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Synergetic Enhancement of Tumor Double-Targeted MRI Nano-Probe
Nikita Yabbarov1, Elena Nikolskaya1, Maria Sokol1
1N. M. Emanuel Institute of Biochemical Physics of Russian Academy of Sciences, 119334 Moscow, Russia.
Abstract:
The conventional targeted delivery of chemotherapeutic and diagnostic agents utilizing nanocarriers is a promising approach for cancer theranostics. Unfortunately, this approach often faces hindered tumor access that decreases the therapeutic index and limits the further clinical translation of a developing drug. Here, we demonstrated a strategy of simultaneously double-targeting the drug to two distinct cites of tumor tissue: the tumor endothelium and cell surface receptors. We used fourth-generation polyamideamine dendrimers modified with a chelated Gd and functionalized with selectin ligand and alpha-fetoprotein receptor-binding peptide. According to the proposed strategy, IELLQAR peptide promotes the conjugate recruitment to the tumor inflammatory microenvironment and enhances extravasation through the interaction of nanodevice with P- and E-selectins expressed by endothelial cells. The second target moiety-alpha-fetoprotein receptor-binding peptide-enhances drug internalization into cancer cells and the intratumoral retention of the conjugate. The final conjugate contained 18 chelated Gd ions per dendrimer, characterized with a 32 nm size and a negative surface charge of around 18 mV. In vitro contrasting properties were comparable with commercially available Gd-chelate: r1 relaxivity was 3.39 for Magnevist and 3.11 for conjugate; r2 relaxivity was 5.12 for Magnevist and 4.81 for conjugate. By utilizing this dual targeting strategy, we demonstrated the increment of intratumoral accumulation, and a remarkable enhancement of antitumor effect, resulting in high-level synergy compared to monotargeted conjugates. In summary, the proposed strategy utilizing tumor tissue double-targeting may contribute to an enhancement in drug and diagnostic accumulation in aggressive tumors.
Insights
This study introduces a dual-targeting nanocarrier strategy for enhanced cancer theranostics. By targeting both tumor endothelium and cell surface receptors, this approach improves drug accumulation and antitumor effects in aggressive tumors.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Conventional nanocarrier-based cancer theranostics face challenges with tumor penetration, limiting efficacy.
- Hindered tumor access reduces the therapeutic index and clinical translation of nanomedicines.
Purpose of the Study:
- To develop a dual-targeting nanocarrier strategy for simultaneous targeting of tumor endothelium and cancer cell surface receptors.
- To enhance drug accumulation and therapeutic efficacy in aggressive tumors.
Main Methods:
- Utilized fourth-generation polyamideamine dendrimers functionalized with a selectin ligand and an alpha-fetoprotein receptor-binding peptide.
- Incorporated chelated Gadolinium (Gd) for diagnostic imaging capabilities.
- Characterized the nanoconjugate size, surface charge, and in vitro contrasting properties.
Main Results:
- The dual-targeting strategy significantly increased intratumoral accumulation of the nanoconjugate.
- Demonstrated enhanced antitumor effects and high-level synergy compared to monotargeted conjugates.
- Achieved in vitro contrasting properties comparable to commercial Gadolinium chelates.
Conclusions:
- Simultaneous dual-targeting of tumor endothelium and cell surface receptors is an effective strategy for improving nanomedicine delivery.
- This approach enhances drug and diagnostic agent accumulation in aggressive tumors, offering a promising advancement in cancer theranostics.
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