Related Experiment Video
Updated: Jul 4, 2026

Quail Chorioallantoic Membrane - A Tool for Photodynamic Diagnosis and Therapy
Published on: April 28, 2022
Molecular profiling of angiogenesis in hypericin mediated photodynamic therapy
Ramaswamy Bhuvaneswari1, Yik Y Gan, Sasidharan S Lucky
1Division of Medical Sciences, National Cancer Centre Singapore, 11 Hospital Drive, 169610, Singapore. bhuvshri@yahoo.com
Background:
Photodynamic therapy (PDT) involves the administration of a tumor-localizing photosensitizing drug, which is activated by light of specific wavelength in the presence of molecular oxygen thus generating reactive oxygen species that is toxic to the tumor cells. PDT selectively destroys photosensitized tissue leading to various cellular and molecular responses. The present study was designed to examine the angiogenic responses at short (0.5 h) and long (6 h) drug light interval (DLI) hypericin-PDT (HY-PDT) treatment at 24 h and 30 days post treatment in a human bladder carcinoma xenograft model. As short DLI targets tumor vasculature and longer DLI induces greater cellular damage, we hypothesized a differential effect of these treatments on the expression of angiogenic factors.
Results:
Immunohistochemistry (IHC) results showed minimal CD31 stained endothelium at 24 h post short DLI PDT indicating extensive vascular damage. Angiogenic proteins such as vascular endothelial growth factor (VEGF), tumor necrosis growth factor-alpha (TNF-alpha), interferon-alpha (IFN-alpha) and basic fibroblast growth factor (bFGF) were expressed to a greater extent in cellular targeting long DLI PDT compared to vascular mediated short DLI PDT. Gene expression profiling for angiogenesis pathway demonstrated downregulation of adhesion molecules - cadherin 5, collagen alpha 1 and 3 at 24 h post treatment. Hepatocyte growth factor (HGF) and Ephrin-A3 (EFNA3) were upregulated in all treatment groups suggesting a possible activation of c-Met and Ephrin-Eph signaling pathways.
Conclusion:
In conclusion, long DLI HY-PDT induces upregulation of angiogenic proteins. Differential expression of genes involved in the angiogenesis pathway was observed in the various groups treated with HY-PDT.
Insights
Longer drug light interval (DLI) photodynamic therapy (PDT) upregulates angiogenic proteins in bladder cancer models. Short DLI PDT caused vascular damage, while long DLI HY-PDT showed differential gene expression in angiogenesis pathways.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Photodynamic therapy (PDT) utilizes photosensitizing drugs activated by light to generate reactive oxygen species, selectively destroying tumor cells.
- PDT triggers cellular and molecular responses, impacting tumor microenvironment and vasculature.
- Hypericin-PDT (HY-PDT) is investigated for its therapeutic potential in bladder carcinoma.
Purpose of the Study:
- To examine the differential angiogenic responses to short (0.5 h) and long (6 h) drug light interval (DLI) HY-PDT.
- To investigate the expression of angiogenic factors at 24 hours and 30 days post-treatment.
- To test the hypothesis that varying DLIs differentially affect angiogenic factor expression.
Main Methods:
- Human bladder carcinoma xenograft model.
- Immunohistochemistry (IHC) for CD31 to assess vascular damage.
- Analysis of angiogenic protein expression including VEGF, TNF-alpha, IFN-alpha, and bFGF.
- Gene expression profiling of the angiogenesis pathway.
Main Results:
- Short DLI HY-PDT induced significant vascular damage, evidenced by minimal CD31 staining at 24 h.
- Long DLI HY-PDT showed greater upregulation of angiogenic proteins (VEGF, TNF-alpha, IFN-alpha, bFGF) compared to short DLI.
- Gene expression revealed downregulation of adhesion molecules (cadherin 5, collagen alpha 1 and 3) at 24 h, with upregulation of HGF and EFNA3 across treatment groups.
Conclusions:
- Long DLI HY-PDT effectively upregulates key angiogenic proteins in a bladder cancer model.
- Differential gene expression within the angiogenesis pathway was observed following HY-PDT, suggesting complex regulatory mechanisms.
- The study highlights the distinct effects of short and long DLIs on tumor vasculature and angiogenic signaling.
More Related Videos
Related Concept Videos
Regulation of Angiogenesis and Blood Supply
Mechanism of Angiogenesis

