近红外吸收量子点可能用于基于生长因子的干细胞分化

Hassan Niknejad , Masoumeh Mirmasoumi , Behzad Torabi , Nafiseh Deheshkar-Farahani
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引用次数: 3

摘要

对于退行性疾病的干细胞治疗,有必要将干细胞分化成特定的谱系。有几种生长因子已被用于干细胞的分化。一些生长因子可以剂量依赖性地诱导干细胞的分化,生长因子浓度的增加导致更高水平的分化细胞的产生。然而,由于某些分化因子(如维甲酸)的毒性,较低剂量的生长因子对干细胞的特定谱系分化是可取的。本文提出了一种利用半导体纳米晶体控制生长因子递送系统的新方法;称为量子点(QDs)。该体系含有聚合物微囊化生长因子,该生长因子与近红外吸收量子点共轭。微胶囊在培养板中的生长因子可通过辐照控制释放。为了调节生长因子的释放,以响应干细胞分化的需要,辐照的强度和时间将被控制。我们的假设是基于量子点可以吸收近红外能量,并通过激发电子,然后它们的振动弛豫在照射时被加热,然后释放生长因子。我们认为,通过所建议的系统控制生长因子的递送是减少干细胞分化所需生长因子数量的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Near-IR absorbing quantum dots might be usable for growth factor-based differentiation of stem cells

Near-IR absorbing quantum dots might be usable for growth factor-based differentiation of stem cells

For stem cell therapy of degenerative diseases, it is necessary to differentiate stem cells into the specific lineage. There are several growth factors which have been used for differentiation of stem cells. Some growth factors can dose-dependently induce differentiation of stem cells so that the increase of growth factor concentration results in production of the higher level of differentiated cells. However, due to the toxicity of some differentiation factors (e.g. retinoic acid), the lower dose of growth factors for the specific lineage differentiation of stem cells is desirable. This paper suggests a new approach in the field of controlled growth factor delivery system using semiconductor nanocrystals; known as quantum dots (QDs). This system contains polymeric microencapsulated growth factor which is conjugated to near infrared (NIR) absorbing QDs. The control release of growth factors from microcapsules in the culture plates can be achieved by irradiation. To modulate growth factor release in response to stem cells needs for differentiation, the intensity and period of irradiation will be controlled. Our hypothesis is based on the fact that QDs can absorb NIR energy and by excitation of electrons and then vibrational relaxation of them become heated when they were irradiated and then release growth factors. We believe that controlled growth factors delivery through the suggested system is an effective method to reduce the amount of growth factors required for differentiation of stem cells.

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