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Release of Cyclic Phosphatidic Acid from Gelatin-based Hydrogels Inhibit Colon Cancer Cell Growth and Migration

机译:从基于明胶的水凝胶中释放环磷酸的抑制结肠癌细胞的生长和迁移。

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摘要

Microparticle and nanoparticle formulations are widely used to improve the bioavailability of low-solubility drugs and as vehicles for organ- and tissue-specific targeted drug delivery. We investigated the effect of a novel, controlled-release form of a bioactive lipid, cyclic phosphatidic acid (cPA), on human colon cancer cell line functions. We encapsulated cPA in gelatin-based hydrogels and examined its ability to inhibit the viability and migration of HT-29 and DLD-1 cells in vitro and the LPA-induced activity of the transcription factor peroxisome proliferator-activated receptor gamma (PPARγ). The hydrogel delivery system prolonged cPA release into the culture medium. Accordingly, cPA-hydrogel microspheres substantially inhibited LPA-induced PPARγ activity and cell growth and migration compared with that of cells cultured with cPA alone. Thus, hydrogel microspheres are a potential system for stable and efficient delivery of bioactive lipids such as cPA and may offer a new strategy for targeted colon cancer treatment.
机译:微粒和纳米颗粒制剂被广泛用于提高低溶解度药物的生物利用度,并作为器官和组织特异性靶向药物输送的载体。我们调查了一种新型的控释形式的生物活性脂质,环状磷脂酸(cPA)对人类结肠癌细胞系功能的影响。我们将cPA封装在基于明胶的水凝胶中,并检查了其在体外抑制HT-29和DLD-1细胞的活力和迁移的能力以及LPA诱导的转录因子过氧化物酶体增殖物激活受体γ(PPARγ)的活性。水凝胶递送系统延长了cPA释放到培养基中的时间。因此,与仅用cPA培养的细胞相比,cPA水凝胶微球基本上抑制了LPA诱导的PPARγ活性以及细胞生长和迁移。因此,水凝胶微球是稳定有效地传递生物活性脂质(如cPA)的潜在系统,并可能为靶向结肠癌治疗提供新的策略。

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