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Published on: February 28, 2015
Salinomycin-loaded lipid-polymer nanoparticles with anti-CD20 aptamers selectively suppress human CD20+ melanoma stem
Yi-Bin Zeng1, Zuo-Chong Yu2, Yan-Ni He1
1Department of Dermatology, Minhang Branch, Zhongshan Hospital, Fudan University/Institute of Fudan-Minhang Academic Health System, Minhang Hospital, Fudan University, Shanghai 201199, China.
Abstract:
Melanoma is the deadliest type of skin cancer. CD20+ melanoma stem cells (CSCs) are pivotal for metastasis and initiation of melanoma. Therefore, selective elimination of CD20+ melanoma CSCs represents an effective treatment to eradicate melanoma. Salinomycin has emerged as an effective drug toward various CSCs. Due to its poor solubility, its therapeutic efficacy against melanoma CSCs has never been evaluated. In order to target CD20+ melanoma CSCs, we designed salinomycin-loaded lipid-polymer nanoparticles with anti-CD20 aptamers (CD20-SA-NPs). Using a single-step nanoprecipitation method, salinomycin-loaded lipid-polymer nanoparticles (SA-NPs) were prepared, then CD20-SA-NPs were obtained through conjugation of thiolated anti-CD20 aptamers to SA-NPs via a maleimide-thiol reaction. CD20-SA-NPs displayed a small size of 96.3 nm, encapsulation efficiency higher than 60% and sustained drug release ability. The uptake of CD20-SA-NPs by CD20+ melanoma CSCs was significantly higher than that of SA-NPs and salinomycin, leading to greatly enhanced cytotoxic effects in vitro, thus the IC50 values of CD20-SA-NPs were reduced to 5.7 and 2.6 μg/mL in A375 CD+20 cells and WM266-4 CD+ cells, respectively. CD20-SA-NPs showed a selective cytotoxicity toward CD20+ melanoma CSCs, as evidenced by the best therapeutic efficacy in suppressing the formation of tumor spheres and the proportion of CD20+ cells in melanoma cell lines. In mice bearing melanoma xenografts, administration of CD20-SA-NPs (salinomycin 5 mg·kg-1·d-1, iv, for 60 d) showed a superior efficacy in inhibition of melanoma growth compared with SA-NPs and salinomycin. In conclusion, CD20 is a superior target for delivering drugs to melanoma CSCs. CD20-SA-NPs display effective delivery of salinomycin to CD20+ melanoma CSCs and represent a promising treatment for melanoma.
Insights
Targeting CD20+ melanoma stem cells (CSCs) with salinomycin-loaded nanoparticles (CD20-SA-NPs) offers a promising new treatment for melanoma. These nanoparticles effectively deliver the drug to cancer cells, significantly inhibiting tumor growth.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Melanoma is a deadly skin cancer driven by CD20+ melanoma stem cells (CSCs).
- Selective elimination of CD20+ CSCs is crucial for effective melanoma treatment.
- Salinomycin shows potential against CSCs but its efficacy in melanoma is limited by poor solubility.
Purpose of the Study:
- To develop and evaluate salinomycin-loaded lipid-polymer nanoparticles functionalized with anti-CD20 aptamers (CD20-SA-NPs) for targeted delivery to CD20+ melanoma CSCs.
- To assess the in vitro and in vivo therapeutic efficacy of CD20-SA-NPs against melanoma.
Main Methods:
- Lipid-polymer nanoparticles (SA-NPs) were prepared using nanoprecipitation and loaded with salinomycin.
- Thiolated anti-CD20 aptamers were conjugated to SA-NPs via maleimide-thiol reaction to form CD20-SA-NPs.
- Nanoparticle characterization included size, encapsulation efficiency, and drug release.
- In vitro cytotoxicity assays were performed on CD20+ melanoma cell lines.
- In vivo efficacy was evaluated in mice bearing melanoma xenografts.
Main Results:
- CD20-SA-NPs exhibited a small size (96.3 nm), high encapsulation efficiency (>60%), and sustained drug release.
- Enhanced uptake of CD20-SA-NPs by CD20+ melanoma CSCs compared to SA-NPs and free salinomycin.
- Significantly reduced IC50 values (5.7 and 2.6 μg/mL) in A375 and WM266-4 CD20+ cells, respectively.
- Demonstrated selective cytotoxicity towards CD20+ melanoma CSCs, inhibiting tumor sphere formation.
- Superior inhibition of melanoma xenograft growth in mice compared to SA-NPs and salinomycin.
Conclusions:
- CD20 is an effective target for drug delivery to melanoma CSCs.
- CD20-SA-NPs facilitate targeted delivery of salinomycin to CD20+ melanoma CSCs.
- CD20-SA-NPs represent a promising therapeutic strategy for melanoma treatment.
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