首页> 外文期刊>Journal of biomedical materials research, Part A >Crosslinked basement membrane‐based coatings enhance glucose sensor function and continuous glucose monitoring in vivo in vivo
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Crosslinked basement membrane‐based coatings enhance glucose sensor function and continuous glucose monitoring in vivo in vivo

机译:交联的基础膜基涂层增强葡萄糖传感器功能和体内体内连续葡萄糖监测

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Abstract Overcoming sensor‐induced tissue reactions is an essential element of achieving successful continuous glucose monitoring (CGM) in the management of diabetes, particularly when used in closed loop technology. Recently, we demonstrated that basement membrane (BM)‐based glucose sensor coatings significantly reduced tissue reactions at sites of device implantation. However, the biocompatible BM‐based biohydrogel sensor coating rapidly degraded over a less than a 3‐week period, which effectively eliminated the protective sensor coating. In an effort to increase the stability and effectiveness of the BM coating, we evaluated the impact of crosslinking BM utilizing glutaraldehyde as a crosslinking agent, designated as X‐Cultrex. Sensor performance (nonrecalibrated) was evaluated for the impact of these X‐Cultrex coatings in vitro and in vivo . Sensor performance was assessed over a 28‐day time period in a murine CGM model and expressed as mean absolute relative difference (MARD) values. Tissue reactivity of Cultrex‐coated, X‐Cultrex‐coated, and uncoated glucose sensors was evaluated over a 28‐day time period in vivo using standard histological techniques. These studies demonstrated that X‐Cultrex‐based sensor coatings had no effect on glucose sensor function in vitro. In vivo , glucose sensor performance was significantly enhanced following X‐Cultrex coating throughout the 28‐day study. Histological evaluations of X‐Cultrex‐treated sensors demonstrated significantly less tissue reactivity when compared to uncoated sensors. ? 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 7–16, 2018.
机译:摘要克服传感器诱导的组织反应是在患有型糖尿病的管理中实现成功连续葡萄糖监测(CGM)的基本要素,特别是在闭环技术中使用。最近,我们证明了基底膜(BM)的基础葡萄糖传感器涂层显着降低了装置植入部位的组织反应。然而,基于生物相容性的BM基生物水凝胶传感器涂层在小于3周的时间内快速降解,这有效地消除了保护传感器涂层。为了提高BM涂层的稳定性和有效性,我们评估了交联BM利用戊二醛作为交联剂的影响,称为X-Cultrex。对体外和体内这些X-Cultrex涂层的影响评价了传感器性能(非煅烧)。在鼠CGM模型中的28天时间段中评估传感器性能,并表示为平均绝对相对差异(MARD)值。使用标准组织技术在体内的28天的时间内评估了Cultrex涂覆,X-Cultrex涂覆和未涂覆的葡萄糖传感器的组织反应性。这些研究表明,基于X-Cultrex的传感器涂层对体外对葡萄糖传感器功能没有影响。在整个28天的研究中,在X-Cultrex涂层之后,葡萄糖传感器性能明显增强。与未涂覆的传感器相比,X-Cultrex处理传感器的组织学评价显示出显着更少的组织反应性。还2017年Wiley期刊,Inc。J生物保罗第A部分:106A:7-16,2018。

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