4.8 Article

Serum Metabolic Fingerprints on Bowl-Shaped Submicroreactor Chip for Chemotherapy Monitoring

期刊

ACS NANO
卷 16, 期 2, 页码 2852-2865

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.1c09864

关键词

submicroreactor; anisotropic particles; metabolites; chemotherapy; mass spectrometry

资金

  1. NSFC [81971771, 82173077]
  2. MOST [2017YFE0124400, 2017YFC0909000, 2021YFF0703500, 2021YFA0910104]
  3. Innovation Group Project of Shanghai Municipal Health Commission [2019CXJQ03]
  4. Clinical Research Plan of SHDC [16CR2011A, SHDC2020CR3057B]
  5. BKF [KH-2021-LLZX-018]
  6. Shanghai Institutions of Higher Learning [2021-01-07-00-02-E00083]
  7. Shanghai Jiao Tong University [YG2021GD02, YG2019QNA44, YG2021ZD09, YG2022QN107, TMSK-2021-124, TMSK-2021-207]
  8. Shanghai Rising-Star Program [19QA1404800]
  9. Innovation Research Plan by the Shanghai Municipal Education Commission [ZXWF082101]

向作者/读者索取更多资源

Chemotherapy is a crucial cancer treatment, and its monitoring plays a vital role in improving survival rates and quality of life for cancer patients. However, current monitoring methods are not sensitive enough and have radiation invasiveness. In this study, a bowl-shaped submicroreactor chip loaded with Au-3-aminophenol formaldehyde resin (APF-bowl&Au) is developed for serum metabolic fingerprint extraction and chemotherapy monitoring, allowing for improved prediction of chemotherapy outcomes.
Chemotherapy is a primary cancer treatment strategy, the monitoring of which is critical to enhancing the survival rate and quality of life of cancer patients. However, current chemotherapy monitoring mainly relies on imaging tools with inefficient sensitivity and radiation invasiveness. Herein, we develop the bowl-shaped submicroreactor chip of Au-loaded 3-aminophenol formaldehyde resin (denoted as APF-bowl&Au) with a specifically designed structure and Au loading content. The obtained APF-bowl&Au, used as the matrix of laser desorption/ionization mass spectrometry (LDI MS), possesses an enhanced localized electromagnetic field for strengthened small metabolite detection. The APF-bowl&Au enables the extraction of serum metabolic fingerprints (SMFs), and machine learning of the SMFs achieves chemotherapy monitoring of ovarian cancer with area-under-the-curve (AUC) of 0.81-0.98. Furthermore, a serum metabolic biomarker panel is preliminarily identified, exhibiting gradual changes as the chemotherapy cycles proceed. This work provides insights into the development of nanochips and contributes to a universal detection platform for chemotherapy monitoring.

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