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A Comprehensive Procedure to Evaluate the In Vivo Performance of Cancer Nanomedicines
Published on: March 4, 2017
Pro-Nifuroxazide Self-Assembly Leads to Triggerable Nanomedicine for Anti-cancer Therapy
Santosh K Misra1,2, Zhe Wu, Fatemeh Ostadhossein1,2
1Department of Bioengineering , University of Illinois at Urbana-Champaign , Urbana 61801 , United States.
Abstract:
Transcription factor STAT3 has been shown to regulate genes that are involved in stem cell self-renewal and thus represents a novel therapeutic target of great biological significance. However, many small-molecule agents with potential effects through STAT3 modulation in cancer therapy lack aqueous solubility and high off-target toxicity, hence impeding efficient bioavailability and activity. This work, for the first time, reports a prodrug-based strategy for selective and safer delivery of STAT3 inhibitors designed toward metastatic and drug-resistant breast cancer. We have synthesized a novel lipase-labile SN-2 phospholipid prodrug from a clinically investigated STAT3 inhibitor, nifuroxazide (Pro-nifuroxazide), which can be regioselectively cleaved by the membrane-abundant enzymes in cancer cells. Pro-nifuroxazide self-assembled to sub 20 nm nanoparticles (NPs), and the cytotoxic ability was screened in ER(+)-MCF-7 and ER(-)-MD-MB231 cells at 48-72 h using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetra-zolium bromide proliferation assay. Results indicated that Pro-nifuroxazide NPs are multifold more effective toward inhibiting cancer cells in a time-dependent manner compared to parent nifuroxazide. A remarkable improvement in the local concentration of drugs to as high as ∼240 fold when assembled into NPs is presumably the reason for this functional improvement. We also introduced molecular dynamics simulations to generate Pro-nifuroxazide nano-assembly, as a model assembly from triggerable anti-cancer drugs, to provide molecular insights correlating physicochemical and anti-cancer properties. In silico properties of Pro-nifuroxazide including size, chemistry of NPs and membrane interactions with individual molecules could be validated by in vitro functional activities in cells of breast cancer origin. The in vivo anti-cancer efficiencies of Pro-nifuroxazide NPs in nude mice xenografts with MCF-7 revealed remarkable growth inhibition of as high as 400%. Histopathological analysis corroborated these findings to show significantly high nuclear fragmentation and retracted cytoplasm. Immunostaining on tumor section demonstrated a significantly lower level of pSTAT-3 by Pro-nifuroxazide NP treatment, establishing the inhibition of STAT-3 phosphorylation. Our strategy for the first time proposes a translatable prodrug agent self-assembled into NPs and demonstrates remarkable enhancement in IC50, induced apoptosis, and reduced cancer cell population through STAT-3 inhibition via reduced phosphorylation.
Insights
This study introduces Pro-nifuroxazide nanoparticles, a novel prodrug strategy that significantly enhances STAT3 inhibition for treating metastatic and drug-resistant breast cancer, improving drug delivery and reducing toxicity.
Area of Science:
- Biochemistry
- Nanomedicine
- Oncology
Background:
- Signal transducer and activator of transcription 3 (STAT3) is crucial for stem cell self-renewal and a significant therapeutic target in cancer.
- Existing small-molecule STAT3 inhibitors often suffer from poor solubility and high toxicity, limiting their clinical application.
- Metastatic and drug-resistant breast cancer remains a major clinical challenge requiring innovative therapeutic strategies.
Purpose of the Study:
- To develop a prodrug-based strategy for targeted and safer delivery of STAT3 inhibitors to combat metastatic and drug-resistant breast cancer.
- To synthesize and characterize a novel phospholipid prodrug of nifuroxazide (Pro-nifuroxazide) self-assembling into nanoparticles (NPs).
- To evaluate the in vitro and in vivo efficacy of Pro-nifuroxazide NPs in inhibiting cancer cell growth and STAT3 phosphorylation.
Main Methods:
- Synthesis of a lipase-labile SN-2 phospholipid prodrug (Pro-nifuroxazide) from nifuroxazide.
- Characterization of Pro-nifuroxazide self-assembled nanoparticles (NPs) with sizes under 20 nm.
- In vitro cytotoxicity assays using MTT proliferation assay in MCF-7 and MD-MB231 breast cancer cell lines.
- Molecular dynamics simulations to model nano-assembly and understand physicochemical properties.
- In vivo efficacy studies in nude mice xenografts with MCF-7 cells, followed by histopathological and immunostaining analyses.
Main Results:
- Pro-nifuroxazide NPs demonstrated significantly enhanced cytotoxic effects against breast cancer cells compared to the parent drug, nifuroxazide.
- Nanoparticle formulation led to a substantial increase in local drug concentration (up to ~240-fold), improving efficacy.
- In vivo studies showed remarkable tumor growth inhibition (up to 400%) and significant reduction in STAT3 phosphorylation (pSTAT3) in tumor tissues.
- Histopathological analysis confirmed increased nuclear fragmentation and cytoplasmic retraction, indicative of apoptosis.
Conclusions:
- The developed Pro-nifuroxazide NPs represent a translatable prodrug strategy for enhanced STAT3 inhibition in breast cancer therapy.
- This approach significantly improves drug efficacy, induces apoptosis, and reduces cancer cell populations by targeting STAT3 phosphorylation.
- The self-assembling nanoparticle system offers a safer and more effective delivery method for STAT3 inhibitors, addressing limitations of conventional small molecules.
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