Internal Medicine (II), Faculty of Medicine, Osaka Medical College, Osaka, Japan.
Sci Rep. 2019 Nov 29;9(1):17971. doi: 10.1038/s41598-019-53807-w.
We developed anticancer drug-conjugated biodegradable polymer-nanoparticle-loaded adipose-derived stem cells (AdSCs) as a tool for biodrug delivery systems for cancer therapy. Pirarubicin was conjugated in polylactic/glycolic acid (PLGA) followed by formation of nanoparticles (NPs), which were loaded with human AdSCs and cocultured. The pirarubicin-conjugated PLGA NP-loaded AdSCs (PirNP-AdSCs) were overall viable within 48 h and exhibited significantly enhanced migration activity. We confirmed that pirarubicin was gradually released into the culture medium from PirNP-AdSCs, and the conditioned medium significantly inhibited the proliferation activity and induced the apoptosis of human pancreatic cancer cells (KP1N). PirNP-AdSCs also significantly induced tumor cell apoptosis in an ex vivo culture system with KP1N-derived tumors, and there was increased invasion/migration of PirNP-AdSCs inside the tumor. Finally, we compared the therapeutic efficacy of the PirNP-AdSCs on KP1N-derived tumor growth with that of treatments of AdSCs alone, PirNPs alone or normal saline (control) in immunodeficient mice. Subcutaneous local administration of PirNP-AdSCs significantly inhibited tumor growth, inducing the apoptosis of tumor cells and vasculature compared with the other groups. The present therapeutic strategy might give rise to a novel cancer therapy minimizing the adverse side effects of anticancer drugs in patients who suffer from cancer.
我们开发了载有抗癌药物的可生物降解聚合物纳米颗粒负载脂肪来源干细胞(AdSCs)作为癌症治疗生物药物输送系统的工具。表柔比星与聚乳酸/聚乙醇酸(PLGA)偶联,随后形成纳米颗粒(NPs),负载人 AdSCs 并进行共培养。在 48 小时内,载有表柔比星的 PLGA NP 负载的 AdSCs(PirNP-AdSCs)总体上保持活力,并表现出显著增强的迁移活性。我们证实表柔比星逐渐从 PirNP-AdSCs 释放到培养基中,条件培养基显著抑制人胰腺癌细胞(KP1N)的增殖活性并诱导其凋亡。PirNP-AdSCs 还在 KP1N 衍生肿瘤的离体培养系统中显著诱导肿瘤细胞凋亡,并且 PirNP-AdSCs 在内皮细胞中的侵袭/迁移增加。最后,我们比较了 PirNP-AdSCs 对 KP1N 衍生肿瘤生长的治疗效果与单独使用 AdSCs、单独使用 PirNPs 或生理盐水(对照)的治疗效果在免疫缺陷小鼠中。与其他组相比,皮下局部给予 PirNP-AdSCs 可显著抑制肿瘤生长,诱导肿瘤细胞和血管的凋亡。这种治疗策略可能会为癌症患者提供一种新的癌症治疗方法,最大限度地减少抗癌药物的不良反应。