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ONO-1301 通过促进血管生成增强人诱导多能干细胞衍生的心脏组织片在移植后的存活率。

ONO-1301 enhances post-transplantation survival of human induced pluripotent stem cell-derived cardiac tissue sheet by promoting angiogenesis.

机构信息

Department of Cardiovascular Surgery, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.

Laboratory of Human Immunology (Single Cell Genomics), WPI Immunology Research Center, Osaka University, Osaka, Japan; Genome Information Research Center, Research Institute for Microbial Diseases, Osaka University, Osaka, Japan.

出版信息

J Heart Lung Transplant. 2023 Jun;42(6):716-729. doi: 10.1016/j.healun.2023.01.018. Epub 2023 Feb 10.

Abstract

BACKGROUND

Transplanting human induced pluripotent stem cell-derived cardiomyocyte (hiPSC-CM) tissue sheets effectively treat ischemic cardiomyopathy. Cardiac functional recovery relies on graft survival in which angiogenesis played an important part. ONO-1301 is a synthetic prostacyclin analog with proangiogenic effects. We hypothesized that transplantation of hiPSC-CM tissue sheets with slow-release ONO-1301 scaffold could promote hostgraft angiogenesis, enhance tissue survival and therapeutic effect.

METHODS

We developed hiPSC-CM tissue sheets with ONO-1301 slow-release scaffold and evaluated their morphology, gene expression, and effects on angiogenesis. Three tissue sheet layers were transplanted into a rat myocardial infarction (MI) model. Left ventricular ejection fraction, gene expression in the MI border zone, and angiogenesis effects were investigated 4 weeks after transplantation.

RESULTS

In vitro assessment confirmed the slow-release of ONO-1301, and its pro-angiogenesis effects. In addition, in vivo data demonstrated that ONO-1301 administration positively correlated with graft survival. Cardiac tissue as thick as ∼900 μm was retained in the ONO (+) treated group. Additionally, left ventricular ejection fraction of the ONO (+) group was significantly enhanced, compared to ONO (-) group. The ONO (+) group also showed significantly improved interstitial fibrosis, higher capillary density, increased number of mature blood vessels, along with an enhanced supply of oxygen, and nutrients.

CONCLUSIONS

Slow-release ONO-1301 scaffold provided an efficient delivery method for thick hiPSC-CM tissue. ONO-1301 promotes angiogenesis between the host and graft and improves nutritional and oxygen supply, thereby enhancing the survival of transplanted cells, effectively improving ejection fraction, and therapeutic effects.

摘要

背景

移植人诱导多能干细胞衍生的心肌细胞(hiPSC-CM)组织片有效地治疗缺血性心肌病。心脏功能的恢复依赖于移植物的存活,其中血管生成起着重要作用。ONO-1301 是一种具有促血管生成作用的合成前列环素类似物。我们假设,移植具有 ONO-1301 缓释支架的 hiPSC-CM 组织片可以促进宿主-移植物血管生成,增强组织存活和治疗效果。

方法

我们开发了具有 ONO-1301 缓释支架的 hiPSC-CM 组织片,并评估了它们的形态、基因表达和对血管生成的影响。将三层组织片移植到大鼠心肌梗死(MI)模型中。移植 4 周后,检测左心室射血分数、MI 边界区的基因表达和血管生成效果。

结果

体外评估证实了 ONO-1301 的缓慢释放及其促血管生成作用。此外,体内数据表明,ONO-1301 的给药与移植物存活呈正相关。在 ONO(+)处理组中,保留了厚度约为 900μm 的心脏组织。此外,与 ONO(-)组相比,ONO(+)组的左心室射血分数明显提高。ONO(+)组的间质纤维化程度也明显改善,毛细血管密度增加,成熟血管数量增加,同时改善了氧气和营养物质的供应。

结论

ONO-1301 缓释支架为厚的 hiPSC-CM 组织提供了一种有效的输送方法。ONO-1301 促进了宿主与移植物之间的血管生成,并改善了营养和氧气供应,从而增强了移植细胞的存活,有效提高了射血分数和治疗效果。

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