Abstract 51P
Background
Ultrasound (US)-activated sonodynamic therapy (SDT) stands for a distinct antitumor modality because of its attractive characteristics including intriguing noninvasiveness, desirable safety, and high tissue penetration depth, which, unfortunately, suffers from compromised therapeutic efficacy due to cancer cell-inherent adaptive mechanisms, such as glutathione (GSH) neutralization response to reactive oxygen species (ROS), and glutamine addictive properties of tumors.
Methods
In this work, we developed a biological sonosensitive platelet (PLT) pharmacytes for favoring US/GSH-responsive combinational therapeutic of glutamine deprivation and augmented SDT. The amino acid transporter SLC6A14 blockade agent α-methyl-DL-tryptophan (α-MT)-loaded and MnO2-coated por- phyrinic metal-organic framework (MOF) nanoparticles were encapsulated in the PLTs through the physical adsorption of electrostatic attraction and the intrinsic endocytosis of PLTs.
Results
When the sonosensitive PLT phar- macytes reached tumor sites through their natural tendencies to TME, US stimulated the PLTs-loaded porphyrinic MOF to generate ROS, resulting in morphological changes of the PLTs and the release of nanoparticles. Subse- quently, intracellular high concentration of GSH and extracellular spatio-temporal controlled US irradiation programmatically triggered the release of α-MT, which enabled the synergistically amplified SDT by inducing amino acid starvation, inhibiting mTOR, and mediating ferroptosis. In addition, US stimulation achieved the targeted activation of PLTs at tumor vascular site, which evolved from circulating PLTs to dendritic PLTs, effectively blocking the blood supply of tumors through thrombus formation, and revealing the encouraging potential to facilitate tumor therapeutics.
Conclusions
It offers a bioinspired design strategy to improve SDT efficiency, and rends an innovative paradigm for cooperatively ablating refractory tumor.
Clinical trial identification
Legal entity responsible for the study
University of Macau.
Funding
University of Macau.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
4P - Spatially resolved transcriptome elucidates bidirectional tertiary lymphoid structure interacts with tumor microenvironment of non-small cell lung cancer
Presenter: Xin Zhao
Session: Poster session 09
5P - Tertiary lymphoid structures (TLS) presence and stromal blood vessels heterogeneity differentially influence recurrence, lymphovascular, and perineural invasion in breast cancer molecular subtypes
Presenter: Andrei Cosma
Session: Poster session 09
6P - Combined single-cell and spatially resolved mapping of the human lymph node ecosystem reveals fundamental principles of lymphoma tissue organization
Presenter: Daniel Hübschmann
Session: Poster session 09
7P - Engineered salmonella blocks cancer metastasis by activating NK cells in an IFN-γ-dependent manner
Presenter: JIANDONG HUANG
Session: Poster session 09
8P - Modulating tumor microenvironment using a VEGF active immunotherapeutic approach in gastrointestinal tumors: Beyond angiogenesis modulation
Presenter: Mónica Bequet-Romero
Session: Poster session 09
9P - Identification of a μCT-based radiomic signature of CD8+ tumour infiltrating lymphocytes in an orthotopic murine model
Presenter: Giulia Mazzaschi
Session: Poster session 09
10P - Cancer cells induce intracellular gap formation in sinusoidal endothelial cells to produce liver metastasis through pro-inflammatory paracrine mechanisms
Presenter: Hoang Truong
Session: Poster session 09
11P - Targeting stromal cells to reverse immune suppression in triple-negative breast cancer
Presenter: Julia Chen
Session: Poster session 09
12P - Immuno-suppressive role of tumour-derived GDF-15 on myeloid cells
Presenter: Christine Schuberth-Wagner
Session: Poster session 09
13P - Disrupting the immunosuppressive tumor microenvironment using genetically engineered macrophages for triple-negative breast cancer therapy
Presenter: Sabrina Traxel
Session: Poster session 09