TY - JOUR
T1 - Insights into the Excited State Dynamics of Donor–Acceptor Organic Photosensitizer for Precise Deep-Brain Two-Photon Photodynamic Therapy
AU - Zhao, Hui
AU - He, Mubin
AU - He, Tingchao
AU - Wu, Zizi
AU - Pan, Yonghui
AU - Gao, Jia
AU - Miao, Xiaofei
AU - Li, Junzi
AU - Ma, Huili
AU - Huang, Wei
AU - Hu, Wenbo
AU - Fan, Quli
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/5
Y1 - 2024/5
N2 - Organic photosensitizer with both large two-photon absorption (σ) and efficient intersystem crossing (ISC) offers incomparable advantages in precise two-photon photodynamic therapy. However, the current design strategy cannot achieve efficient ISC without compromising σ. Here, very efficient ISC and ultrahigh σ in organic photosensitizer (PFBT) for precise cerebrovascular two-photon photodynamic therapy is simultaneously achieved. A hybridized local and charge-transfer (1HLCT) excited state in PFBT, formed by incorporating benzothiadiazole into a typical polyfluorene (PF), is the key to initiating efficient ISC while bringing substantial σ enhancement (25 000 GM vs 10 000 GM) compared to PF. Mechanism studies identify that 1HLCT produces large spin-orbit coupling and tiny singlet-triplet energy gaps, together generating efficient ISC. These properties afford PFBT nanophotosensitizer a ≈2000-fold increase in two-photon photodynamic therapy efficiency than clinically-used Photofrin, enabling in vivo deep-brain cerebrovascular imaging and closure with unprecedented precision.
AB - Organic photosensitizer with both large two-photon absorption (σ) and efficient intersystem crossing (ISC) offers incomparable advantages in precise two-photon photodynamic therapy. However, the current design strategy cannot achieve efficient ISC without compromising σ. Here, very efficient ISC and ultrahigh σ in organic photosensitizer (PFBT) for precise cerebrovascular two-photon photodynamic therapy is simultaneously achieved. A hybridized local and charge-transfer (1HLCT) excited state in PFBT, formed by incorporating benzothiadiazole into a typical polyfluorene (PF), is the key to initiating efficient ISC while bringing substantial σ enhancement (25 000 GM vs 10 000 GM) compared to PF. Mechanism studies identify that 1HLCT produces large spin-orbit coupling and tiny singlet-triplet energy gaps, together generating efficient ISC. These properties afford PFBT nanophotosensitizer a ≈2000-fold increase in two-photon photodynamic therapy efficiency than clinically-used Photofrin, enabling in vivo deep-brain cerebrovascular imaging and closure with unprecedented precision.
KW - excited state dynamics
KW - hybridized local and charge-transfer
KW - intersystem crossing
KW - two-photon photosensitizer
UR - http://www.scopus.com/inward/record.url?scp=85181245948&partnerID=8YFLogxK
U2 - 10.1002/lpor.202300917
DO - 10.1002/lpor.202300917
M3 - 文章
AN - SCOPUS:85181245948
SN - 1863-8880
VL - 18
JO - Laser and Photonics Reviews
JF - Laser and Photonics Reviews
IS - 5
M1 - 2300917
ER -