Photodynamic therapy of bladder cancer - a phase I study using hexaminolevulinate (HAL).
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Ronald Sroka | Thomas Pongratz | Herbert Stepp | Raphaela Waidelich | Wolfgang Beyer | Martin Kriegmair | Dirk Zaak | H. Stepp | M. Bader | C. Stief | R. Sroka | W. Beyer | M. Kriegmair | D. Zaak | T. Pongratz | D. Tilki | Derya Tilki | R. Waidelich | M J Bader | Mona Welschof | Christian G Stief | Mona Welschof
[1] Georg Bartsch,et al. Photodynamic therapy with intravesical instillation of 5-aminolevulinic acid for patients with recurrent superficial bladder cancer: a single-center study. , 2003, Urology.
[2] Jörg Schmidbauer,et al. Improved detection of urothelial carcinoma in situ with hexaminolevulinate fluorescence cystoscopy. , 2004, The Journal of urology.
[3] G. Mowatt,et al. Systematic review of the clinical effectiveness and cost-effectiveness of photodynamic diagnosis and urine biomarkers (FISH, ImmunoCyt, NMP22) and cytology for the detection and follow-up of bladder cancer. , 2010, Health technology assessment.
[4] Ronald B. Moore,et al. The fluorescence biodistribution and kinetics of aminolevulinic acid induced protoporphyrin IX in the bladder of a rat model with orthotopic urothelial carcinoma. , 2002, The Journal of urology.
[5] J Alfred Witjes,et al. Predicting recurrence and progression in individual patients with stage Ta T1 bladder cancer using EORTC risk tables: a combined analysis of 2596 patients from seven EORTC trials. , 2006, European urology.
[6] R Baumgartner,et al. Early clinical experience with 5-aminolevulinic acid for the photodynamic therapy of superficial bladder cancer. , 1996, British journal of urology.
[7] J. Moan,et al. The photosensitizing effect of the photoproduct of protoporphyrin IX. , 2001, Journal of photochemistry and photobiology. B, Biology.
[8] Dieter Jocham,et al. Hexyl aminolevulinate fluorescence cystoscopy: new diagnostic tool for photodiagnosis of superficial bladder cancer--a multicenter study. , 2003, The Journal of urology.
[9] T. Jonges,et al. Photodynamic diagnosis (5-aminolevulinic acid) of transitional cell carcinoma after bacillus Calmette-Guérin immunotherapy and mitomycin C intravesical therapy. , 2010, European urology.
[10] H. Grossman,et al. A comparison of hexaminolevulinate fluorescence cystoscopy and white light cystoscopy for the detection of carcinoma in situ in patients with bladder cancer: a phase III, multicenter study. , 2007, The Journal of urology.
[11] H. Grossman,et al. Hexaminolevulinate guided fluorescence cystoscopy reduces recurrence in patients with nonmuscle invasive bladder cancer. , 2010, The Journal of urology.
[12] Unyime Nseyo,et al. A phase III, multicenter comparison of hexaminolevulinate fluorescence cystoscopy and white light cystoscopy for the detection of superficial papillary lesions in patients with bladder cancer. , 2007, The Journal of urology.
[13] Dieter Jocham,et al. Improved detection and treatment of bladder cancer using hexaminolevulinate imaging: a prospective, phase III multicenter study. , 2005, The Journal of urology.
[14] R. Young. Carcinoma in Situ of the Bladder , 1996 .
[15] L. Guillou,et al. Fluorescence Photodetection (pd) and Photodynamic Therapy Photodetection of Early Human Bladder Cancer Based on the Fluorescence of 5-aminolaevulinic Acid Hexylester- Induced Protoporphyrin Ix: a Pilot Study , 2022 .
[16] H Stepp,et al. Clinical experience with 5-aminolevulinic acid and photodynamic therapy for refractory superficial bladder cancer. , 2001, The Journal of urology.
[17] C. Whitehurst,et al. Photodynamic therapy for superficial bladder cancer under local anaesthetic , 2002, BJU international.
[18] T. Jonges,et al. Predictors of false positives in 5-aminolevulinic acid-induced photodynamic diagnosis of bladder carcinoma: identification of patient groups that may benefit most from highly specific optical diagnostics. , 2009, Urology.
[19] Jeffrey Gahan,et al. Photodynamic diagnosis in urology: state of the art. , 2011, Archivos espanoles de urologia.
[20] Gerald G. Miller,et al. Biodistribution of Photofrin II® and 5‐Aminolevulinic Acid‐Induced Protoporphyrin IX in Normal Rat Bladder and Bladder Tumor Models: Implications for Photodynamic Therapy , 1998, Photochemistry and photobiology.
[21] H Stepp,et al. Whole bladder photodynamic therapy with 5-aminolevulinic acid using a white light source. , 2003, Urology.
[22] L. Guillou,et al. Comparison of aminolevulinic acid and hexylester aminolevulinate induced protoporphyrin IX distribution in human bladder cancer. , 2003, The Journal of urology.
[23] U. Nseyo,et al. Photodynamic therapy using porfimer sodium as an alternative to cystectomy in patients with refractory transitional cell carcinoma in situ of the bladder. Bladder Photofrin Study Group. , 1998, The Journal of urology.
[24] H Stepp,et al. Early clinical experience with 5-aminolevulinic acid for the photodynamic therapy of upper tract urothelial tumors. , 1998, The Journal of urology.