葡萄糖氧化酶
乳腺癌
化学
癌症
明胶
激进的
癌症研究
组合化学
药理学
材料科学
核化学
生物化学
医学
酶
内科学
作者
Song Yi Lee,Ji‐Hye Seo,Sungyun Kim,ChaeRim Hwang,Da In Jeong,Jihye Park,Ming‐Yu Yang,Ji-Won HUH,Hyun‐Jong Cho
出处
期刊:Small
[Wiley]
日期:2023-05-10
卷期号:19 (35)
被引量:15
标识
DOI:10.1002/smll.202301402
摘要
Abstract Cascade hydroxyl radical generating hydrogel reactor structures including a chemotherapeutic agent are invented for multiple treatment of breast cancer. Glucose oxidase (GOx) and cupric sulfate (Cu) are introduced for transforming accumulated glucose (in cancer cells) to hydroxyl radicals for starvation/chemodynamic therapy. Cu may also suppress cancer cell growth via cuproptosis‐mediated cell death. Berberine hydrochloride (BER) is engaged as a chemotherapeutic agent in the hydrogel reactor for combining with starvation/chemodynamic/cuproptosis therapeutic modalities. Moreover, Cu is participated as a gel crosslinker by coordinating with catechol groups in hyaluronic acid‐dopamine (HD) polymer. Controlling viscoelasticity of hydrogel reactor can extend the retention time following local injection and provide sustained drug release patterns. Low biodegradation rate of designed HD/BER/GOx/Cu hydrogel can reduce dosing frequency in local cancer therapy and avoid invasiveness‐related inconveniences. Especially, it is anticipated that HD/BER/GOx/Cu hydrogel system can be applied for reducing size of breast cancer prior to surgery as well as tumor growth suppression in clinical application.
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