Related Experiment Video
Updated: May 14, 2026

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Small Molecule Sequential Dual-Targeting Theragnostic Strategy (SMSDTTS): from Preclinical Experiments towards
Junjie Li1, Raymond Oyen, Alfons Verbruggen
11. Department of Imaging and Pathology, Biomedical Sciences Group; KU Leuven, Belgium. ; 2. Molecular Small Animal Imaging Center, Faculty of Medicine; KU Leuven, Belgium.
Abstract:
Hitting the evasive tumor cells proves challenging in targeted cancer therapies. A general and unconventional anticancer approach namely small molecule sequential dual-targeting theragnostic strategy (SMSDTTS) has recently been introduced with the aims to target and debulk the tumor mass, wipe out the residual tumor cells, and meanwhile enable cancer detectability. This dual targeting approach works in two steps for systemic delivery of two naturally derived drugs. First, an anti-tubulin vascular disrupting agent, e.g., combretastatin A4 phosphate (CA4P), is injected to selectively cut off tumor blood supply and to cause massive necrosis, which nevertheless always leaves peripheral tumor residues. Secondly, a necrosis-avid radiopharmaceutical, namely (131)I-hypericin ((131)I-Hyp), is administered the next day, which accumulates in intratumoral necrosis and irradiates the residual cancer cells with beta particles. Theoretically, this complementary targeted approach may biologically and radioactively ablate solid tumors and reduce the risk of local recurrence, remote metastases, and thus cancer mortality. Meanwhile, the emitted gamma rays facilitate radio-scintigraphy to detect tumors and follow up the therapy, hence a simultaneous theragnostic approach. SMSDTTS has now shown promise from multicenter animal experiments and may demonstrate unique anticancer efficacy in upcoming preliminary clinical trials. In this short review article, information about the two involved agents, the rationale of SMSDTTS, its preclinical antitumor efficacy, multifocal targetability, simultaneous theragnostic property, and toxicities of the dose regimens are summarized. Meanwhile, possible drawbacks, practical challenges and future improvement with SMSDTTS are discussed, which hopefully may help to push forward this strategy from preclinical experiments towards possible clinical applications.
Insights
This novel small molecule sequential dual-targeting theragnostic strategy (SMSDTTS) uses two drugs to eliminate tumors and detect cancer. It targets tumor blood supply and residual cells, offering a promising approach for cancer treatment.
Area of Science:
- Oncology
- Radiopharmaceuticals
- Nanomedicine
Background:
- Targeted cancer therapies face challenges in eradicating all tumor cells.
- A new strategy, small molecule sequential dual-targeting theragnostic strategy (SMSDTTS), aims to overcome these limitations.
- SMSDTTS combines debulking tumor mass with eliminating residual cells and enabling cancer detection.
Purpose of the Study:
- To review the SMSDTTS approach for cancer treatment.
- To summarize the rationale, efficacy, and theragnostic properties of SMSDTTS.
- To discuss challenges and future directions for SMSDTTS.
Main Methods:
- Systemic delivery of two naturally derived drugs in a sequential manner.
- First step: injection of combretastatin A4 phosphate (CA4P) to disrupt tumor vasculature.
- Second step: administration of (131)I-hypericin ((131)I-Hyp) to target necrosis and irradiate residual cells.
Main Results:
- Preclinical studies show promise for SMSDTTS in animal models.
- The approach demonstrated multifocal targetability and simultaneous theragnostic properties.
- Potential to reduce tumor recurrence, metastasis, and mortality.
Conclusions:
- SMSDTTS offers a complementary approach for biological and radioactive ablation of solid tumors.
- The theragnostic capability allows for tumor detection and therapy monitoring via radio-scintigraphy.
- Further clinical trials are needed to validate SMSDTTS efficacy and safety.
More Related Videos
10:47Harnessing the Bioorthogonal Inverse Electron Demand Diels-Alder Cycloaddition for Pretargeted PET Imaging
Published on: February 3, 2015
10:46A Flow Cytometry-Based Cell Surface Protein Binding Assay for Assessing Selectivity and Specificity of an Anticancer Aptamer
Published on: September 13, 2022
Related Concept Videos
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
Modified-Release Drug Delivery Systems: Site-Targeted