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卟吩内酯化学:一种具有可调近红外光物理性质的仿生光敏剂的新兴方法。

Porpholactone Chemistry: An Emerging Approach to Bioinspired Photosensitizers with Tunable Near-Infrared Photophysical Properties.

机构信息

Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering , Peking University , Beijing 100871 , P. R. China.

出版信息

Acc Chem Res. 2019 Sep 17;52(9):2620-2633. doi: 10.1021/acs.accounts.9b00119. Epub 2019 Jul 12.

Abstract

Chlorophylls, known as the key building blocks of natural light-harvesting antennae, are essential to utilize solar energy from visible to near-infrared (NIR) region during the photosynthesis process. The fundamental studies for the relationship between structure and photophysical properties of chlorophylls disclosed the importance of -peripheral modification and thus boosted the fast growth of NIR absorbing/emissive porphyrinoids via altering the extent of π-conjugation and the degree of distortion from the planarity of macrocycle. Despite the tremendous progress made in various porphyrin-based synthetic models, it still remains a challenge to precisely modulate photophysical properties through fine-tuning of -peripheral structures in the way natural chlorophylls do. With this in mind, we initiated a program and focused on -CF-substituted porpholactone (), in which one -pyrrolic double bond was replaced by a lactone moiety, as an attractive platform to construct the bioinspired library of NIR porphyrinoids. In this Account, we summarize our recent contributions to the bioinspired design, synthesis, photophysical characterization, and applications of porpholactones and their derivatives. We have developed a general, convenient method to directly prepare porpholactones in large scale up to gram, which forms the chemical basis of porpholactone chemistry. By modulation of the saturation level and in particular regioisomerization of -dilactone moieties, a synthetic library constituted by a series of porpholactones and their derivatives has been established. Thanks to the electron-withdrawing nature of lactone moiety, derivation of the saturation levels gives help to build stable models for chlorin, bacteriochlorin, and tunichlorin. It is worth noting that regioisomerization of dilactone moieties mimics the relative orientation of -substituents in natural chlorophylls and hemes, which was considered as the key factor to tune NIR absorption and reactivity. Porpholactones can illustrate the capability of fine-tuning photophysical properties including the excited triplet states by subtle alteration of -peripheral structures in the presence of transition metals and lanthanides (Ln). Furthermore, they can serve as efficient photosensitizers for singlet oxygen and NIR Ln, showing potential applications in cell imaging and photocytotoxicity studies. The high luminescence, tunable structures, high cellular uptake, and intense NIR absorption render them as promising and competitive candidates for theranostics and . Therefore, extending the studies of "porpholactone chemistry" not only tests the fundamental understanding of the structure-function relationship that governs NIR photophysical properties of natural tetrapyrrole cofactors such as chlorophylls but also provides the guiding principles for the bioinspired design of NIR luminescent molecular probes with various applications. Taken together, as a new synthetic porphyrin derivative, porpholactone chemistry shines light on synthetic porphyrin, bioinorganic, and lanthanide chemistry.

摘要

叶绿素被称为天然光捕获天线的关键构建模块,对于光合作用过程中利用可见光到近红外(NIR)区域的太阳能至关重要。对叶绿素结构与光物理性质之间关系的基础研究揭示了 - 外围修饰的重要性,从而通过改变 π 共轭程度和大环平面度的变形程度,促进了 NIR 吸收/发射卟啉类化合物的快速发展。尽管在各种基于卟啉的合成模型方面取得了巨大进展,但仍然难以通过精细调节 - 外围结构来精确调节光物理性质,就像天然叶绿素那样。考虑到这一点,我们启动了一个项目,并专注于 -CF-取代的卟吩内酯(),其中一个 - 吡咯双键被内酯部分取代,作为构建 NIR 卟啉类生物灵感库的有吸引力的平台。在本账目中,我们总结了我们最近在卟吩内酯及其衍生物的生物灵感设计、合成、光物理特性表征和应用方面的贡献。我们开发了一种通用、方便的方法,可以直接在大规模上制备卟吩内酯,最高可达克级,这为卟吩内酯化学奠定了化学基础。通过调节 - 二内酯部分的饱和度水平,特别是区域异构体化,可以建立由一系列卟吩内酯及其衍生物组成的合成库。由于内酯部分的吸电子性质,衍生出的饱和度水平有助于为叶绿素、细菌叶绿素和 tunichlorin 构建稳定的模型。值得注意的是,二内酯部分的区域异构体化模拟了天然叶绿素和血红素中 - 取代基的相对取向,这被认为是调节 NIR 吸收和反应性的关键因素。卟吩内酯可以通过在过渡金属和镧系元素(Ln)存在下细微改变 - 外围结构来阐明精细调节光物理性质(包括激发三重态)的能力。此外,它们可以作为单线态氧和 NIR Ln 的有效光敏剂,在细胞成像和光细胞毒性研究中显示出潜在的应用。高发光、可调结构、高细胞摄取和强烈的 NIR 吸收使它们成为治疗学和诊断学的有前途和有竞争力的候选者。因此,扩展“卟吩内酯化学”的研究不仅检验了结构-功能关系的基本理解,这种关系支配着叶绿素等天然四吡咯辅因子的 NIR 光物理性质,而且为具有各种应用的 NIR 发光分子探针的生物灵感设计提供了指导原则。总之,作为一种新型合成卟啉衍生物,卟吩内酯化学照亮了合成卟啉、生物无机和镧系元素化学的道路。

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