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Updated: Jul 5, 2025

Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
In vivo therapy of osteosarcoma using anion transporters-based supramolecular drugs
Zeyu Zheng1,2, Xiaoan Wei1,2, Yangyang Lin3,4
1Department of Orthopaedic Surgery, Sir Run Run Shaw Hospital, Zhejiang University School of Medicine, Hangzhou, China.
Background:
Osteosarcoma represents a serious clinical challenge due to its widespread genomic alterations, tendency for drug resistance and distant metastasis. New treatment methods are urgently needed to address those treatment difficulties in osteosarcoma to improve patient prognoses. In recent years, small-molecule based anion transporter have emerged as innovative and promising therapeutic compound with various biomedical applications. However, due to a lack of efficient delivery methods, using ion transporters as therapeutic drugs in vivo remains a major challenge.
Result:
Herein, we developed self-assembled supramolecular drugs based on small-molecule anion transporters, which exhibited potent therapeutic effect towards osteosarcoma both in vitro and in vivo. The anion transporters can disrupt intracellular ion homeostasis, inhibit proliferation, migration, epithelial-mesenchymal transition process, and lead to osteosarcoma cell death. RNA sequencing, western blot and flow cytometry indicated reprogramming of HOS cells and induced cell death through multiple pathways. These pathways included activation of endoplasmic reticulum stress, autophagy, apoptosis and cell cycle arrest, which avoided the development of drug resistance in osteosarcoma cells. Functionalized with osteosarcoma targeting peptide, the assembled supramolecular drug showed excellent targeted anticancer therapy against subcutaneous xenograft tumor and lung metastasis models. Besides good tumor targeting capability and anti-drug resistance, the efficacy of the assembly was also attributed to its ability to regulate the tumor immune microenvironment in vivo.
Conclusions:
In summary, we have demonstrated for the first time that small-molecule anion transporters are capable of killing osteosarcoma cells through multiple pathways. The assemblies, OTP-BP-L, show excellent targeting and therapeutic effect towards osteosarcoma tumors. Furthermore, the supramolecular drug shows a strong ability to regulate the tumor immune microenvironment in vivo. This work not only demonstrated the biomedical value of small-molecule anion transporters in vivo, but also provided an innovative approach for the treatment of osteosarcoma.
Insights
Researchers developed novel supramolecular drugs using small-molecule anion transporters to effectively treat osteosarcoma. These targeted therapies disrupt cancer cell function and regulate the tumor immune microenvironment, offering a promising new approach for osteosarcoma treatment.
Area of Science:
- Biomedical Engineering
- Oncology
- Nanotechnology
Background:
- Osteosarcoma presents significant therapeutic challenges due to genomic instability, drug resistance, and metastasis.
- Current treatments for osteosarcoma are limited, necessitating novel therapeutic strategies.
- Small-molecule anion transporters show promise but face delivery challenges for in vivo applications.
Purpose of the Study:
- To develop and evaluate self-assembled supramolecular drugs based on small-molecule anion transporters for osteosarcoma treatment.
- To investigate the therapeutic mechanisms and efficacy of these supramolecular drugs in vitro and in vivo.
- To assess the potential of these agents in overcoming drug resistance and modulating the tumor immune microenvironment.
Main Methods:
- Development of self-assembled supramolecular drugs using small-molecule anion transporters.
- In vitro and in vivo evaluation of therapeutic efficacy in osteosarcoma models.
- Utilized RNA sequencing, Western blot, and flow cytometry to elucidate cell death pathways.
- Functionalization with osteosarcoma targeting peptides for enhanced delivery.
Main Results:
- The supramolecular drugs effectively inhibited osteosarcoma cell proliferation, migration, and epithelial-mesenchymal transition.
- Induction of cell death through multiple pathways including ER stress, autophagy, apoptosis, and cell cycle arrest, circumventing drug resistance.
- Targeted therapy demonstrated potent anticancer effects in xenograft tumor and lung metastasis models.
- Demonstrated regulation of the tumor immune microenvironment in vivo.
Conclusions:
- Small-molecule anion transporters, assembled into supramolecular drugs (OTP-BP-L), show significant potential for osteosarcoma treatment.
- These assemblies exhibit excellent targeting, therapeutic efficacy, and anti-drug resistance properties.
- The study highlights the biomedical value of anion transporters in vivo and presents an innovative strategy for osteosarcoma therapy.
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