体内
植入
生物医学工程
免疫系统
生物相容性
药品
纤维化
材料科学
纳米技术
药理学
医学
免疫学
生物
外科
内科学
冶金
生物技术
作者
Shady Farah,Joshua C. Doloff,Péter Müller,Atieh Sadraei,Hye Jung Han,Katy N. Olafson,Keval Vyas,Hok Hei Tam,Jennifer Hollister‐Lock,Piotr S. Kowalski,Marissa Griffin,Ashley Meng,Malia McAvoy,Adam Graham,James J. McGarrigle,Josè Oberholzer,Gordon C. Weir,Dale L. Greiner,Róbert Langer,Daniel G. Anderson
出处
期刊:Nature Materials
[Springer Nature]
日期:2019-06-24
卷期号:18 (8): 892-904
被引量:137
标识
DOI:10.1038/s41563-019-0377-5
摘要
Implantable medical devices have revolutionized modern medicine. However, immune-mediated foreign body response (FBR) to the materials of these devices can limit their function or even induce failure. Here we describe long-term controlled-release formulations for local anti-inflammatory release through the development of compact, solvent-free crystals. The compact lattice structure of these crystals allows for very slow, surface dissolution and high drug density. These formulations suppress FBR in both rodents and non-human primates for at least 1.3 years and 6 months, respectively. Formulations inhibited fibrosis across multiple implant sites—subcutaneous, intraperitoneal and intramuscular. In particular, incorporation of GW2580, a colony stimulating factor 1 receptor inhibitor, into a range of devices, including human islet microencapsulation systems, electrode-based continuous glucose-sensing monitors and muscle-stimulating devices, inhibits fibrosis, thereby allowing for extended function. We believe that local, long-term controlled release with the crystal formulations described here enhances and extends function in a range of medical devices and provides a generalized solution to the local immune response to implanted biomaterials. Foreign body response can result in failure of biomaterials in vivo. Solvent-free crystals containing anti-fibrotic drugs now show the potential for long-term inhibition of fibrosis on a number of implantable devices in rodents and non-human primates.
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