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Multicompartment Hydrogels for the Local Delivery of Chemotherapic Drugs

机译:用于局部化疗药物的多组分水凝胶

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Over 85% of human cancers are solid tumors. The effectiveness of anticancer therapy in solid tumors depends on adequate delivery of the therapeutic agent to tumor cells. Inadequate delivery would result in residual tumor cells, which in turn would lead to regrowth of tumors and possibly development of resistant cells. The most prominent option, for now, is the local delivery of chemotherapic drugs into the cavity resection of the tumor. However, the burst release of massive concentrations of the drugs usually boosts the side effects of chemotherapy. Aiming to block the burst release a new drug delivery system (DDS) for the local delivery of Doxorubicin (DOX) was designed and tested, combining different materials and techniques. Following a bottom-up approach, porous spherical calcium carbonate (CaCO_3) microspheres, with high loading properties, were loaded with DOX and Layer by Layer (LbL) assembled by biocompatible and biodegradable polyelectrolytes, dextran sodium sulfate (DSS) and polyarginine (PARG). Then, a protocol for the fabrication of alginate (Alg) hydrogels associated with LbL coated drug loaded CaCO_3 microspheres were developed by combining internal and external gelation. Therefore, injectable multicompartment hydrogels (MCH) for the local and sustained delivery of chemotherapeutic drugs, with the ability to block the burst release, were developed and characterized.
机译:超过85%的人类癌症是实体瘤。抗癌治疗在实体瘤中的有效性取决于治疗剂对肿瘤细胞的足够递送。递送不足会导致残留的肿瘤细胞,这反过来会导致肿瘤的再生长和可能的抗性细胞的发展。目前,最突出的选择是将化疗药物的局部递送到肿瘤切除腔中。然而,大规模浓度的药物的爆发释放通常会增加化疗的副作用。为了阻断爆发释放爆发的新药物输送系统(DDS)用于局部递送多柔比星(DOX),并结合不同的材料和技术。在自下而上的方法之后,具有高负载性质的多孔球形碳酸钙(Caco_3)微球用通过生物相容性和可生物降解的聚电解质,葡聚糖硫酸钠(DSS)和Polyarninine(Parg)组装的DOX和层(LBL)。 。然后,通过组合内部和外部凝胶化制造与LBL涂覆的药物负载的CACO_3微球的藻酸盐(ALG)水凝胶制备的方案。因此,开发并表征了用于局部化疗药物的局部和持续递送的可注射的多组分水凝胶(MCH),具有阻断突发释放的能力。

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