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作为用于癌症光动力治疗的无重原子三重态光敏剂的BODIPY-杂[5]螺旋烯的设计与合成

Design and Synthesis of BODIPY-Hetero[5]helicenes as Heavy-Atom-Free Triplet Photosensitizers for Photodynamic Therapy of Cancer.

作者信息

Koli Mrunesh, Gupta Sonali, Chakraborty Saikat, Ghosh Ayan, Ghosh Rajib, Wadawale A P, Ghanty Tapan K, Patro Birija S, Mula Soumyaditya

机构信息

Bio-Organic Division, Bhabha Atomic Research Centre, Mumbai, 400085, India.

Homi Bhabha National Institute, Anushakti Nagar, Mumbai, 400094, India.

出版信息

Chemistry. 2023 Oct 13;29(57):e202301605. doi: 10.1002/chem.202301605. Epub 2023 Jul 28.

Abstract

Designing heavy-atom-free triplet photosensitizers (PSs) is a challenge for the efficient photodynamic therapy (PDT) of cancer. Helicenes are twisted polycyclic aromatic hydrocarbons (PAHs) with an efficient intersystem crossing (ISC) that is proportional to their twisting angle. But their difficult syntheses and weak absorption profile in the visible spectral region restrict their use as heavy-atom-free triplet PSs for PDT. On the other hand, boron-containing PAHs, BODIPYs are highly recognized for their outstanding optical properties. However, planar BODIPY dyes has low ISC and thus they are not very effective as PDT agents. We have designed and synthesized fused compounds containing both BODIPY and hetero[5]helicene structures to develop red-shifted chromophores with efficient ISC. One of the pyrrole units of the BODIPY core was also replaced by a thiazole unit to further enhance the triplet conversion. All the fused compounds have helical structure, and their twisting angles are also increased by substitutions at the boron centre. The helical structures of the BODIPY-hetero[5]helicenes were confirmed by X-ray crystallography and DFT structure optimization. The designed BODIPY-hetero[5]helicenes showed superior optical properties and high ISC with respect to [5]helicene. Interestingly their ISC efficiencies increase proportionally with their twisting angles. This is the first report on the relationship between the twisting angle and the ISC efficiency in twisted BODIPY-based compounds. Theoretical calculations showed that energy gap of the S1 and T1 states decreases in BODIPY-hetero[5]helicene as compared to planar BODIPY. This enhances the ISC rate in BODIPY-hetero[5]helicene, which is responsible for their high generation of singlet oxygen. Finally, their potential applications as PDT agents were investigated, and one BODIPY-hetero[5]helicene showed efficient cancer cell killing upon photo-exposure. This new design strategy will be very useful for the future development of heavy-atom-free PDT agents.

摘要

设计无重原子的三线态光敏剂(PSs)对于癌症的高效光动力疗法(PDT)而言是一项挑战。螺旋烯是具有有效系间窜越(ISC)的扭曲多环芳烃(PAHs),其ISC与扭曲角成正比。但它们合成困难且在可见光谱区域的吸收较弱,限制了其作为用于PDT的无重原子三线态PSs的应用。另一方面,含硼的PAHs、BODIPYs因其出色的光学性质而备受认可。然而,平面BODIPY染料的ISC较低,因此它们作为PDT剂的效果不太理想。我们设计并合成了同时包含BODIPY和杂[5]螺旋烯结构的稠合化合物,以开发具有高效ISC的红移发色团。BODIPY核心的一个吡咯单元也被噻唑单元取代,以进一步提高三线态转换效率。所有稠合化合物都具有螺旋结构,并且它们的扭曲角也因硼中心的取代而增大。通过X射线晶体学和DFT结构优化证实了BODIPY - 杂[5]螺旋烯的螺旋结构。所设计的BODIPY - 杂[5]螺旋烯相对于[5]螺旋烯表现出优异的光学性质和高ISC。有趣的是,它们的ISC效率随扭曲角成比例增加。这是关于扭曲的基于BODIPY的化合物中扭曲角与ISC效率之间关系的首次报道。理论计算表明,与平面BODIPY相比,BODIPY - 杂[5]螺旋烯中S1和T1态的能隙减小。这提高了BODIPY - 杂[5]螺旋烯中的ISC速率,这是其高单线态氧生成的原因。最后,研究了它们作为PDT剂的潜在应用,一种BODIPY - 杂[5]螺旋烯在光照射下表现出高效的癌细胞杀伤能力。这种新的设计策略对于无重原子PDT剂的未来发展将非常有用。

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