daohang fenxiangbox searchbox qikanlogonew daohangnew searchboxnew navrightzone footerzone paper

Gastric acid powered micromotors for combined-drug delivery to eradiate helicobacter pylori AITranslate

Nanjing Tech University; Nanjing Tech University; Nanjing Tech University; Nanjing Tech University; Zhejiang University; Zhejiang University; Nanjing Tech University
AITranslate
Publisher: Elsevier
Share Citation Information Add to Favorites

    Scan to share on WeChat or Moments

Use WeChat scan.
Share with WeChat friends or Moments

Abstract AITranslate

Helicobacter pylori (H. pylori) infection causes gastric infections and leads to a range of gastric disorders, even becomes a predisposing factor of stomach cancer. Thus, the search for new therapeutic approaches to improve drug resistance and bioavailability of antibiotics has been considered urgent to treat H. pylori. Here we present the first design of an active drug combination therapy and responsive drug release to treat H. pylori based on self-propelled micromotors. This micromotor is consisting of a magnesium/gold (Mg/Au) Janus structure that loaded with amoxicillin and clarithromycin by asymmetrically coating in a pH-sensitive Eudragit ® L100–55 polymer. The autonomous propulsion of the drug-loaded Mg-micromotors in gastric acid enables them to penetrate the mucus layer, actively deliver amoxicillin and clarithromycin simultaneously then release these drugs in a pH-responsive manner. Notably, the drug loading efficacy and release ratio of therapeutic agents is designed to satisfy the clinical demands. Due to the powerful mucosal penetration, the propelled micromotors exhibits enhanced retention and distribution capability than passive delivery system. Especially, the antimicrobial efficiency of the micromotors with combination drug therapy against H. pylori is significantly improved compared to single-drug loaded micromotors. The optimized dosage ratio of two therapeutic agents on the micromotors is determined to be 2:1 of amoxicillin and clarithromycin. With the merits of self-propulsion, good biocompatibility and biodegradability, our proposed combined-drug delivery Mg-based micromotor will offer a promising future for the active treatment of bacterial infections. Graphical abstract Download : Download high-res image (418KB) Download : Download full-size image

KeyWords AITranslate

No data

Basic Information:

DOI:https://doi.org/10.1016/j.apmt.2023.101779

Chinese Library Classification Number:

Citation Information:

Helicobacter pylori (H. pylori) infection causes gastric infections and leads to a range of gastric disorders, even becomes a predisposing factor of stomach cancer. Thus, the search for new therapeutic approaches to improve drug resistance and bioavailability of antibiotics has been considered urgent to treat H. pylori. Here we present the first design of an active drug combination therapy and responsive drug release to treat H. pylori based on self-propelled micromotors. This micromotor is consisting of a magnesium/gold (Mg/Au) Janus structure that loaded with amoxicillin and clarithromycin by asymmetrically coating in a pH-sensitive Eudragit ® L100–55 polymer. The autonomous propulsion of the drug-loaded Mg-micromotors in gastric acid enables them to penetrate the mucus layer, actively deliver amoxicillin and clarithromycin simultaneously then release these drugs in a pH-responsive manner. Notably, the drug loading efficacy and release ratio of therapeutic agents is designed to satisfy the clinical demands. Due to the powerful mucosal penetration, the propelled micromotors exhibits enhanced retention and distribution capability than passive delivery system. Especially, the antimicrobial efficiency of the micromotors with combination drug therapy against H. pylori is significantly improved compared to single-drug loaded micromotors. The optimized dosage ratio of two therapeutic agents on the micromotors is determined to be 2:1 of amoxicillin and clarithromycin. With the merits of self-propulsion, good biocompatibility and biodegradability, our proposed combined-drug delivery Mg-based micromotor will offer a promising future for the active treatment of bacterial infections. Graphical abstract Download : Download high-res image (418KB) Download : Download full-size image

quote

GB/T 7714-2015 [1] Qingtao Song, Xiaoyong Ding, Yilin Liu, et al. Applied Materials Today, 2023(31). DOI:10.1016/j.apmt.2023.101779.
MLA [1] Qingtao Song, et al., Applied Materials Today, no. 31, 2023, https://doi.org/10.1016/j.apmt.2023.101779.
APA [1] Qingtao Song, Xiaoyong Ding, Yilin Liu, Wenjuan Liu, Jing Li, Bohan Wang, & Zhongwei Gu. (2023). Applied Materials Today(31). https://doi.org/10.1016/j.apmt.2023.101779
IEEE [1] Qingtao Song, Xiaoyong Ding, Yilin Liu, Wenjuan Liu, Jing Li, Bohan Wang, and Zhongwei Gu, Applied Materials Today, no. 31, 2023, doi: 10.1016/j.apmt.2023.101779.