Literature DB >> 30824608

Reduction of Muscle-Invasive Tumors by Photodynamic Therapy with Tetrahydroporphyrin-Tetratosylat in an Orthotopic Rat Bladder Cancer Model.

Mandy Berndt-Paetz1, Philipp Schulze2, Philipp C Stenglein2, Annett Weimann2, Qiang Wang2, Lars-Christian Horn3, Yasser M Riyad4, Jan Griebel4, Ralf Hermann5, Annegret Glasow6, Jens-Uwe Stolzenburg7, Jochen Neuhaus2.   

Abstract

Photodynamic therapy (PDT) is a promising option for minimal-invasive treatment of bladder cancer. Efficacy of PDT in muscle-invasive urothelial cancer is still hampered by low tissue penetration of most photosensitizers due to short excitation wavelength. The novel light reactive agent tetrahydroporphyrin-tetratosylat (THPTS) is excitable at near-infrared (760 nm), allowing tissue penetration of up to 15 mm. Here, we established an orthotopic rat bladder cancer model and examined the effects of THPTS-PDT on tumor growth in vivo, and analyzed molecular mechanisms in vitro We examined pharmacokinetics and subcellular localization, and evoked cell death mode in cultured rat urothelial carcinoma cells (AY-27). We used female F344 Fischer rats for in vivo studies. Ten rats each were used for THPTS-PDT and light-only control. Bladders were evaluated by macroscopy and histology. Temperature-dependent THPTS uptake resulted in endosomal/lysosomal localization. PDT (0-50 μmol/L THPTS; 10 J/cm2) induced early onset of apoptosis leading to dose-dependent cytotoxicity in AY-27 cells. Single-time transurethral THPTS-PDT (100 μmol/L THPTS; 10 J/cm2) in F344 rats led to significant reduction of muscle-invasive tumor number (2/10 vs. 7/10 in controls) and total tumor volume (60% reduction) 2 weeks after PDT, while sparing healthy tissue. Here, we report for the first time effective tumor growth control by PDT in vivo THPTS is a promising new photosensitizer with the advantage of higher therapeutic depth and the potential of high-selective therapy in muscle-invasive urothelial cancer. This approach possibly allows minimal-invasive bladder preserving treatment of bladder cancer without systemic side effects. ©2019 American Association for Cancer Research.

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Year:  2019        PMID: 30824608     DOI: 10.1158/1535-7163.MCT-18-1194

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  3 in total

1.  Evaluation of a Luminometric Cell Counting System in Context of Antimicrobial Photodynamic Inactivation.

Authors:  Moritz Lehnig; Sarah Glass; Norman Lippmann; Svitlana Ziganshyna; Volker Eulenburg; Robert Werdehausen
Journal:  Microorganisms       Date:  2022-04-30

2.  Immunomodulatory Effects by Photodynamic Treatment of Glioblastoma Cells In Vitro.

Authors:  Friederike Rothe; Ina Patties; Rolf-Dieter Kortmann; Annegret Glasow
Journal:  Molecules       Date:  2022-05-24       Impact factor: 4.927

3.  Antimicrobial Photoinactivation of In Situ Oral Biofilms by Visible Light Plus Water-Filtered Infrared A and Tetrahydroporphyrin-tetratosylate (THPTS).

Authors:  Lamprini Karygianni; Sandra Ruf; Elmar Hellwig; Marie Follo; Kirstin Vach; Ali Al-Ahmad
Journal:  Microorganisms       Date:  2021-01-11
  3 in total

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