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Updated: Aug 16, 2025

Computed Tomography-guided Time-domain Diffuse Fluorescence Tomography in Small Animals for Localization of Cancer Biomarkers
Published on: July 17, 2012
In Vitro and In Vivo Evaluation of Targeted Fluorescent Imaging Agents for Diagnosis and Resection of Cancer
Kratika Yadav1, Mena Asha Krishnan1, Venkatesh Chelvam1,2
1Department of Biosciences and Biomedical Engineering, Indian Institute of Technology Indore, Indore, India.
Abstract:
Local re-occurrence of cancer in patients with solid tumors is currently the most common reason for failure of treatment strategies. This fact indicates that prevailing approaches for tumor resection can cure only 50% of patients. A major cause of failure in tumor resection is off-target drug cytotoxicity and lack of sensitivity in tumor detection methods. These disadvantages are addressed with the development of targeted therapy and diagnostics, which significantly aid treatment strategies. Targeted diagnostics exploit properties of tumor cells that show significant up-regulation of tumor biomarkers. These biomarkers are targeted by a homing ligand attached to a fluorophore for visual inspection during surgery. However, these approaches suffer from disadvantages like high autofluorescence from background tissues, tissue absorption, and scattering, resulting in decreased image sensitivity and resolution. The use of near-infrared (NIR) fluorophores to overcome these drawbacks has generated unprecedented interest among researchers. The NIR window lies within the range of 650 to 1,700 nm, which results in reduced absorption and scattering by the tissues, thereby providing deeper tissue penetration and reduced autofluorescence. NIR fluorophores can be designed to target tumor biomarkers such as prostate specific membrane antigen (PSMA) or folate receptors found over-expressed on cancer tissues. These targeted fluorophores consist of small-molecule ligands conjugated with NIR dyes that bind with high specificity to PSMA and folic acid receptors. In this protocol, we have extensively described the methodology for the synthesis of targeted NIR agents for PSMA (DUPA-NIR bioconjugate) and folic acid (folate-NIR bioconjugate), along with detailed steps for preclinical evaluation. Procedures to calculate the binding affinity to cancer cells in vitro are described, along with uptake and biodistribution in different mice models in vivo. © 2022 Wiley Periodicals LLC. Basic Protocol 1: Synthesis and purification of DUPA and folate-peptide linkers via a SPPS strategy Basic Protocol 2: Conjugation, purification, and characterization of targeted bioconjugates with NIR probe for deep-tissue imaging applications Basic Protocol 3: In vitro evaluation of binding affinity of targeted DUPA-NIR and folate-NIR bioconjugates using a spectrophotometer Basic Protocol 4: Induction of tumor in mice to develop CDX or metastatic tumor models Basic Protocol 5: Intravenous administration of targeted DUPA-NIR and folate-NIR bioconjugates in mouse CDX or metastatic tumor models for deep-tissue NIR imaging and tumor resection.
Insights
Targeted near-infrared (NIR) fluorophores targeting prostate specific membrane antigen (PSMA) and folate receptors show promise for improving cancer surgery. These agents offer enhanced tumor detection and deeper tissue penetration, addressing limitations of current methods.
Area of Science:
- Oncology
- Biomedical Engineering
- Medical Imaging
Background:
- Local cancer recurrence after solid tumor resection remains a significant challenge, impacting treatment efficacy in approximately 50% of patients.
- Current tumor detection methods lack sensitivity and suffer from off-target drug cytotoxicity, hindering successful surgical outcomes.
- Near-infrared (NIR) fluorophores offer improved tissue penetration and reduced autofluorescence compared to visible light, addressing limitations in deep-tissue imaging.
Purpose of the Study:
- To develop and evaluate targeted NIR fluorescent agents for improved visualization of solid tumors during surgery.
- To synthesize novel bioconjugates targeting tumor-specific biomarkers like prostate specific membrane antigen (PSMA) and folate receptors.
- To establish protocols for preclinical assessment of these targeted NIR agents, including binding affinity, uptake, and biodistribution.
Main Methods:
- Synthesis and purification of DUPA and folate-peptide linkers using solid-phase peptide synthesis (SPPS).
- Conjugation, purification, and characterization of targeted bioconjugates with NIR probes for deep-tissue imaging.
- In vitro evaluation of binding affinity using spectrophotometry and in vivo studies in mouse models for imaging and resection.
Main Results:
- Methodologies for synthesizing targeted NIR agents (DUPA-NIR and folate-NIR bioconjugates) are detailed.
- Protocols for in vitro binding affinity assessment and in vivo biodistribution studies in mice are described.
- The study provides a framework for preclinical evaluation of targeted NIR agents for enhanced tumor detection.
Conclusions:
- Targeted NIR fluorophores demonstrate potential for improving the sensitivity and resolution of tumor detection in surgical settings.
- The developed DUPA-NIR and folate-NIR bioconjugates offer specific targeting of over-expressed cancer biomarkers.
- These agents represent a promising advancement in image-guided surgery for solid tumors, potentially improving patient outcomes.

