Expanded ROS Generation and Hypoxia Reversal: Excipient-free Self-assembled Nanotheranostics for Enhanced Cancer Photodynamic Immunotherapy.
1/5 보강
ℹ️ 이 논문은 무료 전문이 아직 없습니다. 코퍼스 전체의 43.9%는 무료 가능 (통계 →) · 🏥 기관 EZproxy로 시도
The efficacy of photodynamic therapy (PDT)-related cancer therapies is significantly restricted by two irreconcilable obstacles, i.e., low reactive oxygen species (ROS) generation capability and hypox
APA
Yang J, Ren B, et al. (2024). Expanded ROS Generation and Hypoxia Reversal: Excipient-free Self-assembled Nanotheranostics for Enhanced Cancer Photodynamic Immunotherapy.. Advanced materials (Deerfield Beach, Fla.), 36(30), e2402720. https://doi.org/10.1002/adma.202402720
MLA
Yang J, et al.. "Expanded ROS Generation and Hypoxia Reversal: Excipient-free Self-assembled Nanotheranostics for Enhanced Cancer Photodynamic Immunotherapy.." Advanced materials (Deerfield Beach, Fla.), vol. 36, no. 30, 2024, pp. e2402720.
PMID
38734937 ↗
Abstract 한글 요약
The efficacy of photodynamic therapy (PDT)-related cancer therapies is significantly restricted by two irreconcilable obstacles, i.e., low reactive oxygen species (ROS) generation capability and hypoxia which constrains the immune response. Herein, this work develops a self-assembled clinical photosensitizer indocyanine green (ICG) and the HSP90 inhibitor 17-dimethylaminoethylamino-17-demethoxygeldanamycin (17-DMAG) nanoparticles (ISDN) without any excipient. This work discovers that the hydrophobic interaction forces between ICG and 17-DMAG promote the photostability of ICG and its intersystem crossing (ISC) process, thereby improving the ROS quantum yield from 0.112 to 0.46. Augmented ROS generation enhances PDT efficacy and further enhances immunogenic cell death (ICD) effects. 17-DMAG inhibits the HSP90/hypoxia-inducible factor 1α (HIF-1α) axis to dramatically reverse the immunosuppressive tumor microenvironment caused by PDT-aggravated hypoxia. In a mouse model of pancreatic cancer, ISDN markedly improve cytotoxic T lymphocyte infiltration and MHC I and MHC II activation, demonstrating the superior ICD effects in situ tumor and the powerful systematic antitumor immunity generation, eventually achieving vigorous antitumor and recurrence resistance. This study proposes an unsophisticated and versatile strategy to significantly improve PDT efficacy for enhancing systemic antitumor immunity and potentially extending it to multiple cancers.
🏷️ 키워드 / MeSH 📖 같은 키워드 OA만
- Photochemotherapy
- Animals
- Reactive Oxygen Species
- Mice
- Immunotherapy
- Indocyanine Green
- Cell Line
- Tumor
- Nanoparticles
- Photosensitizing Agents
- Humans
- Theranostic Nanomedicine
- HSP90 Heat-Shock Proteins
- Tumor Microenvironment
- Benzoquinones
- Pancreatic Neoplasms
- Lactams
- Macrocyclic
- Immunogenic Cell Death
- Hypoxia-Inducible Factor 1
- alpha Subunit
- Neoplasms
- HSP90 inhibitors
- hydrophobic interaction forces
… 외 3개
같은 제1저자의 인용 많은 논문 (5)
- Antitumoral immunity induced by gel ethanol ablation to treat unresectable colorectal cancer metastases in the liver.
- Fusion Imaging of F-FDG PET and MRI Identified an Inflammatory Esophageal Diverticulum in a Patient with Radioiodine-Refractory Differentiated Thyroid Cancer.
- Celastrol increases anoikis sensitivity to suppress triple-negative breast cancer via EGFR pathway and p-EMT state regulation.
- Impact of newer antihyperglycemic agents on hepatic complications: A systematic review and meta-analysis of data from 5.3 million patients with type 2 diabetes mellitus.
- Promptable segmentation with region exploration enables minimal-effort expert-level prostate cancer delineation.
🏷️ 같은 키워드 · 무료전문 — 이 논문 MeSH/keyword 기반
- SpNeigh: spatial neighborhood and differential expression analysis for high-resolution spatial transcriptomics.
- Key Considerations for Targeting in Pancreatic Cancer: Potential Impact on the Treatment Paradigm.
- The tumor microenvironment as a key regulator of radiotherapy response.
- Overcoming Chemoresistance in Glioblastoma: Mechanisms, Therapeutic Strategies, and Functional Precision Medicine.
- Advances in green-synthesized magnetic nanoparticles for targeted cancer therapy: mechanisms, applications, and future perspectives.
- SMURF2 in Anticancer Therapy: Dual Role in Carcinogenesis and Theranostics.