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融合 X 射线和磁共振成像引导心包内递送人胚间充质干细胞微囊在免疫活性猪中的应用。

Fused X-ray and MR imaging guidance of intrapericardial delivery of microencapsulated human mesenchymal stem cells in immunocompetent swine.

机构信息

From the Division of MR Research, Russell H. Morgan Department of Radiology and Radiological Science (Y.F., C.R.W., J.W.M.B., M.S., D.L.K.), Department of Molecular and Comparative Pathobiology (N.A., K.G., D.L.K.), Institute for Cell Engineering (J.W.M.B.), and Division of Cardiology, Department of Internal Medicine (P.V.J.), The Johns Hopkins University School of Medicine, 600 N Wolfe St, 314 Park Bldg, Baltimore, MD 21087; and Department of Corporate Technology, Siemens Corporation, Baltimore, Md (T.E., A.F., W.D.G.).

出版信息

Radiology. 2014 Aug;272(2):427-37. doi: 10.1148/radiol.14131424. Epub 2014 Apr 17.

Abstract

PURPOSE

To assess intrapericardial delivery of microencapsulated, xenogeneic human mesenchymal stem cells (hMSCs) by using x-ray fused with magnetic resonance (MR) imaging (x-ray/MR imaging) guidance as a potential treatment for ischemic cardiovascular disease in an immunocompetent swine model.

MATERIALS AND METHODS

All animal experiments were approved by the institutional animal care and use committee. Stem cell microencapsulation was performed by using a modified alginate-poly-l-lysine-alginate encapsulation method to include 10% (wt/vol) barium sulfate to create barium-alginate microcapsules (BaCaps) that contained hMSCs. With x-ray/MR imaging guidance, eight female pigs (approximately 25 kg) were randomized to receive either BaCaps with hMSCs, empty BaCaps, naked hMSCs, or saline by using a percutaneous subxiphoid approach and were compared with animals that received empty BaCaps (n = 1) or BaCaps with hMSCs (n = 2) by using standard fluoroscopic delivery only. MR images and C-arm computed tomographic (CT) images were acquired before injection and 1 week after delivery. Animals were sacrificed immediately or at 1 week for histopathologic validation. Cardiac function between baseline and 1 week after delivery was evaluated by using a paired Student t test.

RESULTS

hMSCs remained highly viable (94.8% ± 6) 2 days after encapsulation in vitro. With x-ray/MR imaging, successful intrapericardial access and delivery were achieved in all animals. BaCaps were visible fluoroscopically and at C-arm CT immediately and 1 week after delivery. Whereas BaCaps were free floating immediately after delivery, they consolidated into a pseudoepicardial tissue patch at 1 week, with hMSCs remaining highly viable within BaCaps; naked hMSCs were poorly retained. Follow-up imaging 1 week after x-ray/MR imaging-guided intrapericardial delivery showed no evidence of pericardial adhesion and/or effusion or adverse effect on cardiac function. In contradistinction, BaCaps delivery with x-ray fluoroscopy without x-ray/MR imaging (n = 3) resulted in pericardial adhesions and poor hMSC viability after 1 week.

CONCLUSION

Intrapericardial delivery of BaCaps with hMSCs leads to high cell retention and survival. With x-ray/MR imaging guidance, intrapericardial delivery can be performed safely in the absence of preexisting pericardial effusion to provide a novel route for cardiac cellular regenerative therapy.

摘要

目的

通过射线融合磁共振(MR)成像(射线/MR 成像)引导,评估心包内递送人胚间充质干细胞(hMSCs)微囊,为免疫活性猪模型缺血性心血管疾病提供潜在治疗方法。

材料与方法

所有动物实验均获得机构动物护理和使用委员会批准。通过改良的藻酸盐-聚赖氨酸-藻酸盐包封方法进行干细胞微囊化,包含 10%(重量/体积)硫酸钡,以制造包含 hMSCs 的钡藻酸盐微囊(BaCaps)。在射线/MR 成像引导下,将 8 只雌性猪(约 25 千克)随机分为经皮剑突下途径接受 BaCaps 与 hMSCs、空 BaCaps、裸 hMSCs 或生理盐水组,与接受空 BaCaps(n=1)或仅接受标准透视递送 BaCaps 与 hMSCs(n=2)的动物进行比较。在注射前和递送后 1 周采集 MR 图像和 C 臂 CT 图像。动物立即处死或在 1 周时处死,以进行组织病理学验证。通过配对学生 t 检验评估递送后 1 周内的心脏功能。

结果

体外 hMSCs 在包封后 2 天仍具有高度活力(94.8%±6)。通过射线/MR 成像,所有动物均成功实现心包内入路和递送。BaCaps 在透视下和 C 臂 CT 下即刻和递送后 1 周均可见。BaCaps 在递送后立即自由漂浮,1 周时在心脏表面形成假性心包组织贴附物,其内 hMSCs 仍具有高度活力;裸 hMSCs 保留不佳。射线/MR 成像引导心包内递送后 1 周的随访成像未见心包粘连和/或渗出或对心脏功能的不良影响。相比之下,未进行射线/MR 成像引导的射线透视下 BaCaps 递送(n=3)导致 1 周后出现心包粘连和 hMSC 活力差。

结论

BaCaps 与 hMSCs 的心包内递送可导致高细胞保留和存活。在射线/MR 成像引导下,在心包积液不存在的情况下,可安全进行心包内递送,为心脏细胞再生治疗提供新途径。

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