Aggregation-induced emission photosensitizer-based photodynamic therapy in cancer: from chemical to clinical
Фотодинамическая терапия рака на основе фотосенсибилизаторов с агрегационно-индуцированной эмиссией: от химии к клиническому применению
2022-07-26
SCID: 54.1/usyap5zb
Discuss with AI
aggregation-caused quenchingaggregation-induced emission photosensitizerscancer treatmentphotodynamic therapyreactive oxygen species
Figures from the paper
Abstract (AI)
Cancer remains a serious threat to human health owing to the lack of effective treatments. Photodynamic therapy (PDT) has emerged as a promising non-invasive cancer treatment that consists of three main elements: photosensitizers (PSs), light and oxygen. However, some traditional PSs are prone to aggregation-caused quenching (ACQ), leading to reduced reactive oxygen species (ROS) generation capacity. Aggregation-induced emission (AIE)-PSs, due to their distorted structure, suppress the strong molecular interactions, making them more photosensitive in the aggregated state instead. Activated by light, they can efficiently produce ROS and induce cell death. PS is one of the core factors of efficient PDT, so proceeding from the design and preparation of AIE-PSs, including how to manipulate the electron donor (D) and receptor (A) in the PSs configuration, introduce heavy atoms or metal complexes, design of Type I AIE-PSs, polymerization-enhanced photosensitization and nano-engineering approaches. Then, the preclinical experiments of AIE-PSs in treating different types of tumors, such as ovarian cancer, cervical cancer, lung cancer, breast cancer, and its great potential clinical applications are discussed. In addition, some perspectives on the further development of AIE-PSs are presented. This review hopes to stimulate the interest of researchers in different fields such as chemistry, materials science, biology, and medicine, and promote the clinical translation of AIE-PSs.
Key Findings
1
AIE-based photodynamic therapy shows substantial promise for clinical translation, although further development is needed to advance these systems toward clinical use.
2
AIE-photosensitizer performance can be engineered through donor–acceptor manipulation, heavy-atom or metal-complex incorporation, Type I photochemistry, polymerization-enhanced sensitization, and nano-engineering.
3
Aggregation-induced emission photosensitizers retain or enhance photosensitivity in aggregated states by suppressing strong molecular interactions through distorted molecular structures.
4
Preclinical studies indicate that AIE-photosensitizers have therapeutic potential across ovarian, cervical, lung, and breast cancers.
5
Traditional photosensitizers can suffer aggregation-caused quenching, reducing reactive oxygen species generation and photodynamic therapy efficacy.
Research Object
Aggregation-induced emission photosensitizers (AIE-PSs) for photodynamic cancer therapy
Research Subject
The chemical design, photosensitization mechanisms, reactive oxygen species generation, antitumor efficacy, and clinical translation of AIE-PSs
Publication Details
Publication Date
2022-07-26
Journal
Publisher
ISSN
Cited by
131
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest