Department of Anesthesiology, The Second Hospital of Jilin University, Changchun, People's Republic of China.
Department of Intensive Care Unit, The Second Hospital of Jilin University, Changchun, People's Republic of China.
Drug Des Devel Ther. 2023 Aug 30;17:2639-2655. doi: 10.2147/DDDT.S417051. eCollection 2023.
From a clinical perspective, local anesthetics have rather widespread application in regional blockade for surgery, postoperative analgesia, acute/chronic pain control, and even cancer treatments. However, a number of disadvantages are associated with traditional local anesthetic agents as well as routine drug delivery administration ways, such as neurotoxicity, short half-time, and non-sustained release, thereby limiting their application in clinical practice. Successful characterization of drug delivery systems (DDSs) for individual local anesthetic agents can support to achieve more efficient drug release and prolonged duration of action with reduced systemic toxicity. Different types of DDSs involving various carriers have been examined, including micromaterials, nanomaterials, and cyclodextrin. Among them, nanotechnology-based delivery approaches have significantly developed in the last decade due to the low systemic toxicity and the greater efficacy of non-conventional local anesthetics. Multiple nanosized materials, including polymeric, lipid (solid lipid nanoparticles, nanostructured lipid carriers, and nanoemulsions), metallic, inorganic non-metallic, and hybrid nanoparticles, offer a safe, localized, and long-acting solution for pain management and tumor therapy. This review provides a brief synopsis of different nano-based DDSs for local anesthetics with variable sizes and structural morphology, such as nanocapsules and nanospheres. Recent original research utilizing nanotechnology-based delivery systems is particularly discussed, and the progress and strengths of these DDSs are highlighted. A specific focus of this review is the comparison of various nano-based DDSs for local anesthetics, which can offer additional indications for their further improvement. All in all, nano-based DDSs with unique advantages provide a novel direction for the development of safer and more effective local anesthetic formulations.
从临床角度来看,局部麻醉剂在区域阻滞用于手术、术后镇痛、急性/慢性疼痛控制甚至癌症治疗方面有相当广泛的应用。然而,传统的局部麻醉剂以及常规的药物输送管理方式存在许多缺点,如神经毒性、半衰期短和非持续释放,从而限制了它们在临床实践中的应用。成功地对个体局部麻醉剂的药物输送系统(DDS)进行表征,可以支持实现更有效的药物释放和更长的作用持续时间,同时降低系统毒性。涉及各种载体的不同类型的 DDS 已经被研究过,包括微材料、纳米材料和环糊精。其中,由于非传统局部麻醉剂的低系统毒性和更高的疗效,基于纳米技术的输送方法在过去十年中得到了显著发展。多种纳米材料,包括聚合物、脂质(固体脂质纳米粒、纳米结构脂质载体和纳米乳液)、金属、无机非金属和混合纳米粒,为疼痛管理和肿瘤治疗提供了安全、局部和长效的解决方案。本综述简要概述了不同大小和结构形态的局部麻醉剂的基于纳米的 DDS,例如纳米胶囊和纳米球。特别讨论了利用基于纳米技术的输送系统的最新原始研究,并强调了这些 DDS 的进展和优势。本综述的一个具体重点是比较各种基于纳米的 DDS 用于局部麻醉剂,这可以为它们的进一步改进提供更多的适应症。总之,具有独特优势的基于纳米的 DDS 为开发更安全、更有效的局部麻醉剂制剂提供了新的方向。
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