首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Delivery of definable number of drug or growth factor loaded poly(dl-lactic acid-co-glycolic acid) microparticles within human embryonic stem cell derived aggregates
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Delivery of definable number of drug or growth factor loaded poly(dl-lactic acid-co-glycolic acid) microparticles within human embryonic stem cell derived aggregates

机译:在人类胚胎干细胞衍生的聚集物中递送可定义数量的载有药物或生长因子的聚(dl-乳酸-乙醇酸)微粒

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摘要

Embryoid bodies (EBs) generated from embryonic stem cells are used to study processes of differentiation within a three dimensional (3D) cell environment. In many instances however, EBs are dispersed to single cell suspensions with a subsequent monolayer culture. Moreover, where the 3D integrity of an EB is maintained, cytokines or drugs of interest to stimulate differentiation are often added directly to the culture medium at fixed concentrations and effects are usually limited to the outer layers of the EB. The aim of this study was to create an EB model with localised drug and or growth factor delivery directly within the EB. Using poly(DL-lactic acid-co-glycolic acid) microparticles (MPs) with an average diameter of 13 μm, we have demonstrated controllable incorporation of defined numbers of MPs within human ES cell derived EBs, down to 1 MP per EB. This was achieved by coating MPs with human ES cell lysate and centrifugation of specific ratios of ES cells and MPs to form 3D aggregates. Using MPs loaded with simvastatin (pro or active drug) or BMP-2, we have demonstrated osteogenic differentiation within the 3D aggregates, maintained in culture for up to 21 days, and quantified by real time QPCR for osteocalcin. Immunostaining for RUNX2 and osteocalcin, and also histochemical staining with picrosirius red to demonstrate collage type 1 and Alizarin red to demonstrate calcium/mineralisation further demonstrated osteogenic differentiation and revealed regional staining associated with the locations of MPs within the aggregates. We also demonstrated endothelial differentiation within human ES cell-derived aggregates using VEGF loaded MPs. In conclusion, we demonstrate an effective and reliable approach for engineering stem aggregates with definable number of MPs within the 3D cellular structure. We also achieved localised osteogenic and endothelial differentiation associated with MPs releasing encapsulated drug molecules or cytokines directly within the cell aggregate. This provides a powerful tool for controlling and investigating differentiation within 3D cell cultures and has applications to drug delivery, drug discovery, stem cell biology, tissue engineering and regenerative medicine.
机译:由胚胎干细胞产生的胚状体(EBs)用于研究三维(3D)细胞环境中的分化过程。然而,在许多情况下,EB通过随后的单层培养分散到单细胞悬液中。此外,在维持EB的3D完整性的情况下,刺激分化的目标细胞因子或感兴趣的药物通常直接以固定的浓度添加到培养基中,并且作用通常限于EB的外层。这项研究的目的是创建一个直接在EB内局部递送药物和/或生长因子的EB模型。使用平均直径为13μm的聚(DL-乳酸-乙醇酸共聚物)微粒(MPs),我们证明了人类ES细胞衍生的EBs中可控制掺入一定数量的MPs,每个EBs降低至1MP。这是通过用人ES细胞裂解物包被MP并离心特定比例的ES细胞和MP形成3D聚集体来实现的。使用载有辛伐他汀(前药或活性药物)或BMP-2的MP,我们已经证明了3D聚集物中的成骨分化,可在培养物中保存长达21天,并通过实时QPCR对骨钙蛋白进行定量。对RUNX2和骨钙素进行免疫染色,并用picrosirius红进行组织化学染色以显示1型拼贴,而用茜素红进行组织化学染色以显示钙/矿化进一步显示了成骨分化,并揭示了与聚集物中MP位置相关的区域染色。我们还证明了使用载有VEGF的MP在人ES细胞衍生的聚集物中的内皮细胞分化。总而言之,我们展示了一种有效且可靠的方法,可用于在3D细胞结构中设计具有可定义数量的MP的茎干聚集体。我们还实现了与MPs相关的局部成骨和内皮细胞分化,这些MPs直接在细胞聚集体内释放出封装的药物分子或细胞因子。这为控制和研究3D细胞培养物中的分化提供了强大的工具,并已应用于药物递送,药物发现,干细胞生物学,组织工程和再生医学。

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