Department of Medical Nanotechnology, Faculty of Advanced Medical Science, Tabriz University of Medical Sciences, Tabriz 51664, Iran.
IET Nanobiotechnol. 2014 Jun;8(2):59-76. doi: 10.1049/iet-nbt.2012.0028.
Quantum dots (QDs) are one of the first nanotechnologies to be integrated with the biological sciences that used for imaging or tracking macromolecules/cells in cell/tissue. Because of QDs are important in biomedical and biological applications, identify a variety of synthesis methods to produce QDs with different characteristics also is particularly important. Hence, in this review the authors discussed three methods for synthesis of heavy metal chalcogenide-based QDs for use in biomedical field: (i) Organometallic method for synthesis of QDs consists of three components: precursors, organic surfactants and solvents. The authors also discussed water-solubilisation strategies of synthesised QDs including encapsulation and ligand exchange. (ii) Aqueous synthesis technique using short-chain thiols as stabilising agents is a useful alternative to organometallic synthesis of CdSe, CdS and CdTe QDs. (iii) The third method discussed in this article for QDs synthesis involves the utilise of microorganisms to prepare QDs with controlled size, shape, chemical composition and functionality. The authors also discussed recently new methods for the synthesis of the appropriate QDs for use in biology. In addition, attachment of biomolecules such as antibodies, oligonucleotides on the surface of QDs for specific targeting and different opinions about toxicity of QD have been studied.
量子点 (QDs) 是最早与生物科学相结合的纳米技术之一,用于在细胞/组织中对生物大分子/细胞进行成像或跟踪。由于 QD 在生物医学和生物学应用中非常重要,因此开发出具有不同特性的各种合成方法来生产 QD 也尤为重要。因此,在这篇综述中,作者讨论了三种用于合成重金属硫属化物基 QD 以用于生物医学领域的方法:(i) 有机金属法用于合成 QD,由三种成分组成:前体、有机表面活性剂和溶剂。作者还讨论了合成 QD 的水溶性策略,包括封装和配体交换。(ii) 使用短链硫醇作为稳定剂的水相合成技术是一种替代有机金属合成 CdSe、CdS 和 CdTe QD 的有用方法。(iii) 本文讨论的第三种 QD 合成方法涉及利用微生物来制备具有可控尺寸、形状、化学组成和功能的 QD。作者还讨论了最近用于生物学中应用的合适 QD 的合成的新方法。此外,还研究了将生物分子(如抗体、寡核苷酸)附着在 QD 表面上进行特定靶向以及关于 QD 毒性的不同意见。