High-Content Biopsies Facilitate Molecular Analyses and Do Not Increase Complication Rates in Patients With Advanced

Nathan E Frenk1, Laura Spring1, Alona Muzikansky1

  • 1All authors: Massachusetts General Hospital, Boston, MA.

JCO Precision Oncology
|February 17, 2022
PubMed
Abstract

Insights

Collecting extra tissue cores during liver biopsies for research purposes does not increase complication risks. This practice yields valuable tissue for advanced molecular and genomic analyses in precision oncology.

Area of Science:

  • Oncology
  • Pathology
  • Genomics

Background:

  • Precision oncology requires frequent tissue assessments for treatment guidance and resistance monitoring.
  • Advanced analyses, including drug screens and patient-derived xenografts, necessitate larger tissue sample volumes.
  • The relationship between serial biopsies, tissue yield, and complication rates remains unclear.

Purpose of the Study:

  • To evaluate the impact of obtaining multiple tissue cores during focal liver biopsies on tissue yield and complication rates.
  • To compare outcomes between research biopsies requiring numerous cores and standard biopsies for clinical management.

Main Methods:

  • Retrospective analysis of 199 focal liver biopsies for research protocols (research biopsy group).
  • Comparison with 1,522 consecutive standard biopsies for clinical management.
  • Assessment of tissue cores harvested and complication rates (major and minor).

Main Results:

  • Research biopsy group: 1,100 cores (avg. 5.5/procedure) yielded valuable tissue.
  • Complication rates: 0.5% major and 1.0% minor in the research group.
  • Complication rates were not statistically different between research and standard biopsy groups (1.4% major, 0.2% minor for standard).

Conclusions:

  • Obtaining extra tissue cores during focal liver biopsies is safe.
  • This method significantly increases tissue yield for experimental testing without raising complication rates.
  • Supports the feasibility of extensive tissue sampling for precision oncology research.

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