Literature DB >> 21769639

Therapeutic effects of systemic photodynamic therapy in a leukemia animal model using A20 cells.

Lan Ying Wen1, Su-Mi Bae, Heung-Jae Chun, Kye-Shin Park, Woong Shick Ahn.   

Abstract

Photodynamic therapy (PDT) is attracting attention because of its noticeable inhibitory effects on the growth of dermatological and other solid tumors. Here, we studied the use of PDT in systemic diseases such as leukemia, lymphoma, and metastatic cancer, for which tumor formation areas cannot be clearly compartmentalized. We developed a systemic PDT method and examined its effect in a leukemia mouse model. Growth inhibition of A20 cells (H-2(d), murine B-lymphoma/leukemia, and Balb/c origin) induced by PDT/Photodithazine was evaluated by EZ-Cytox assay. After PDT, changes in cell morphology were assessed by light microscopy. Induction of apoptosis, as well as changes in the cell cycle, were assessed by fluorescence-activated cell sorting (FACS) analysis. A20 cells were injected into Balb/c mice through the tail veins, and PDT was performed. A total of 10 mg kg(-1) body weight of Photodithazine concentration was injected intravenously. After 5 min, micro photofibers (diameter, 200 μm) were inserted into the tail veins and irradiated at 1,200 J with a laser. PDT inhibited growth of A20 cells and resulted in marked morphological changes. PDT also induced apoptosis and G1 arrest. In a leukemia mouse model, systemic PDT increased the survival rate (p < 0.01). This is the first report of the effects of systemic PDT in a leukemia animal model. PDT has been applied only locally in most cases, for example to solid tumors. This study provides experimental evidence that systemic PDT could effectively be applied to systemic and spread tumors, for which tumor formation areas cannot clearly be determined.

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Year:  2011        PMID: 21769639     DOI: 10.1007/s10103-011-0950-x

Source DB:  PubMed          Journal:  Lasers Med Sci        ISSN: 0268-8921            Impact factor:   3.161


  33 in total

1.  Rapid initiation of apoptosis by photodynamic therapy.

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Journal:  Photochem Photobiol       Date:  1996-04       Impact factor: 3.421

2.  PDT for cancers of the head and neck.

Authors:  Ron R Allison; Claudia Sibata; Hiram Gay
Journal:  Photodiagnosis Photodyn Ther       Date:  2009-05-05       Impact factor: 3.631

3.  The induction of partial resistance to photodynamic therapy by the protooncogene BCL-2.

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Journal:  Photochem Photobiol       Date:  1996-11       Impact factor: 3.421

Review 4.  The photobiology of photodynamic therapy: cellular targets and mechanisms.

Authors:  N L Oleinick; H H Evans
Journal:  Radiat Res       Date:  1998-11       Impact factor: 2.841

5.  Photogem Induces Necrosis in Various Uterine Cervical Cancer Cell Lines by PDT.

Authors:  Su Mi Bae; Seung Won Huh; Eun Kyung Park; Keun Ho Lee; Joon Mo Lee; Sung Eun Namkoong; Sei Jun Han; Chong Kook Kim; Jong Ki Kim; Yong Wan Kim; Woong Shick Ahn
Journal:  Cancer Res Treat       Date:  2003-12       Impact factor: 4.679

6.  Graft-vs-leukemia activity and graft-vs-host disease induced by allogeneic Th1- and Th2-type CD4+ T cells in mice.

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Journal:  Hematol J       Date:  2001

7.  Endovascular photodynamic therapy with aminolaevulinic acid prevents balloon induced intimal hyperplasia and constrictive remodelling.

Authors:  E E E Gabeler; R van Hillegersberg; R G Statius van Eps; W Sluiter; P Mulder; H van Urk
Journal:  Eur J Vasc Endovasc Surg       Date:  2002-10       Impact factor: 7.069

Review 8.  Molecular effectors of multiple cell death pathways initiated by photodynamic therapy.

Authors:  Esther Buytaert; Michael Dewaele; Patrizia Agostinis
Journal:  Biochim Biophys Acta       Date:  2007-07-06

9.  Apoptosis occurs in lymphoma cells but not in hepatoma cells following ionizing radiation and photodynamic therapy.

Authors:  M A Laukka; K K Wang; J A Bonner
Journal:  Dig Dis Sci       Date:  1994-11       Impact factor: 3.199

10.  5-aminolevulinic acid-based photodynamic therapy in leukemia cell HL60.

Authors:  Su-Juan Zhang; Zhen-Xi Zhang
Journal:  Photochem Photobiol       Date:  2004-06       Impact factor: 3.421

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  6 in total

1.  Susceptibility of multispecies biofilm to photodynamic therapy using Photodithazine®.

Authors:  Cristiane Campos Costa Quishida; Juliana Cabrini Carmello; Ewerton Garcia de Oliveira Mima; Vanderlei Salvador Bagnato; Ana Lúcia Machado; Ana Cláudia Pavarina
Journal:  Lasers Med Sci       Date:  2013-08-03       Impact factor: 3.161

2.  Safety assessment of oral photodynamic therapy in rats.

Authors:  Carla R Fontana; Mark A Lerman; Niraj Patel; Clovis Grecco; Carlos A de Souza Costa; Mansoor M Amiji; Vanderlei S Bagnato; Nikolaos S Soukos
Journal:  Lasers Med Sci       Date:  2012-03-31       Impact factor: 3.161

Review 3.  Effect of Photodynamic Antimicrobial Chemotherapy on Mono- and Multi-Species Cariogenic Biofilms: A Literature Review.

Authors:  Maria Tayara Marques de Freitas; Talyta Teixeira Soares; Maria Gerusa Brito Aragão; Ramille Araújo Lima; Simone Duarte; Iriana Carla Junqueira Zanin
Journal:  Photomed Laser Surg       Date:  2017-01-24       Impact factor: 2.796

4.  Apoptosis-associated genes related to photodynamic therapy in breast carcinomas.

Authors:  J C Silva; J Ferreira-Strixino; L C Fontana; L M Paula; L Raniero; A A Martin; R A Canevari
Journal:  Lasers Med Sci       Date:  2014-02-27       Impact factor: 3.161

5.  Neuroprotective effect of N-acyl 5-hydroxytryptamines on glutamate-induced cytotoxicity in HT-22 cells.

Authors:  Mei Chen Jin; Jae-Myung Yoo; Dai-Eun Sok; Mee Ree Kim
Journal:  Neurochem Res       Date:  2014-10-12       Impact factor: 3.996

Review 6.  Sensitive Photodynamic Detection of Adult T-cell Leukemia/Lymphoma and Specific Leukemic Cell Death Induced by Photodynamic Therapy: Current Status in Hematopoietic Malignancies.

Authors:  Takashi Oka; Ken-Ichi Matsuoka; Atae Utsunomiya
Journal:  Cancers (Basel)       Date:  2020-02-02       Impact factor: 6.639

  6 in total

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