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Biodegradable Therapeutic Microneedle Patch for Rapid Antihypertensive Treatment

硝普钠 透皮 医学 硫代硫酸钠 药理学 副作用(计算机科学) 血压 解毒剂 高血压急症 内科学 一氧化氮 毒性 化学 计算机科学 无机化学 程序设计语言
作者
Yan Li,Fanmao Liu,Shee‐Uan Chen,Bingbo Yu,Di Liu,Hui‐Jiuan Chen,Di-an Lin,Chengduan Yang,Lingfei Zhou,Qianni Wu,Wenhao Xia,Xi Xie,Jun Tao
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:11 (34): 30575-30584 被引量:47
标识
DOI:10.1021/acsami.9b09697
摘要

A hypertensive emergency causes severe cardiovascular diseases accompanied by acute target organ damage, requiring rapid and smooth blood pressure (BP) reduction. Current medicines for treating hypertensive emergencies, such as sodium nitroprusside (SNP), require careful dose control to avoid side effects (e.g., cyanide poisoning). The clinical administration of SNP using intravenous injection or drip further restrict its usage for first aid or self-aid in emergencies. Here, we developed an antihypertensive microneedle (aH-MN) technique to transdermally deliver SNP in combination with sodium thiosulfate (ST) as a cyanide antidote in a painless way. Dissolvable microneedles loaded with SNP and ST were fabricated via the centrifugation casting method, where the SNPs were stably packaged in microneedles and would be immediately released into the systemic circulation via subcutaneous capillaries when aH-MNs penetrated the skin. The antihypertensive effects were demonstrated on spontaneously hypertensive rat models. Rapid and potent BP reduction was achieved via aH-MN treatment, fulfilling clinical BP-control requirements for hypertensive emergencies. The side effects including skin irritation and target organ damage of aH-MN therapies were evaluated; the combinative delivery of ST effectively suppressed these side effects induced by the consecutive intake of SNP. This study introduces an efficient and patient-friendly antihypertensive therapy with a favorable side-effect profile, particularly a controllable and self-administrable approach to treat hypertensive emergencies.
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