Related Experiment Video
Updated: Nov 5, 2025

Longitudinal Intravital Imaging of Brain Tumor Cell Behavior in Response to an Invasive Surgical Biopsy
Published on: May 3, 2019
Intraoperative molecular imaging clinical trials: a review of 2020 conference proceedings
Feredun Azari1, Gregory Kennedy1, Elizabeth Bernstein1
1Perelman School of Medicine, Univ. of Pennsylvania, United States.
Significance:
Surgery is often paramount in the management of many solid organ malignancies because optimal resection is a major factor in disease-specific survival. Cancer surgery has multiple challenges including localizing small lesions, ensuring negative surgical margins around a tumor, adequately staging patients by discriminating positive lymph nodes, and identifying potential synchronous cancers. Intraoperative molecular imaging (IMI) is an emerging potential tool proposed to address these issues. IMI is the process of injecting patients with fluorescent-targeted contrast agents that highlight cancer cells prior to surgery. Over the last 5 to 7 years, enormous progress has been achieved in tracer development, near-infrared camera approvals, and clinical trials. Therefore, a second biennial conference was organized at the University of Pennsylvania to gather surgical oncologists, scientists, and experts to discuss new investigative findings in the field. Our review summarizes the discussions from the conference and highlights findings in various clinical and scientific trials.
Aim:
Recent advances in IMI were presented, and the importance of each clinical trial for surgical oncology was critically assessed. A major focus was to elaborate on the clinical endpoints that were being utilized in IMI trials to advance the respective surgical subspecialties.
Approach:
Principal investigators presenting at the Perelman School of Medicine Abramson Cancer Center's second clinical trials update on IMI were selected to discuss their clinical trials and endpoints.
Results:
Multiple phase III, II, and I trials were discussed during the conference. Since the approval of 5-ALA for commercial use in neurosurgical malignancies, multiple tracers and devices have been developed to address common challenges faced by cancer surgeons across numerous specialties. Discussants also presented tracers that are being developed for delineation of normal anatomic structures that can serve as an adjunct during surgical procedures.
Conclusions:
IMI is increasingly being recognized as an improvement to standard oncologic surgical resections and will likely advance the art of cancer surgery in the coming years. The endpoints in each individual surgical subspecialty are varied depending on how IMI helps each specialty solve their clinical challenges.
Insights
Intraoperative molecular imaging (IMI) uses fluorescent tracers to help surgeons precisely locate cancer during surgery. This technology is improving cancer resection and patient outcomes across various surgical specialties.
Area of Science:
- Oncologic Surgery
- Molecular Imaging
- Medical Technology
Background:
- Optimal surgical resection is critical for survival in solid organ malignancies.
- Challenges in cancer surgery include lesion localization, margin assessment, lymph node staging, and detecting synchronous cancers.
- Intraoperative molecular imaging (IMI) is an emerging technology using fluorescent tracers to highlight cancer cells during surgery.
Purpose of the Study:
- To review recent advances and clinical trials in intraoperative molecular imaging (IMI).
- To critically assess the importance of IMI clinical trials for surgical oncology.
- To elaborate on clinical endpoints used in IMI trials to advance surgical subspecialties.
Main Methods:
- The review summarizes discussions from the second biennial conference on IMI clinical trials at the University of Pennsylvania.
- Principal investigators presented their ongoing clinical trials and discussed endpoints.
- Multiple Phase III, II, and I trials were discussed.
Main Results:
- Significant progress in tracer development and near-infrared camera technology has been achieved.
- Tracers and devices have been developed to address common challenges in cancer surgery.
- New tracers are being developed for delineating normal anatomy to aid surgical procedures.
Conclusions:
- IMI is increasingly recognized as an advancement over standard oncologic surgical resections.
- IMI is expected to enhance the practice of cancer surgery in the future.
- Clinical endpoints for IMI vary by surgical subspecialty, addressing specific challenges.

