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Combined suicide gene therapy for pancreatic peritoneal carcinomatosis using BGTC liposomes
Amor Hajri1, Séverine Wack, Pierre Lehn
1INSERM U375, IRCAD, 1 place de l'Hôpital, BP 426, 67091 Strasbourg, France. amor.hajri@ircad.u-strasbg.fr
Abstract:
Peritoneal dissemination is a common end-stage complication of pancreatic cancer for which novel therapeutic modalities are actively investigated, as there is no current effective therapy. Thus, we evaluated, in a mouse model of pancreatic peritoneal carcinomatosis, the therapeutic potential of a novel nonviral gene therapy approach consisting of bis-guanidinium-tren-cholesterol (BGTC)-mediated lipofection of a combined suicide gene system. Human BxPC-3 pancreatic cells secreting the carcinoembryonic antigen (CEA) tumor marker were injected into the peritoneal cavity of nude mice. After 8 days, intraperitoneal (i.p.) lipofection was performed using BGTC/DOPE cationic liposomes complexed with plasmids encoding the two prodrug-activating enzymes Herpes Simplex Virus thymidine kinase and Escherichia coli cytosine deaminase, the latter being expressed from a bicistronic cassette also encoding E. coli uracil phosphoribosyltransferase. Administration of the lipoplexes was followed by treatment with the corresponding prodrugs ganciclovir and 5-fluorocytosine. The results presented herein demonstrate that BGTC/DOPE liposomes can efficiently mediate gene transfection into peritoneal tumor nodules. Indeed, HSV-TK mRNA was detected in tumor nodule tissues by semiquantitative reverse transcription-polymerase chain reaction analysis. In addition, green fluorescent protein (GFP) fluorescence and X-gal staining were observed in the peritoneal tumor foci following lipofection of the corresponding EGFP and LacZ reporter genes. These expression analyses also showed that transgene expression lasted for about 2 weeks and was preferential for the tumor nodules, this tumor preference being in good agreement with the absence of obvious treatment-related toxicity. Most importantly, mice receiving the full treatment scheme (BGTC liposomes, suicide genes and prodrugs) had significantly lower serum CEA levels than those of the various control groups, a finding indicating that peritoneal carcinomatosis progression was strongly reduced in these mice. In conclusion, our results demonstrate the therapeutic efficiency of BGTC-mediated i.p. lipofection of a combined suicide gene system in a mouse peritoneal carcinomatosis model and suggest that BGTC-based prodrug-activating gene therapy approaches may constitute a potential treatment modality for patients with peritoneal carcinomatosis and minimal residual disease.
Insights
This study shows a novel gene therapy using BGTC liposomes effectively reduced pancreatic cancer spread in mice. This approach offers a promising new treatment for peritoneal carcinomatosis.
Area of Science:
- Oncology
- Gene Therapy
- Nanomedicine
Background:
- Peritoneal dissemination is a severe complication of pancreatic cancer with no effective treatments.
- Novel therapeutic strategies are urgently needed to combat pancreatic cancer peritoneal carcinomatosis.
Purpose of the Study:
- To evaluate the therapeutic potential of a nonviral gene therapy using BGTC-mediated lipofection of a combined suicide gene system.
- To assess the efficacy of this approach in a mouse model of pancreatic peritoneal carcinomatosis.
Main Methods:
- Mice with pancreatic cancer peritoneal carcinomatosis received intraperitoneal lipofection with BGTC/DOPE cationic liposomes carrying suicide genes (HSV-TK and CD).
- Mice were subsequently treated with prodrugs (ganciclovir and 5-fluorocytosine).
- Gene transfection efficiency, transgene expression, and therapeutic outcomes were analyzed.
Main Results:
- BGTC/DOPE liposomes efficiently transfected peritoneal tumor nodules, with detectable transgene expression for up to 2 weeks.
- Gene expression was preferential to tumor nodules, with minimal observed toxicity.
- Mice receiving the full treatment showed significantly reduced peritoneal carcinomatosis progression, indicated by lower CEA levels.
Conclusions:
- BGTC-mediated intraperitoneal lipofection of a combined suicide gene system is therapeutically effective in a mouse model of pancreatic peritoneal carcinomatosis.
- BGTC-based gene therapy represents a potential treatment strategy for patients with peritoneal carcinomatosis and minimal residual disease.
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