Ramadon Delly, Sutrisna Lissa Florencia Putri, Harahap Yahdiana, Putri Kurnia Sari Setio, Ulayya Fathin, Hartrianti Pietradewi, Anjani Qonita Kurnia, Donnelly Ryan F
Faculty of Pharmacy, Universitas Indonesia, Depok 16424, Indonesia.
School of Life Sciences, Indonesia International Institute for Life Sciences, Jakarta 13210, Indonesia.
Pharmaceutics. 2023 Jan 14;15(1):289. doi: 10.3390/pharmaceutics15010289.
Lidocaine hydrochloride (LiH), an amide-type local anesthetic agent, is commonly used in dermatological procedures. LiH is categorized as a BCS (biopharmaceutics classification system) class III group, which has high solubility and poor permeability. It should be noted that, in this context, LiH is intended as a local anesthetic, so the level of LiH in systemic circulation should be minimized to avoid toxicity and unwanted side effects such as hypotension and bradycardia. This study aimed to formulate and evaluate LiH-loaded dissolving microneedles (DMNs) with different polymer bases. Moreover, an in vitro permeation study using Franz diffusion cells and in vivo study were also performed. LiH-loaded DMNs were prepared using polymer groups of poly(vinyl pyrrolidone) (PVP-K30) and hyaluronic acid (HA). DMNs were created using the micro-molding method with centrifugation. The formulations selected based on the evaluation were F3 (HA 10%) and F5 (PVP-K30 25%). Based on the in vitro permeation study, the amount of drug permeated and deposited in the skin at F3 (HA 10%) was 247.1 ± 41.85 and 98.35 ± 12.86 μg, respectively. On the other hand, the amount of drug permeated and deposited in the skin at F5 (PVP-K30 25%) was 277.7 ± 55.88 and 59.46 ± 9.25 μg, respectively. Our in vivo drug-permeation study showed that only one rat from the PVP-K30 polymer group-with a concentration of 150.32 ng/mL-was detected on rat plasma. Therefore, LiH can be formulated into a DMN and can be deposited in the skin with a safe concentration of the drug permeating into systemic circulation.
盐酸利多卡因(LiH)是一种酰胺类局部麻醉剂,常用于皮肤科手术。LiH被归类为BCS(生物药剂学分类系统)III类药物,具有高溶解性和低渗透性。需要注意的是,在此背景下,LiH作为局部麻醉剂使用,因此应尽量降低其在体循环中的水平,以避免毒性和不必要的副作用,如低血压和心动过缓。本研究旨在制备并评估不同聚合物基质的载LiH溶解微针(DMN)。此外,还进行了使用Franz扩散池的体外渗透研究和体内研究。载LiH的DMN使用聚乙烯吡咯烷酮(PVP-K30)和透明质酸(HA)的聚合物基团制备。DMN通过微成型离心法制备。基于评估选择的制剂为F3(HA 10%)和F5(PVP-K30 25%)。基于体外渗透研究,F3(HA 10%)时渗透并沉积在皮肤中的药物量分别为247.1±41.85和98.35±12.86μg。另一方面,F5(PVP-K30 25%)时渗透并沉积在皮肤中的药物量分别为277.7±55.88和59.46±9.25μg。我们的体内药物渗透研究表明,在大鼠血浆中仅检测到来自PVP-K30聚合物组的一只大鼠,浓度为150.32 ng/mL。因此,LiH可以制成DMN,并以安全浓度渗透到体循环中沉积在皮肤中。