阿霉素
脂质体
乳腺癌
癌症研究
化学
药理学
癌细胞
癌症
细胞毒性
癌症治疗
选择性
医学
化疗
癌症治疗
常用化疗药物
药品
药物输送
治疗指标
靶向给药
细胞
生物活性
作者
Hany Elrahman,Medhat W. Shafaa,Michael Masoomi,M G.Ibrahim,Mahmoud A. Elbaset,Ayman M. Ibrahim
标识
DOI:10.1080/08982104.2026.2671264
摘要
Breast cancer remains a major health challenge, highlighting the need for more effective and safer therapies. Although doxorubicin is widely used, its clinical utility is limited by oxidative stress–induced toxicity. This study investigated β-carotene and doxorubicin co-delivery in free and liposomal forms using multiple soy lecithin-based formulations. Physicochemical characterization was performed using FTIR spectroscopy, TEM, DLS, zeta potential analysis, and DSC. Biological evaluation was conducted in MCF-7 cells using cytotoxicity assay, apoptosis assay, cell cycle analysis, and comet assay.while cytotoxic selectivity was further assessed by IC50 determination in non-tumorigenic MCF-10A breast epithelial cells. The prepared liposomes showed a uniform spherical morphology, narrow size distribution, and favorable physicochemical stability. Free doxorubicin demonstrated potent anticancer activity against MCF-7 cells (IC50 = 2.46 µg/mL), but was associated with significant apoptosis and DNA damage. liposomal doxorubicin showed moderated cytotoxicity (IC50 = 4.73 µg/mL), consistent with a controlled release profile. Notably, the co-delivery of β-carotene and doxorubicin in liposomes reduced cytotoxic potency (IC50 = 9.98 µg/mL), associated with inducing G2/M cell cycle arrest and apoptosis while reducing genotoxic effects. Liposomal β-carotene and empty liposomes exhibited minimal cytotoxicity. In MCF-10A cells, all liposomal formulations and β-carotene showed negligible toxicity (IC50 > 100 µg/mL), whereas free doxorubicin was highly toxic (IC50 ≈ 5 µg/mL). This toxicity was partially reduced when combined with β-carotene (IC50 ≈ 20 µg/mL). Overall, these findings suggest that liposomal co-delivery of β-carotene and doxorubicin may enhance therapeutic efficacy while potentially reducing off-target toxicity.
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