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Isolation of Primary Cancer-Associated Fibroblasts from a Syngeneic Murine Model of Breast Cancer for the Study of Targeted Nanoparticles
Published on: May 14, 2021
Apoferritin-Encapsulated Jerantinine A for Transferrin Receptor Targeting and Enhanced Selectivity in Breast Cancer
Haneen Abuzaid1, Salah Abdelrazig1, Lenny Ferreira1
1School of Pharmacy, Biodiscovery Institute, The University of Nottingham, University Park, Nottingham NG7 2RD, U.K.
A novel apoferritin (AFt) nanoparticle delivers Jerantinine A (JAa) to breast cancer cells, enhancing anti-tumor activity and reducing toxicity. This targeted delivery system shows promise for treating transferrin receptor 1 (TfR1)-expressing tumors.
Area of Science:
- Biochemistry
- Nanotechnology
- Oncology
Background:
- Jerantinine A (JAa), an Aspidosperma alkaloid derivative, exhibits anti-tumor properties by targeting microtubule dynamics.
- Breast cancer cells often overexpress transferrin receptor 1 (TfR1), a potential target for drug delivery.
- Apoferritin (AFt) is a biocompatible protein cage that can be engineered for drug encapsulation and targeted delivery.
Purpose of the Study:
- To develop an AFt-based drug delivery vehicle for JAa to enhance tumor targeting and reduce systemic toxicity.
- To investigate the efficacy of AFt-encapsulated JAa (AFt-JAa) in TfR1-expressing breast cancer cells.
- To evaluate the anti-cancer effects of AFt-JAa compared to naked JAa.
Main Methods:
- JAa was encapsulated into AFt via pH-mediated reassembly, with approximately 120 JAa molecules per AFt particle.
- TfR1 expression was confirmed in cancer cell lines using Western blot and flow cytometry.
- Cellular uptake, intracellular drug levels, cytotoxicity, cell cycle progression, apoptosis, and protein expression were assessed.
Main Results:
- AFt demonstrated enhanced internalization in SKBR3 and MDA-MB-231 breast cancer cells compared to fibroblasts.
- AFt-JAa delivered significantly higher intracellular JAa levels to cancer cells than naked JAa.
- AFt-JAa exhibited enhanced growth inhibition (2.5-14-fold increase in potency), reduced clonal survival, increased G2/M arrest, and augmented apoptosis compared to naked JAa.
Conclusions:
- AFt serves as an effective and biocompatible vehicle for targeted delivery of JAa to TfR1-expressing breast cancer cells.
- AFt-JAa significantly enhances the anti-tumor activity of JAa while potentially minimizing systemic toxicity.
- This targeted nanodelivery system holds promise for improved therapeutic outcomes in TfR1-positive tumors.
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