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通过低温微成型和相分离制造的自修复多孔微针织物,用于高效负载和持续输送多种治疗药物。

Self-Healing Porous Microneedles Fabricated Via Cryogenic Micromoulding and Phase Separation for Efficient Loading and Sustained Delivery of Diverse Therapeutics.

机构信息

Hangzhou Institute of Medicine, Chinese Academy of Sciences, Hangzhou, Zhejiang, 310022, China.

College of Pharmaceutical Sciences, Zhejiang University of Technology, Hangzhou, Zhejiang, 310014, China.

出版信息

Small. 2024 Apr;20(16):e2307523. doi: 10.1002/smll.202307523. Epub 2023 Nov 28.

Abstract

Sustained-release drug delivery formulations are preferable for treating various diseases as they enhance and prolong efficacy, minimize adverse effects, and avoid frequent dosing. However, these formulations are associated with poor patient compliance, require trained personnel for administration, and involve harsh manufacturing conditions that compromise drug stability. Here, a self-healing biodegradable porous microneedle (PMN) patch is reported for sustained drug delivery. The PMN patch is fabricated by a cryogenic micromoulding followed by phase separation, leading to formation of interconnected pores on the surface and internals of MNs. The pores with self-healing feature enable the PMNs to load hydrophilic drugs with different molecular weights in a mild and efficient manner. The healed PMNs can easily penetrate into the skin under press and detach from the supporting substrate under shear, thereby acting as implantable drug reservoirs for achieving sustained release of drugs for at least 40 days. One-time administration of desired therapeutics using the sustained-release healed PMNs resulted in stronger and longer-lasting efficacy in mitigating psoriasis and eliciting immunity compared to conventional methods with multiple administrations. The self-healing PMN patch for self-administrated and long-acting drug delivery can eventually improve medication adherence in prophylactic and therapeutic protocols that typically require frequent dosages.

摘要

缓释药物递送制剂在治疗各种疾病方面具有优势,因为它们可以提高和延长疗效,最大限度地减少不良反应,并避免频繁给药。然而,这些制剂与较差的患者依从性有关,需要经过培训的人员进行给药,并且涉及苛刻的制造条件,这会影响药物稳定性。在这里,报道了一种自修复可生物降解多孔微针(PMN)贴片,用于持续药物递送。PMN 贴片是通过低温微成型和相分离制造的,导致 MN 的表面和内部形成互连的孔。具有自修复功能的孔使 PMN 能够以温和有效的方式装载具有不同分子量的亲水性药物。修复后的 PMN 在压力下很容易穿透皮肤,并在剪切下从支撑基底上脱离,从而充当可植入的药物储库,以实现至少 40 天的药物持续释放。与多次给药的传统方法相比,使用持续释放的修复 PMN 进行一次给药,在减轻银屑病和引发免疫方面产生了更强、更持久的疗效。用于自我给药和长效药物递送的自修复 PMN 贴片最终可以提高通常需要频繁剂量的预防性和治疗性方案的用药依从性。

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