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中强度超声触发按需镇痛纳米平台用于术后疼痛管理。

Moderate-Intensity Ultrasound-Triggered On-Demand Analgesia Nanoplatforms for Postoperative Pain Management.

机构信息

Department of Anesthesiology, the First Affiliated Hospital of Dalian Medical University, Dalian, 116011, People's Republic of China.

Department of Biomedical Engineering, Tsinghua University, Beijing, 100084, People's Republic of China.

出版信息

Int J Nanomedicine. 2022 Jul 23;17:3177-3189. doi: 10.2147/IJN.S367190. eCollection 2022.

Abstract

INTRODUCTION

The restricted duration is a fundamental drawback of traditional local anesthetics during postoperative pain from a single injection. Therefore, an injectable local anesthetic that produces repeatable on-demand nerve blocks would be ideal.

METHODS

We offer ultrasound-triggered on-demand analgesia consisting of dendritic mesoporous silica nanoparticles (DMSN) carried with ultrasound-sensitive perfluoropentane (PFP) and levobupivacaine (DMSN-bupi-PFP) to achieve repeatable and customizable on-demand local anesthetics.

RESULTS

The vaporization of liquid PFP was triggered by ultrasound irradiation to produce a gas environment. Subsequently, the enhanced cavitation effect could improve the release of levobupivacaine to achieve pain relief under a moderate-intensity ultrasound irradiation. DMSN-bupi-PFP demonstrated a controlled-release pattern and showed a reinforced ultrasonic sensitivity compared to levobupivacaine loaded DMSN (DMSN-bupi). The sustained release of levobupivacaine produced continuous analgesia of more than 9 hours in a model of incision pain, approximately 3 times longer than a single free levobupivacaine injection (3 hours). The external ultrasound irradiation can trigger the release of levobupivacaine repeatedly, resulting in on-demand analgesia. In addition, DMSN-bupi-PFP nanoplatforms for ultrasound-enabled analgesia showed low neurotoxicity and good biocompatibility in vitro and in vivo.

CONCLUSION

This DMSN-bupi-PFP nanoplatform can be used in pain management by providing long-lasting and on-demand pain alleviation with the help of moderate-intensity ultrasound.

摘要

简介

传统局部麻醉剂在单次注射后的术后疼痛中,其作用时间受限是一个根本性的缺点。因此,一种可重复按需产生神经阻滞的可注射局部麻醉剂将是理想的。

方法

我们提供了一种超声触发按需镇痛的方法,该方法由负载超声敏感全氟戊烷(PFP)和左旋布比卡因的树枝状介孔硅纳米粒子(DMSN)组成,以实现可重复和可定制的按需局部麻醉。

结果

液体 PFP 的蒸发是由超声辐射触发的,以产生气体环境。随后,增强的空化效应可以提高左旋布比卡因的释放,从而在适度强度的超声辐射下实现镇痛。与负载左旋布比卡因的 DMSN(DMSN-bupi)相比,DMSN-bupi-PFP 表现出可控的释放模式和增强的超声敏感性。左旋布比卡因的持续释放在切口疼痛模型中产生了超过 9 小时的持续镇痛,大约是单次自由左旋布比卡因注射(3 小时)的 3 倍。外部超声辐射可以重复触发左旋布比卡因的释放,从而实现按需镇痛。此外,DMSN-bupi-PFP 纳米平台在体外和体内均表现出低神经毒性和良好的生物相容性。

结论

这种 DMSN-bupi-PFP 纳米平台可用于疼痛管理,通过在适度强度超声的帮助下提供持久和按需的疼痛缓解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba70/9329681/defe358347e6/IJN-17-3177-g0001.jpg

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