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首页> 外文期刊>Theranostics >Dissolving Microneedles with Spatiotemporally controlled pulsatile release Nanosystem for Synergistic Chemo-photothermal Therapy of Melanoma
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Dissolving Microneedles with Spatiotemporally controlled pulsatile release Nanosystem for Synergistic Chemo-photothermal Therapy of Melanoma

机译:用空间控制的脉动释放纳米系统溶解微针,用于同性恋瘤的协同化疗光热疗法

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摘要

High aggressiveness and recurrence of melanoma tumors require multiple systemic drug administrations, causing discomfort and severe side effects to the patients. Topical treatment strategies that provide repetitively controllable and precise drug administrations will greatly improve treatment effects. Methods: In this study, a spatiotemporally controlled pulsatile release system, which combined dissolving microneedles (DMNs) and thermal-sensitive solid lipid nanoparticles (SLNs), was constructed to realize multiple doses of dual-modal chemo-photothermal therapy in a single administration. Paclitaxel (PTX) and photothermal agent IR-780 were encapsulated into SLNs and were concentrated in the tips of DMNs (PTX/IR-780 SLNs @DMNs). Equipped with several needles, the DMN patch could be directly inserted into the tumor site and provide a stable "Zone accumulation" to constrain the PTX/IR-780 SLNs at the tumor site with uniform distribution. Results: In vitro experiments showed that after irradiation with near-infrared light, the PTX/IR-780 SLNs gradually underwent phase transition, thereby accelerating the release of PTX. When irradiation was switched off, the PTX/IR-780 SLNs cooled to re-solidify with limited drug release. Compared with intravenous and intratumoral injections, very few SLNs from PTX/IR-780 SLNs @DMNs were distributed into other organs, resulting in enhanced bioavailability at the tumor site and good safety. In vivo analysis revealed that PTX/IR-780 SLNs @DMNs exhibited significant anti-tumor efficacy. In particular, the primary tumor was completely eradicated with a curable rate of 100% in 30 days and the highest survival rate of 66.67% after 100 days of treatment. Conclusion: Herein, we developed a DMN system with a unique spatiotemporally controlled pulsatile release feature that provides a user-friendly and low-toxicity treatment route for patients who need long-term and repeat treatments.? The author(s).
机译:黑色素瘤肿瘤的高攻击性和复发需要多种全身毒药毒物,对患者引起不适和严重的副作用。提供重复可控和精确的药物管理部门提供的局部处理策略将大大提高治疗效果。方法:在本研究中,构建了一种溶解微针(DMN)和热敏固体脂质纳米颗粒(SLNS)的时空控制的脉冲释放系统,以实现单一给药中的多剂量双型化学光热疗法。紫杉醇(PTX)和光热试剂IR-780被包封成SLN,并浓缩在DMNS的尖端(PTX / IR-780 SLNS @DMNS)。配备了几种针,DMN贴片可以直接插入肿​​瘤部位并提供稳定的“区域积聚”,以在肿瘤部位限制具有均匀分布的PTX / IR-780 SLN。结果:体外实验表明,在近红外光照射后,PTX / IR-780 SLN逐渐接受相变,从而加速PTX的释放。关闭辐照时,PTX / IR-780 SLNS冷却以通过有限的药物释放重新固化。与静脉内注射和肿瘤内注射相比,从PTX / IR-780 SLNS @DMNS的少量SLN分布到其他器官中,导致肿瘤部位的生物利用度提高,安全性良好。体内分析显示,PTX / IR-780 SLNS @DMNS表现出显着的抗肿瘤效果。特别地,原发性肿瘤完全消除,在30天内可固化率为100%,100天治疗后的最高存活率为66.67%。结论:在此,我们开发了一种具有独特的时空控制的脉冲释放特征的DMN系统,为需要长期和重复治疗的患者提供用户友好和低毒性的治疗途径。作者。

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