通过使用SmartReservoirs和形成水凝的微针,通过通过皮肤的途径控制释放阿米林
Abraham M Abraham1, Amitha Simon1, Qonita Kurnia Anjani1
1School of Pharmacy, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast BT9 7BL, UK.
Biomaterials advances
|May 30, 2025
概括
智能储水池 (SRs) 提供了一种通过微针传递水友性药物的新方法. 与基于组织纸的SR相比,基于复印机纸的SR显示出更高的药物负载和增强的阿米氨酸化物通过皮肤输送.
科学领域:
- 药物交付和制药技术 药物交付和制药技术
- 材料科学在医学中的科学.
- 生物材料工程 生物材料工程
背景情况:
- 智能储水池 (SRs) 是用于凝形成微针 (HF-MN) 的纤维素基矩阵.
- SRs可以提高难溶性药物的溶性,并修改水友性药物的特性,以控制释放.
- 通过透皮输送使用SRs用于水友药物,特别是阿米二化物 (AMT),此前还没有研究过.
研究的目的:
- 探索用智能储水器 (SRs) 集成与凝形成微针 (HF-MNs) 的水友性阿米氨酸化物 (AMT) 通过皮肤传递.
- 研究不同纤维素基矩阵 (纸张与复印机纸) 对药物加载和释放概况的影响.
- 以其物理化学性质和透皮透效率来表征制造的HF-MN和SR.
主要方法:
- 使用组织纸 (SR-T) 和复印机纸 (SR-P) 制造HF-MN和两种类型的AMT装载SR.
- 综合性表征包括形态,机械和物理化学特性,药物-纤维素相互作用,药物分发,载荷能力和透皮透.
- 进行了体外皮肤沉积和透研究,以评估药物递送效率.
主要成果:
- 活性药物成分 (API) 在SR-T和SR-P矩阵中保持完整.
- 基于复印机纸的SRs (SR-P) 呈现出明显更高的药物负载 (约. 8 mg/cm2) 和增强释放与基于组织纸的SR相比 (SR-T,大约. 4 毫克/厘米2).
- 与HF-MNs一起的SR-P实现了更高的皮肤沉积 (约. 128μg) 和透 (>500μg,~9%的输出) 与SR-T与HF-MNs (约. 75微克沉积,<150微克透,~5%的输出).
结论:
- 智能储是有效的药物储,用于水友性药物,当纳入HF-MN时.
- 选择纤维素基质显著影响药物负载和通过皮肤递送效率.
- 基于复印机纸张的SR显示出增强皮传递像阿米胺化等水友性药物的承诺.
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