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自体脂肪移植以递送格列酮和脂联素用于血管保护。

Autologous fat transplants to deliver glitazone and adiponectin for vasculoprotection.

机构信息

Division of Nephrology & Hypertension, Department of Internal Medicine, University of Utah, 295 Chipeta Way, Salt Lake City, UT, USA.

Department of Radiology and Imaging Science, Utah Center for Advanced Imaging Research, University of Utah, 729 Arapeen Dr., Salt Lake City, UT, USA.

出版信息

J Control Release. 2017 Oct 28;264:237-246. doi: 10.1016/j.jconrel.2017.08.036. Epub 2017 Sep 1.

Abstract

The insulin sensitizing glitazone drugs, rosiglitazone (ROS) and pioglitazone (PGZ) both have anti-proliferative and anti-inflammatory effects and induce adipose tissue (fat) to produce the vaso-protective protein adiponectin. Stenosis due to intimal hyperplasia development often occurs after placement of arteriovenous synthetic grafts used for hemodialysis. This work was performed to characterize the in vitro and in vivo effects of ROS or PGZ incorporation in fat and to determine if fat/PGZ depots could decrease vascular hyperplasia development in a porcine model of hemodialysis arteriovenous graft stenosis. Powdered ROS or PGZ (6-6000μM) was mixed with fat explants and cultured. Drug release from fat was quantified by HPLC/MS/MS, and adiponectin and monocyte chemotactic protein-1 (MCP-1) levels in culture media were measured by ELISA. The effect of conditioned media from the culture of fat with ROS or PGZ on i) platelet-derived growth factor-BB (PDGF-BB)-stimulated proliferation of human venous smooth muscle cells (SMC) was measured by a DNA-binding assay, and ii) lipopolysaccharide (LPS)-induced human monocyte release of tumor necrosis factor-alpha (TNFα) was assessed by ELISA. In a porcine model, pharmacokinetics of PGZ from fat depots transplanted perivascular to jugular vein were assessed by HPLC/MS/MS, and retention of the fat depot was monitored by MRI. A porcine model of synthetic graft placed between carotid artery and ipsilateral jugular vein was used to assess effects of PGZ/fat depots on vascular hyperplasia development. Both ROS and PGZ significantly induced the release of adiponectin and inhibited release of MCP-1 from the fat. TNF production from monocytes stimulated with LPS was inhibited 50-70% in the presence of media conditioned by fat alone or fat and either drug. The proliferation of SMC was inhibited in the presence of media conditioned by fat/ROS cultures. Fat explants placed perivascular to the external jugular vein were retained, as confirmed by MRI at one week after placement. PGZ was detected in the fat depot, in the external jugular vein wall and in adjacent tissue at clinically relevant levels, whereas levels in plasma were below detection. External jugular vein exposed to fat incorporated with PGZ had increased adiponectin expression compared to vein exposed to fat alone. However, the development of hyperplasia within the arteriovenous synthetic grafts was unchanged by treatment with fat/PGZ depots compared to no treatment.

摘要

胰岛素增敏剂格列酮类药物罗格列酮(ROS)和吡格列酮(PGZ)均具有抗增殖和抗炎作用,并诱导脂肪组织(脂肪)产生血管保护蛋白脂联素。用于血液透析的动静脉合成移植物植入后,常因内膜增生而导致狭窄。本研究旨在描述 ROS 或 PGZ 掺入脂肪的体外和体内作用,并确定脂肪/PGZ 库是否可以减少血液透析动静脉移植物狭窄猪模型中血管增生的发展。将粉末状 ROS 或 PGZ(6-6000μM)与脂肪组织块混合并培养。通过 HPLC/MS/MS 定量测定脂肪中药物的释放,通过 ELISA 测定培养基中脂联素和单核细胞趋化蛋白-1(MCP-1)的水平。通过 DNA 结合测定法测量 ROS 或 PGZ 培养的脂肪条件培养基对 i)血小板衍生生长因子-BB(PDGF-BB)刺激的人静脉平滑肌细胞(SMC)增殖的影响,以及 ii)通过 ELISA 评估脂多糖(LPS)诱导的人单核细胞释放肿瘤坏死因子-α(TNFα)。在猪模型中,通过 HPLC/MS/MS 评估移植到颈静脉周围的脂肪库中 PGZ 的药代动力学,并通过 MRI 监测脂肪库的保留情况。使用颈动脉和对侧颈静脉之间放置的合成移植物的猪模型评估 PGZ/脂肪库对血管增生发展的影响。ROS 和 PGZ 均显著诱导脂肪释放脂联素,并抑制 MCP-1 从脂肪中的释放。LPS 刺激的单核细胞产生的 TNF 被单独的脂肪或脂肪和药物中的任何一种介质抑制 50-70%。SMC 的增殖在脂肪/ROS 培养物的条件培养基存在下受到抑制。通过 MRI 在放置后一周确认,将脂肪组织块放置在颈外静脉周围保留下来。在临床上相关的水平下,PGZ 在脂肪库、颈外静脉壁和相邻组织中被检测到,而在血浆中的水平低于检测限。与单独暴露于脂肪的静脉相比,暴露于含有 PGZ 的脂肪的颈外静脉表达增加了脂联素。然而,与未治疗相比,用脂肪/PGZ 库处理对动静脉合成移植物内增生的发展没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4596/5632591/838e97850e40/nihms905323f1.jpg

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