College of Pharmacy, Dankook University, 119 Dandae-ro, Dongnam-gu, Cheonan, Chungnam 330-714, Republic of Korea.
College of Pharmacy, Dankook University, 119 Dandae-ro, Dongnam-gu, Cheonan, Chungnam 330-714, Republic of Korea.
Carbohydr Polym. 2024 Aug 15;338:122197. doi: 10.1016/j.carbpol.2024.122197. Epub 2024 Apr 26.
Transdermal rotigotine (RTG) therapy is prescribed to manage Parkinson's disease (Neupro® patch). However, its use is suffered from application site reactions. Herein, drug nanocrystalline suspension (NS)-loaded hydrogel (NS-HG) employing polysaccharides simultaneously as suspending agent and hydrogel matrix was constructed for transdermal delivery, with alleviated skin irritation. RTG-loaded NS-HG was prepared using a bead-milling technique, employing sodium carboxylmethyl cellulose (Na.CMC) as nano-suspending agent (molecular weight 90,000 g/mol) and hydrogel matrix (700,000 g/mol), respectively. NS-HG was embodied as follows: drug loading: ≤100 mg/mL; shape: rectangular crystalline; crystal size: <286.7 nm; zeta potential: -61 mV; viscosity: <2.16 Pa·s; and dissolution rate: >90 % within 15 min. Nuclear magnetic resonance analysis revealed that the anionic polymers bind to RTG nanocrystals via charge interaction, affording uniform dispersion in the matrix. Rodent transdermal absorption of RTG from NS-HG was comparable to that from microemulsions, and proportional to drug loading. Moreover, NS-HG was skin-friendly; erythema and epidermal swelling were absent after repeated application. Further, NS-HG was chemically stable; >95 % of the drug was preserved up to 4 weeks under long term (25 °C/RH60%), accelerated (40 °C/RH75%), and stress (50 °C) storage conditions. Therefore, this novel cellulose derivative-based nanoformulation presents a promising approach for effective transdermal RTG delivery with improved tolerability.
透皮罗替高汀(RTG)治疗用于治疗帕金森病(Neupro®贴片)。然而,其应用受到应用部位反应的影响。在此,构建了同时用作悬浮剂和水凝胶基质的药物纳米晶混悬剂(NS)载水凝胶(NS-HG),以减轻皮肤刺激。使用珠磨技术制备载有 RTG 的 NS-HG,分别使用羧甲基纤维素钠(Na.CMC)作为纳米混悬剂(分子量 90,000 g/mol)和水凝胶基质(分子量 700,000 g/mol)。NS-HG 具有以下特点:药物载量:≤100 mg/mL;形状:矩形结晶;晶体尺寸:<286.7 nm;Zeta 电位:-61 mV;粘度:<2.16 Pa·s;溶解率:在 15 分钟内>90%。核磁共振分析表明,阴离子聚合物通过电荷相互作用与 RTG 纳米晶体结合,在基质中提供均匀的分散。从 NS-HG 向啮齿动物皮肤的 RTG 透皮吸收与微乳液相当,且与药物载量成正比。此外,NS-HG 对皮肤友好;重复应用后无红斑和表皮肿胀。此外,NS-HG 化学稳定;在长期(25°C/RH60%)、加速(40°C/RH75%)和应激(50°C)储存条件下,4 周内药物保留率>95%。因此,这种新型纤维素衍生物纳米制剂为有效透皮 RTG 传递提供了一种有前途的方法,具有改善的耐受性。