Chemical Architecture of Block Copolymers Differentially Abrogate Cardiotoxicity and Maintain the Anticancer Efficacy of Doxorubicin

被引:21
作者
Abdullah, Chowdhury S. [1 ]
Ray, Priyanka [2 ]
Alam, Shafiul [1 ]
Kale, Narendra [2 ]
Aishwarya, Richa [3 ]
Morshed, Mahboob [1 ]
Dutta, Debasmita [2 ]
Hudziak, Cathleen [4 ]
Banerjee, Sushanta K. [1 ,5 ,6 ]
Mallik, Sanku [7 ]
Banerjee, Snigdha [5 ,6 ]
Bhuiyan, Md Shenuarin [1 ,3 ]
Quadir, Mohiuddin [2 ]
机构
[1] Louisiana State Univ, Hlth Sci Ctr Shreveport, Dept Pathol & Translat Pathobiol, Shreveport, LA 71103 USA
[2] North Dakota State Univ, Dept Coatings & Polymer Mat, Fargo, ND 58108 USA
[3] Louisiana State Univ, Hlth Sci Ctr Shreveport, Dept Mol & Cellular Physiol, Shreveport, LA 71103 USA
[4] Free Univ Berlin, Inst Chem & Biochem, D-14195 Berlin, Germany
[5] VA Med Ctr, Canc Res Unit, Kansas City, MO 64128 USA
[6] Univ Kansas, Med Ctr, Dept Pathol & Lab Med, Kansas City, KS 66160 USA
[7] North Dakota State Univ, Dept Pharmaceut Sci, Fargo, ND 58108 USA
基金
美国国家卫生研究院;
关键词
doxorubicin; nanocarriers; pH-responsive; cancer; cardiac effects; drug delivery; cardiotoxicity; PH; PATHWAYS; DELIVERY; CELLS;
D O I
10.1021/acs.molpharmaceut.0c00963
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The molecular architecture of pH-responsive amphiphilic block copolymers, their self-assembly behavior to form nanoparticles (NPs), and doxorubicin (DOX)-loading technique govern the extent of DOX-induced cardiotoxicity. We observed that the choice of pH-sensitive tertiary amines, surface charge, and DOXloading techniques within the self-assembled NPs strongly influence the release and stimulation of DOX-induced cardiotoxicity in primary cardiomyocytes. However, covalent conjugation of DOX to a pH-sensitive nanocarrier through a "conditionally unstable amide" linkage (PCPY-cDOX; PC = polycarbonate and PY = 2-pyrrolidine-1-yl-ethyl-amine) significantly reduced the cardiotoxicity of DOX in cardiomyocytes as compared to noncovalently encapsulated DOX NPs (PCPY-eDOX). When these formulations were tested for drug release in serum-containing media, the PCPY- cDOX systems showed prolonged control over drug release (for similar to 72 h) at acidic pH compared to DOX-encapsulated nanocarriers, as expected. We found that DOX-encapsulated nanoformulations triggered cardiotoxicity in primary cardiomyocytes more acutely, while conjugated systems such as PCPY-cDOX prevented cardiotoxicity by disabling the nuclear entry of the drug. Using 2D and 3D (spheroid) cultures of an ER + breast cancer cell line (MCF-7) and a triple-negative breast cancer cell line (MDA-MB-231), we unravel that, similar to encapsulated systems (PCPY-eDOX-type) as reported earlier, the PCPY-cDOX system suppresses cellular proliferation in both cell lines and enhances trafficking through 3D spheroids of MDA-MB-231 cells. Collectively, our studies indicate that PCPY-cDOX is less cardiotoxic as compared to noncovalently encapsulated variants without compromising the chemotherapeutic properties of the drug. Thus, our studies suggest that the appropriate selection of the nanocarrier for DOX delivery may prove fruitful in shifting the balance between low cardiotoxicity and triggering the chemotherapeutic potency of DOX.
引用
收藏
页码:4676 / 4690
页数:15
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