An Efficient Photodynamic Therapy Treatment for Human Pancreatic Adenocarcinoma
Alexandre Quilbe1,2, Olivier Moralès1,2, Martha Baydoun1,2
1CNRS, UMR8161, Institut de Biologie de Lille, Université de Lille, Institut Pasteur de Lille, F-59021 Lille, France.
Abstract:
To date, pancreatic adenocarcinoma (ADKP) is a devastating disease for which the incidence rate is close to the mortality rate. The survival rate has evolved only 2-5% in 45 years, highlighting the failure of current therapies. Otherwise, the use of photodynamic therapy (PDT), based on the use of an adapted photosensitizer (PS) has already proved its worth and has prompted a growing interest in the field of oncology. We have developed a new photosensitizer (PS-FOL/PS2), protected by a recently published patent (WO2019 016397-A1, 24 January 2019). This photosensitizer is associated with an addressing molecule (folic acid) targeting the folate receptor 1 (FOLR1) with a high affinity. Folate binds to FOLR1, in a specific way, expressed in 100% of ADKP or over-expressed in 30% of cases. The first objective of this study is to evaluate the effectiveness of this PS2-PDT in four ADKP cell lines: Capan-1, Capan-2, MiapaCa-2, and Panc-1. For this purpose, we first evaluated the gene and protein expression of FOLR1 on four ADKP cell lines. Subsequently, we evaluated PS2's efficacy in our cell lines and we assessed the impact of PDT on the secretome of cancer cells and its impact on the immune system. Finally, we evaluate the PDT efficacy on a humanized SCID mouse model of pancreatic cancer. In a very interesting way, we observed a significant increase in the proliferation of activated-human PBMC when cultured with conditioned media of ADKP cancer cells subjected to PDT. Furthermore, to evaluate in vivo the impact of this new PS, we analyzed the tumor growth in a humanized SCID mice model of pancreatic cancer. Four conditions were tested: Untreated, mice (nontreated), mice with PS (PS2), mice subjected to illumination (Light only), and mice subjected to illumination in the presence of PS (PDT). We noticed that the mice subjected to PDT presented a strong decrease in the growth of the tumor over time after illumination. Our investigations have not only suggested that PS2-PDT is an effective therapy in the treatment of PDAC but also that it activates the immune system and could be considered as a real adjuvant for anti-cancer vaccination. Thus, this new study provides new treatment options for patients in a therapeutic impasse and will provide a new arsenal in the fight against PDAC.
Insights
A novel photosensitizer (PS2) combined with photodynamic therapy (PDT) shows promise for pancreatic cancer treatment. This PS2-PDT approach effectively reduces tumor growth and activates the immune system, offering new therapeutic options.
Area of Science:
- Oncology
- Photodynamic Therapy
- Cancer Immunology
Background:
- Pancreatic adenocarcinoma (ADKP) has a poor prognosis with limited treatment options.
- Photodynamic therapy (PDT) is an emerging cancer treatment utilizing photosensitizers (PS).
- A new PS (PS2) targets folate receptor 1 (FOLR1), highly expressed in ADKP.
Purpose of the Study:
- To evaluate the efficacy of PS2-mediated photodynamic therapy (PS2-PDT) against pancreatic adenocarcinoma.
- To assess the impact of PS2-PDT on cancer cell secretomes and immune system activation.
- To investigate the in vivo therapeutic potential of PS2-PDT in a humanized mouse model.
Main Methods:
- Assessed FOLR1 expression in four ADKP cell lines.
- Evaluated PS2 efficacy in vitro and its impact on cancer cell secretome and PBMC proliferation.
- Tested PS2-PDT efficacy in a humanized SCID mouse model of pancreatic cancer.
Main Results:
- PS2-PDT significantly reduced tumor growth in vivo.
- PS2-PDT treatment increased proliferation of activated human peripheral blood mononuclear cells (PBMCs).
- PS2 demonstrated high affinity for FOLR1, present in 100% of ADKP cases.
Conclusions:
- PS2-PDT is a potentially effective therapy for pancreatic ductal adenocarcinoma (PDAC).
- PS2-PDT exhibits immunomodulatory effects, suggesting adjuvant potential for cancer vaccination.
- This study offers novel therapeutic strategies for pancreatic cancer patients.


