Natural Language Processing-Assisted Literature Retrieval and Analysis for Combination Therapy in Cancer

Jia Zeng1, Christian X Cruz-Pico2, Turçin Saridogan3

  • 1Sheikh Khalifa Bin Zayed Al Nahyan Institute for Personalized Cancer Therapy, The University of Texas MD Anderson Cancer Center, Houston, TX.

Abstract

Insights

RetriLite, a novel framework, enhances discovery of anticancer combination therapies by using natural language processing. This tool aids researchers in identifying synergistic drug combinations for improved antitumor efficacy and overcoming resistance.

Area of Science:

  • Biomedical Informatics
  • Computational Biology
  • Drug Discovery

Background:

  • Anticancer drug development faces challenges in achieving durable responses.
  • Rational drug combinations offer synergistic effects and can overcome drug resistance.
  • Efficient knowledge discovery in combination therapy is crucial for advancing cancer treatment.

Purpose of the Study:

  • To develop RetriLite, an information retrieval and extraction framework for identifying relevant research on anticancer combination therapies.
  • To facilitate knowledge discovery and reduce manual review of biomedical literature.
  • To create a publicly accessible search engine for combination therapy data.

Main Methods:

  • Developed RetriLite, a framework using natural language processing and a domain-specific knowledgebase.
  • Customized RetriLite into an informatics pipeline to identify efficacy of combination therapies in clinical and preclinical studies.
  • Leveraged modular architecture for synergistic information retrieval and NLP techniques.

Main Results:

  • RetriLite achieved a high F-score of 0.93 in a pilot study.
  • Demonstrated high accuracy in identifying relevant papers (95.9% true positive) and distinguishing clinical from preclinical studies (97.6% accuracy).
  • Publicly accessible online search engine with an intuitive interface was launched.

Conclusions:

  • RetriLite provides a flexible framework for domain-specific information retrieval and extraction systems.
  • The system enhances knowledge discovery in combination therapy through metadata tags and keyword highlighting.
  • Facilitates more effective and efficient research for scientists in the field.

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