Zou Qianli, Bao Jianwei, Yan Xuehai
School of Pharmacy, Anhui Medical University, Hefei, 230032, P. R. China.
State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.
Small Methods. 2022 Apr;6(4):e2101359. doi: 10.1002/smtd.202101359. Epub 2022 Feb 10.
Endogenic pigments derived from hemoglobin have been successfully applied in the clinic for both imaging and therapy based on their inherent photophysical and photochemical properties, including light absorption, fluorescence emission, and producing reactive oxygen species. However, the clinically approved endogenic pigments can be excited only by UV/vis light, restricting the penetration depth of in vivo applications. Recently, endogenic pigments with NIR-absorbing properties have been explored for constructing functional nanomaterials. Here, the overview of NIR-absorbing endogenic pigments, mainly bile pigments, and melanins, as emerging building blocks for supramolecular construction of diagnostic and therapeutic nanomaterials is provided. The endogenic origins, synthetic pathways, and structural characteristics of the NIR-absorbing endogenic pigments are described. The self-assembling approaches and noncovalent interactions in fabricating the nanomaterials are emphasized. Since bile pigments and melanins are inherently photothermal agents, the resulting nanomaterials are demonstrated as promising candidates for photoacoustic imaging and photothermal therapy. Integration of additional diagnostic and therapeutic agents by the nanomaterials through chemical conjugation or physical encapsulation toward synergetic effects is also included. Especially, the degradation behaviors of the nanomaterials in biological environments are summarized. Along with the challenges, future perspectives are discussed for accelerating the ration design and clinical translation of NIR-absorbing nanomaterials.
源自血红蛋白的内源性色素因其固有的光物理和光化学性质,包括光吸收、荧光发射以及产生活性氧,已成功应用于临床成像和治疗。然而,临床上已获批的内源性色素仅能被紫外/可见光激发,这限制了其体内应用的穿透深度。近来,具有近红外吸收特性的内源性色素已被用于构建功能性纳米材料。在此,提供了对近红外吸收内源性色素(主要是胆色素和黑色素)的概述,它们是用于诊断和治疗纳米材料超分子构建的新兴构建单元。描述了近红外吸收内源性色素的内源性起源、合成途径和结构特征。强调了在制备纳米材料过程中的自组装方法和非共价相互作用。由于胆色素和黑色素本身就是光热剂,所得到的纳米材料被证明是光声成像和光热治疗的有前景的候选者。还包括纳米材料通过化学偶联或物理包封整合额外的诊断和治疗剂以实现协同效应。特别地,总结了纳米材料在生物环境中的降解行为。伴随着挑战,还讨论了加速近红外吸收纳米材料合理设计和临床转化的未来前景。