Review: A Roadmap to Use Nonstructured Data to Discover Multitarget Cancer Therapies

Silvia Scoarta1,2, Asli Küçükosmanoglu1,3, Felix Bindt4

  • 1Department of Neurosurgery, Brain Tumor Center Amsterdam, Amsterdam University Medical Center, Cancer Center Amsterdam, Amsterdam, the Netherlands.

Insights

Developing effective cancer combination therapies requires integrating diverse data. This study proposes using knowledge graphs and natural language processing to link chemical, preclinical, and clinical data for personalized treatment strategies.

Area of Science:

  • Oncology
  • Bioinformatics
  • Computational Biology

Background:

  • Therapy resistance to single agents necessitates combination therapies for cancer treatment.
  • Integrating diverse data sources is crucial for selecting effective and safe multitarget therapies.
  • Current data integration faces challenges due to limited overlap and structured clinical information.

Purpose of the Study:

  • To propose and assess a feasible approach for integrating chemical, preclinical, and clinical therapeutic data.
  • To address knowledge gaps between different data domains for drug target landscape analysis.
  • To facilitate the clinical application of personalized combination therapies.

Main Methods:

  • Mapping structured data from biomedical resources to identify data overlap.
  • Utilizing natural language processing (NLP) models like BioBERT and PubMedBERT for information extraction from unstructured text.
  • Proposing knowledge graphs to link structured data, literature, and electronic health records.

Main Results:

  • A significant data gap exists, with only 1.7% overlap between drugs in chemical, preclinical, and clinical databases.
  • Limited structured clinical data hinders linking drugs to efficacy and toxicity information.
  • NLP and knowledge graphs offer potential solutions to bridge these knowledge gaps.

Conclusions:

  • Integrating diverse data through NLP and knowledge graphs can create a richer understanding of the drug target landscape.
  • This approach can lower barriers to the clinical application of personalized combination therapies.
  • The goal is to achieve high efficacy with limited adverse events in cancer treatment.

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