linked to patches may represent a next generation of tissue engineered cardiovascular implants.
人工移植物和补片常用于心血管外科,但内膜增生仍然是一个重大问题,尤其是在低血流条件下。我们假设将雷帕霉素递送至通过共价键连接到补片上的纳米颗粒(NP)中,可以持续进行靶向局部内膜增生的治疗药物的局部递药。使用 EDC/NHS 化学将 NP 共价连接到心包补片上,每片补片可至少递送 360ng 的雷帕霉素,而血清中检测不到雷帕霉素;NP 在 24 小时内可在肝脏、肾脏和脾脏中检测到,但在其他部位未检测到。在大鼠静脉补片血管成形术模型中,对照补片在补片管腔表面形成了丰富的内膜增生,特征为 Eph-B4 阳性内皮和下方的平滑肌细胞以及浸润细胞,如巨噬细胞和白细胞。递送至雷帕霉素的补片形成的内膜增生较少,平滑肌细胞增殖较少,浸润细胞较少,但保留了内皮化。与心包补片共价连接的 NP 是一种新型的复合递药系统,可实现持续的局部递药;NP 递送至雷帕霉素抑制了补片内膜增生。与补片相连的 NP 可能代表下一代组织工程心血管植入物。