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量子点包被在聚合物胶束中用于基因编码的光敏剂 Killer Red 的细胞内传递和激活。

Intracellular delivery and activation of the genetically encoded photosensitizer Killer Red by quantum dots encapsulated in polymeric micelles.

机构信息

Department of Biomedical Science and BK21 PLUS Center for Creative Biomedical Scientists, Chonnam National University Medical School, Gwangju 501-746, South Korea.

Department of Nuclear medicine, Chonnam National University Medical School, Gwangju, Republic of Korea.

出版信息

Colloids Surf B Biointerfaces. 2014 Apr 1;116:284-94. doi: 10.1016/j.colsurfb.2014.01.001. Epub 2014 Jan 17.

DOI:10.1016/j.colsurfb.2014.01.001
PMID:24495459
Abstract

We have prepared polymeric micelle-encapsulating quantum dots (QDots) for delivering the optically activatable protein Killer Red (KR) as a plasmid to cancer cells. QDots absorb light at a lower wavelength and emit light at a higher wavelength in the cell cytoplasm, activating the expressed KR. Once activated, KR triggers the generation of reactive oxygen species (ROS). We prepared cadmium selenide (CdSe)/zinc sulphide (ZnS) QDots and evaluated their optical properties. Subsequently, we performed morphology studies, elemental analysis, thermogravimetric analysis (TGA), and measurements of particle size and surface charge of prepared QDots encapsulated in PHEA-g-PEG-bPEI (PPP-QDot). Cellular uptake of PPP-QDot and PPP-QDot/KR nanoparticles was confirmed using confocal microscopy, and the cellular toxicity and transfection efficiency associated with uptake of PPP-QDot/KR nanoparticles were analyzed. KR expression in normal cells and cancer cells was confirmed using confocal microscopy and Western blotting. Cellular morphologies before and after intracellular activation of KR were observed using phase contrast, fluorescence, and confocal microscopy. Cell fate after exposure to blue light-emitting diode lighting was determined using apoptosis staining and a cell proliferation assay, confirming a suppression in proliferation and a reduction in metabolic activity. We determined that ROS generation contributed to cellular damage after treatment with PPP-QDot/KR nanoparticles and blue light exposure.

摘要

我们制备了聚合物胶束包封的量子点(QDots),用于将光活化蛋白 Killer Red(KR)作为质粒递送到癌细胞中。QDots 在细胞细胞质中吸收较低波长的光并发射较高波长的光,从而激活表达的 KR。一旦被激活,KR 就会触发活性氧(ROS)的产生。我们制备了硒化镉(CdSe)/硫化锌(ZnS)QDots,并评估了它们的光学性质。随后,我们进行了形态学研究、元素分析、热重分析(TGA)以及包封在 PHEA-g-PEG-bPEI(PPP-QDot)中的制备 QDot 的粒径和表面电荷测量。使用共聚焦显微镜证实了 PPP-QDot 和 PPP-QDot/KR 纳米颗粒的细胞摄取,分析了与 PPP-QDot/KR 纳米颗粒摄取相关的细胞毒性和转染效率。使用共聚焦显微镜和 Western blot 证实了正常细胞和癌细胞中 KR 的表达。使用相差、荧光和共聚焦显微镜观察了 KR 细胞内激活前后的细胞形态。使用凋亡染色和细胞增殖测定法确定了暴露于蓝光发光二极管照射后的细胞命运,证实了增殖抑制和代谢活性降低。我们确定 ROS 的产生导致了 PPP-QDot/KR 纳米颗粒和蓝光暴露治疗后的细胞损伤。

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Intracellular delivery and activation of the genetically encoded photosensitizer Killer Red by quantum dots encapsulated in polymeric micelles.量子点包被在聚合物胶束中用于基因编码的光敏剂 Killer Red 的细胞内传递和激活。
Colloids Surf B Biointerfaces. 2014 Apr 1;116:284-94. doi: 10.1016/j.colsurfb.2014.01.001. Epub 2014 Jan 17.
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引用本文的文献

1
Genetically Encoded Photosensitizer for Destruction of Protein or Cell Function.基因编码的光动力试剂用于破坏蛋白质或细胞功能。
Adv Exp Med Biol. 2021;1293:265-279. doi: 10.1007/978-981-15-8763-4_16.
2
Towards PDT with Genetically Encoded Photosensitizer KillerRed: A Comparison of Continuous and Pulsed Laser Regimens in an Animal Tumor Model.迈向使用基因编码光敏剂KillerRed的光动力疗法:动物肿瘤模型中连续和脉冲激光治疗方案的比较。
PLoS One. 2015 Dec 11;10(12):e0144617. doi: 10.1371/journal.pone.0144617. eCollection 2015.
3
Polymeric nanocarrier systems for photodynamic therapy.
用于光动力疗法的聚合物纳米载体系统。
Biomater Res. 2014 Dec 8;18:19. doi: 10.1186/2055-7124-18-19. eCollection 2014.
4
The application of KillerRed for acute protein inactivation in living cells.KillerRed在活细胞中用于急性蛋白质失活的应用。
Curr Protoc Cytom. 2014 Jul 1;69:12.35.1-12.35.10. doi: 10.1002/0471142956.cy1235s69.