247
Views
122
CrossRef citations to date
0
Altmetric
Review

Liposomal delivery of photosensitising agents

, &
Pages 477-487 | Published online: 10 May 2005

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Vadzim Reshetov, Henri-Pierre Lassalle, Aurélie François, Dominique Dumas, Sebastien Hupont, Susanna Gräfe, Vasco Filipe, Wim Jiskoot, François Guillemin, Vladimir Zorin & Lina Bezdetnaya. (2013) Photodynamic therapy with conventional and PEGylated liposomal formulations of mTHPC (temoporfin): comparison of treatment efficacy and distribution characteristics in vivo. International Journal of Nanomedicine 8, pages 3817-3831.
Read now
Stéphane A Sibani, Paul A McCarron, A David Woolfson & Ryan F Donnelly. (2008) Photosensitiser delivery for photodynamic therapy. Part 2: systemic carrier platforms. Expert Opinion on Drug Delivery 5:11, pages 1241-1254.
Read now

Articles from other publishers (119)

Qian Sun, Yuping Suo, Haoxuan Lv, Qian Wang & Hanzhen Yin. (2023) Porphin e6 complex loaded with gold nanorod mesoporous silica enhances photodynamic therapy in ovarian cancer cells in vitro. Lasers in Medical Science 38:1.
Crossref
Ghada Yasin, Maha Nasr, Sara A. Abdel Gaber, Dirk Hüttenberger & Maha Fadel. (2022) Response surface methodological approach for optimization of photodynamic therapy of onychomycosis using chlorin e6 loaded nail penetration enhancer vesicles. Journal of Photochemistry and Photobiology B: Biology 232, pages 112461.
Crossref
Sagar Trivedi, Anita Paunikar, Nishikant Raut & Veena Belgamwar. 2022. Photophysics and Nanophysics in Therapeutics. Photophysics and Nanophysics in Therapeutics 89 114 .
Barry J. Liang, Sabrina Lusvarghi, Suresh V. Ambudkar & Huang-Chiao Huang. (2021) Use of photoimmunoconjugates to characterize ABCB1 in cancer cells. Nanophotonics 10:12, pages 3049-3061.
Crossref
Letícia B. Silva, Kelly A. D. F. Castro, Caroline E. A. Botteon, Cristiano L. P. Oliveira, Roberto S. da Silva & Priscyla D. Marcato. (2021) Hybrid Nanoparticles as an Efficient Porphyrin Delivery System for Cancer Cells to Enhance Photodynamic Therapy. Frontiers in Bioengineering and Biotechnology 9.
Crossref
Gita Singh & Sudeshna Chandra. 2021. Applications of Porphyrinoids as Functional Materials. Applications of Porphyrinoids as Functional Materials 328 351 .
Isabella Portugal, Sona Jain, Patrícia Severino & Ronny Priefer. (2021) Micro- and Nano-Based Transdermal Delivery Systems of Photosensitizing Drugs for the Treatment of Cutaneous Malignancies. Pharmaceuticals 14:8, pages 772.
Crossref
Raquel Teixeira, Vanda Vaz Serra, David Botequim, Pedro M. R. Paulo, Suzana M. Andrade & Sílvia M. B. Costa. (2021) Fluorescence Spectroscopy of Porphyrins and Phthalocyanines: Some Insights into Supramolecular Self-Assembly, Microencapsulation, and Imaging Microscopy. Molecules 26:14, pages 4264.
Crossref
Elżbieta Ostańska, David Aebisher & Dorota Bartusik-Aebisher. (2021) The potential of photodynamic therapy in current breast cancer treatment methodologies. Biomedicine & Pharmacotherapy 137, pages 111302.
Crossref
Zhengzou Fang, Yanfei Shen & Daqing Gao. (2021) Stimulus-responsive nanocarriers for targeted drug delivery. New Journal of Chemistry 45:10, pages 4534-4544.
Crossref
Seung Hee Hong, Min-Ah Koo, Mi Hee Lee, Gyeung Mi Seon, Ye Jin Park, HaKyeong Jeong, Dohyun Kim & Jong-Chul Park. (2021) An effective method to generate controllable levels of ROS for the enhancement of HUVEC proliferation using a chlorin e6-immobilized PET film as a photo-functional biomaterial. Regenerative Biomaterials 8:2.
Crossref
Rui Liu, Yanxia Gao, Nannan Liu & Yuping Suo. (2021) Nanoparticles loading porphyrin sensitizers in improvement of photodynamic therapy for ovarian cancer. Photodiagnosis and Photodynamic Therapy 33, pages 102156.
Crossref
Tatyana I. Torkhovskaya, Lyubov V. Kostryukova, Yulia A. Tereshkina, Elena G. Tikhonova, Galina E. Morozevich, Anna D. Plutinskaya, Alexey Yu. Lupatov & Andrey A. Pankratov. (2021) Chlorin e6 embedded in phospholipid nanoparticles equipped with specific peptides: Interaction with tumor cells with different aminopeptidase N expression. Biomedicine & Pharmacotherapy 134, pages 111154.
Crossref
Md. Habban Akhter, Javed Ahmad, Md. Noushad Javed, Rafiul Haque, Habibullah Khalilullah, Manish Gupta & Javed Ali. 2021. Cancer Nanotheranostics. Cancer Nanotheranostics 275 295 .
Barry J. Liang, Michael Pigula, Yan Baglo, Daniel Najafali, Tayyaba Hasan & Huang-Chiao Huang. (2020) Breaking the selectivity-uptake trade-off of photoimmunoconjugates with nanoliposomal irinotecan for synergistic multi-tier cancer targeting. Journal of Nanobiotechnology 18:1.
Crossref
Sandhya Clement, Jared M. Campbell, Wei Deng, Anna Guller, Saadia Nisar, Guozhen Liu, Brian C. Wilson & Ewa M. Goldys. (2020) Mechanisms for Tuning Engineered Nanomaterials to Enhance Radiation Therapy of Cancer. Advanced Science 7:24, pages 2003584.
Crossref
Pushpamali De Silva, Mohammad A. Saad, Hanna C. Thomsen, Shazia Bano, Shoaib Ashraf & Tayyaba Hasan. (2020) Photodynamic therapy, priming and optical imaging: Potential co-conspirators in treatment design and optimization — a Thomas Dougherty Award for Excellence in PDT paper. Journal of Porphyrins and Phthalocyanines 24:11n12, pages 1320-1360.
Crossref
Yinfeng Zhang, Fang Fang, Li Li & Jinfeng Zhang. (2020) Self-Assembled Organic Nanomaterials for Drug Delivery, Bioimaging, and Cancer Therapy. ACS Biomaterials Science & Engineering 6:9, pages 4816-4833.
Crossref
Hu ZhangJair Azael Esquivel GuzmanXiantao FengErnesto RiveraMarc LavertuX.X. Zhu. (2020) Protoporphyrin IX copolymer with poly(ethylene glycol) methacrylate and its thermoresponsive properties. Canadian Journal of Chemistry 98:9, pages 511-515.
Crossref
Paula Enzian, Christian Schell, Astrid Link, Carina Malich, Ralph Pries, Barbara Wollenberg & Ramtin Rahmanzadeh. (2020) Optically Controlled Drug Release from Light-Sensitive Liposomes with the New Photosensitizer 5,10-DiOH. Molecular Pharmaceutics 17:8, pages 2779-2788.
Crossref
Sunaina Singh, Amit Aggarwal, N.V.S. Dinesh K. Bhupathiraju, Ivana Radivojevic Jovanovic, Michael Landress, Michelle Paola Tuz, Ruomei Gao & Charles M. Drain. (2020) Comparing a thioglycosylated chlorin and phthalocyanine as potential theranostic agents. Bioorganic & Medicinal Chemistry 28:3, pages 115259.
Crossref
Aleksey Skobeltsin, Dina Farrakhova, Yulia Maklygina, Igor Romanishkin, Anastasia Ryabova, Ilya Yakovets, Marie Millard, Lina Bolotine, Anna Plyutinskaya, Tatyana Karmakova, Andrey Pankratov & Victor Loschenov. (2020) 3D spheroid cultures for evaluation of nanophotosensitizers accumulation. Journal of Physics: Conference Series 1439:1, pages 012032.
Crossref
Sanjana Ghosh, Kevin A. Carter & Jonathan F. Lovell. (2019) Liposomal formulations of photosensitizers. Biomaterials 218, pages 119341.
Crossref
Marline N’Diaye, Juliette Vergnaud-Gauduchon, Valérie Nicolas, Victor Faure, Stéphanie Denis, Sonia Abreu, Pierre Chaminade & Véronique Rosilio. (2019) Hybrid Lipid Polymer Nanoparticles for Combined Chemo- and Photodynamic Therapy. Molecular Pharmaceutics 16:9, pages 4045-4058.
Crossref
Zahir Shah, Samina Nazir, Kehkashan Mazhar, Rashda Abbasi & Igor M. Samokhvalov. (2019) PEGylated doped- and undoped-TiO2 nanoparticles for photodynamic Therapy of cancers. Photodiagnosis and Photodynamic Therapy 27, pages 173-183.
Crossref
O. V. Korneev, T. V. Sakhno & I. V. Korotkova. (2019) Nanoparticles-based photosensitizers with effect of aggregation-induced emission. Biopolymers and Cell 35:4, pages 249-267.
Crossref
Paula Enzian, Astrid Link, Christian Schell, Carina Malich & Ramtin Rahmanzadeh. (2019) Light-induced permeabilization of liposomes. Light-induced permeabilization of liposomes.
Baoji Du, Weiqi Zhang & Ching-Hsuan Tung. (2019) Layer-by-layer construction of an oxygen-generating photo-responsive nanomedicine for enhanced photothermal and photodynamic combination therapy. Chemical Communications 55:42, pages 5926-5929.
Crossref
Abolghasem Beheshti, Solmaz Ghaffari & Hadi Farahani. (2019) Determination of Cholesterol and its Derivatives in Nanoliposomes as Drug Delivery Conveyances by HPLC–UV: A Simple, Accurate and Cost-Effective Method Development and Validation Approach. Journal of Chromatographic Science 57:5, pages 469-475.
Crossref
Julien Massiot, Véronique Rosilio & Ali Makky. (2019) Photo-triggerable liposomal drug delivery systems: from simple porphyrin insertion in the lipid bilayer towards supramolecular assemblies of lipid–porphyrin conjugates. Journal of Materials Chemistry B 7:11, pages 1805-1823.
Crossref
Julien Massiot, Véronique Rosilio, Nada Ibrahim, Akihisa Yamamoto, Valérie Nicolas, Oleg Konovalov, Motomu Tanaka & Ali Makky. (2018) Newly Synthesized Lipid–Porphyrin Conjugates: Evaluation of Their Self‐Assembling Properties, Their Miscibility with Phospholipids and Their Photodynamic Activity In Vitro. Chemistry – A European Journal 24:72, pages 19179-19194.
Crossref
Nejat Düzgüneş, Jaroslaw Piskorz, Paulina Skupin-Mrugalska, Tomasz Goslinski, Jadwiga Mielcarek & Krystyna Konopka. (2018) Photodynamic therapy of cancer with liposomal photosensitizers. Therapeutic Delivery 9:11, pages 823-832.
Crossref
Qian Feng, Jing Wang, Hu Song, Lian-gang Zhuo, Guanquan Wang, Wei Liao, Yue Feng, Hongyuan Wei, Yue Chen, Yuchuan Yang & Xia Yang. (2018) Uptake and light-induced cytotoxicity of hyaluronic acid-grafted liposomes containing porphyrin in tumor cells. Journal of Drug Delivery Science and Technology 47, pages 137-143.
Crossref
Stanisław Kwiatkowski, Bartosz Knap, Dawid Przystupski, Jolanta Saczko, Ewa Kędzierska, Karolina Knap-Czop, Jolanta Kotlińska, Olga Michel, Krzysztof Kotowski & Julita Kulbacka. (2018) Photodynamic therapy – mechanisms, photosensitizers and combinations. Biomedicine & Pharmacotherapy 106, pages 1098-1107.
Crossref
Mariana Q. Mesquita, Cristina J. Dias, Maria P. M. S. Neves, Adelaide Almeida & M. F. Faustino. (2018) Revisiting Current Photoactive Materials for Antimicrobial Photodynamic Therapy. Molecules 23:10, pages 2424.
Crossref
Simin Belali, Huguette Savoie, Jessica M. O’Brien, Atillio A. Cafolla, Barry O’Connell, Ali Reza Karimi, Ross W. Boyle & Mathias O. Senge. (2018) Synthesis and Characterization of Temperature-Sensitive and Chemically Cross-Linked Poly( N -isopropylacrylamide)/Photosensitizer Hydrogels for Applications in Photodynamic Therapy . Biomacromolecules 19:5, pages 1592-1601.
Crossref
Paulina Skupin-Mrugalska, Wojciech Szczolko, Piotr Gierlich, Krystyna Konopka, Tomasz Goslinski, Jadwiga Mielcarek & Nejat Düzgüneş. (2018) Physicochemical properties of liposome-incorporated 2-(morpholin-4-yl)ethoxy phthalocyanines and their photodynamic activity against oral cancer cells. Journal of Photochemistry and Photobiology A: Chemistry 353, pages 445-457.
Crossref
Lyubov V. Kostryukova, Vladimir N. Prozorovskiy, Natalya V. Medvedeva & Olga M. Ipatova. (2018) Comparison of a new nanoform of the photosensitizer chlorin e6, based on plant phospholipids, with its free form. FEBS Open Bio 8:2, pages 201-210.
Crossref
Manoj Majumder, Tamal Goswami & Anirban Misra. (2018) Multifunctional Magnetic Materials of Organic Origin for Biomedical Applications: A Theoretical Study. ChemistrySelect 3:3, pages 933-939.
Crossref
MARIANA Q. MESQUITA, CRISTINA J. DIAS, SARA GAMELAS, MARGARIDA FARDILHA, MARIA G.P.M.S. NEVES & MARIA AMPARO F. FAUSTINO. (2018) An insight on the role of photosensitizer nanocarriers for Photodynamic Therapy. Anais da Academia Brasileira de Ciências 90:1 suppl 2, pages 1101-1130.
Crossref
Roshni Iyer, Joseph Wolf, Daria Zhukova, Dona Padanilam & Kytai T. Nguyen. 2018. Handbook of Nanomaterials for Cancer Theranostics. Handbook of Nanomaterials for Cancer Theranostics 351 391 .
Akihisa Kato, Hiromi Kataoka, Shigenobu Yano, Kazuki Hayashi, Noriyuki Hayashi, Mamoru Tanaka, Itaru Naitoh, Tesshin Ban, Katsuyuki Miyabe, Hiromu Kondo, Michihiro Yoshida, Yasuaki Fujita, Yasuki Hori, Makoto Natsume, Takashi Murakami, Atsushi Narumi, Akihiro Nomoto, Aya Naiki-Ito, Satoru Takahashi & Takashi Joh. (2017) Maltotriose Conjugation to a Chlorin Derivative Enhances the Antitumor Effects of Photodynamic Therapy in Peritoneal Dissemination of Pancreatic Cancer. Molecular Cancer Therapeutics 16:6, pages 1124-1132.
Crossref
Baoyan Wu & Na Zhao. (2016) A Targeted Nanoprobe Based on Carbon Nanotubes-Natural Biopolymer Chitosan Composites. Nanomaterials 6:11, pages 216.
Crossref
Mohan Vimaladevi, Kurunchi Chellapathi Divya & Agnishwar Girigoswami. (2016) Liposomal nanoformulations of rhodamine for targeted photodynamic inactivation of multidrug resistant gram negative bacteria in sewage treatment plant. Journal of Photochemistry and Photobiology B: Biology 162, pages 146-152.
Crossref
Xingye Feng, Di Jiang, Ting Kang, Jianhui Yao, Yixian Jing, Tianze Jiang, Jingxian Feng, Qianqian Zhu, Qingxiang Song, Nan Dong, Xiaoling Gao & Jun Chen. (2016) Tumor-Homing and Penetrating Peptide-Functionalized Photosensitizer-Conjugated PEG-PLA Nanoparticles for Chemo-Photodynamic Combination Therapy of Drug-Resistant Cancer. ACS Applied Materials & Interfaces 8:28, pages 17817-17832.
Crossref
Qun-Yan Li, Peng-Yan Wang, Yun-Lu Zhou, Zuo-Ren Nie & Qi Wei. (2016) A magnetic mesoporous SiO2/Fe3O4 hollow microsphere with a novel network-like composite shell: synthesis and application on laccase immobilization. Journal of Sol-Gel Science and Technology 78:3, pages 523-530.
Crossref
Carmen Seidl, Jan Ungelenk, Eva Zittel, Thomas Bergfeldt, Jonathan P. Sleeman, Ute Schepers & Claus Feldmann. (2016) Tin Tungstate Nanoparticles: A Photosensitizer for Photodynamic Tumor Therapy. ACS Nano 10:3, pages 3149-3157.
Crossref
Huang-Chiao Huang, Srivalleesha Mallidi, Joyce Liu, Chun-Te Chiang, Zhiming Mai, Ruth Goldschmidt, Neema Ebrahim-Zadeh, Imran Rizvi & Tayyaba Hasan. (2016) Photodynamic Therapy Synergizes with Irinotecan to Overcome Compensatory Mechanisms and Improve Treatment Outcomes in Pancreatic Cancer. Cancer Research 76:5, pages 1066-1077.
Crossref
Heba Asem, Ahmed Abd El-Fattah, Noha Nafee, Ying Zhao, Labiba Khalil, Mamoun Muhammed, Moustapha Hassan & Sherif Kandil. (2016) Development and biodistribution of a theranostic aluminum phthalocyanine nanophotosensitizer. Photodiagnosis and Photodynamic Therapy 13, pages 48-57.
Crossref
Johnson V. John, Chung-Wook Chung, Renjith P. Johnson, Young-Il Jeong, Kyu-Don Chung, Dae Hwan Kang, Hongsuk Suh, Hongyu Chen & Il Kim. (2015) Dual Stimuli-Responsive Vesicular Nanospheres Fabricated by Lipopolymer Hybrids for Tumor-Targeted Photodynamic Therapy. Biomacromolecules 17:1, pages 20-31.
Crossref
Yiming Zhou, Xiaolong Liang & Zhifei Dai. (2016) Porphyrin-loaded nanoparticles for cancer theranostics. Nanoscale 8:25, pages 12394-12405.
Crossref
Gihan Mahmoud, Jarmila Jedelská, Boris Strehlow & Udo Bakowsky. (2015) Bipolar tetraether lipids derived from thermoacidophilic archaeon Sulfolobus acidocaldarius for membrane stabilization of chlorin e6 based liposomes for photodynamic therapy. European Journal of Pharmaceutics and Biopharmaceutics 95, pages 88-98.
Crossref
Jun-Hyung Park, Sang-Jun Ban, Taksim Ahmed, Hong Seok Choi, Hyo-Eun Yoon, Jung-Hoon Yoon & Hoo-Kyun Choi. (2015) Development of DH-I-180-3 loaded lipid nanoparticle for photodynamic therapy. International Journal of Pharmaceutics 491:1-2, pages 393-401.
Crossref
Colby S. Shemesh, Delaram Moshkelani & Hailing Zhang. (2014) Thermosensitive Liposome Formulated Indocyanine Green for Near-Infrared Triggered Photodynamic Therapy: In Vivo Evaluation for Triple-Negative Breast Cancer. Pharmaceutical Research 32:5, pages 1604-1614.
Crossref
H-C. Huang, S. Mallidi, G. Obaid, B. Sears, S. Tangutoori & T. Hasan. 2015. Applications of Nanoscience in Photomedicine. Applications of Nanoscience in Photomedicine 487 510 .
A. Gallardo, J. Morales, J. Comas-Barceló, T. Gallavardin, P. Acedo, A. Villanueva & S. Nonell. 2015. Applications of Nanoscience in Photomedicine. Applications of Nanoscience in Photomedicine 429 448 .
Valentina Rapozzi & Giulio Jori. 2015. Resistance to Photodynamic Therapy in Cancer. Resistance to Photodynamic Therapy in Cancer 3 26 .
Po-Chun Peng, Ruey-Long Hong, Yi-Jane Tsai, Pei-Tzu Li, Tsuimin Tsai & Chin-Tin Chen. (2015) Dual-effect liposomes encapsulated with doxorubicin and chlorin e6 augment the therapeutic effect of tumor treatment. Lasers in Surgery and Medicine 47:1, pages 77-87.
Crossref
Ji-Eun Chang, In-Soo Yoon, Ping-Li Sun, Eunjue Yi, Sanghoon Jheon & Chang-Koo Shim. (2014) Anticancer efficacy of photodynamic therapy with hematoporphyrin-modified, doxorubicin-loaded nanoparticles in liver cancer. Journal of Photochemistry and Photobiology B: Biology 140, pages 49-56.
Crossref
Xiaolong Liang, Xiaoda Li, Lijia Jing, Xiuli Yue & Zhifei Dai. (2014) Theranostic porphyrin dyad nanoparticles for magnetic resonance imaging guided photodynamic therapy. Biomaterials 35:24, pages 6379-6388.
Crossref
Siew Hui Voon, Lik Voon Kiew, Hong Boon Lee, Siang Hui Lim, Mohamed Ibrahim Noordin, Anyanee Kamkaew, Kevin Burgess & Lip Yong Chung. (2014) In Vivo Studies of Nanostructure-Based Photosensitizers for Photodynamic Cancer Therapy. Small, pages n/a-n/a.
Crossref
Xiuli Yue & Zhifei Dai. (2014) Recent advances in liposomal nanohybrid cerasomes as promising drug nanocarriers. Advances in Colloid and Interface Science 207, pages 32-42.
Crossref
Mamoru Tanaka, Hiromi Kataoka, Shigenobu Yano, Hiromi Ohi, Kazuhiro Moriwaki, Haruo Akashi, Takahiro Taguchi, Noriyuki Hayashi, Shingo Hamano, Yoshinori Mori, Eiji Kubota, Satoshi Tanida & Takashi Joh. (2014) Antitumor Effects in Gastrointestinal Stromal Tumors Using Photodynamic Therapy with a Novel Glucose-Conjugated Chlorin. Molecular Cancer Therapeutics 13:4, pages 767-775.
Crossref
Leandro M.O. Lourenço, Maria G.P.M.S. Neves, José A.S. Cavaleiro & João P.C. Tomé. (2014) Synthetic approaches to glycophthalocyanines. Tetrahedron 70:17, pages 2681-2698.
Crossref
Elizabeth Huynh & Gang Zheng. (2014) Porphysome nanotechnology: A paradigm shift in lipid-based supramolecular structures. Nano Today 9:2, pages 212-222.
Crossref
Juan L. Vivero-Escoto, Daniel DeCillis, Laura Fritts & Daniel L. Vega. Porphyrin-based polysilsesquioxane nanoparticles to improve photodynamic therapy for cancer treatment. Porphyrin-based polysilsesquioxane nanoparticles to improve photodynamic therapy for cancer treatment.
Juan L. Vivero-Escoto & Daniel L. Vega. (2014) Stimuli-responsive protoporphyrin IX silica-based nanoparticles for photodynamic therapy in vitro. RSC Adv. 4:28, pages 14400-14407.
Crossref
Benjamin R. Ayres & Scott M. Reed. (2014) A minor lipid component of soy lecithin causes growth of triangular prismatic gold nanoparticles. Environ. Sci.: Nano 1:1, pages 37-44.
Crossref
Claudia Conte, Francesca Ungaro, Antonino Mazzaglia & Fabiana Quaglia. 2014. Nano-Oncologicals. Nano-Oncologicals 123 160 .
Sean Essex & Vladimir Torchilin. 2014. Focal Controlled Drug Delivery. Focal Controlled Drug Delivery 93 116 .
Flávia Arruda Portilho, Cláudio Eduardo deOliveira Cavalcanti, Ana Luisa Miranda-Vilela, Luciana Landim Carneiro Estevanato, João Paulo Figueiró Longo, Maria deFátimaMenezes Almeida Santos, Anamélia Lorenzetti Bocca, Olímpia Paschoal Martins, Andreza R Simioni, Paulo César Morais, Ricardo Bentes Azevedo, Antonio Claudio Tedesco & Zulmira GuerreroMarques Lacava. (2013) Antitumor activity of photodynamic therapy performed with nanospheres containing zinc-phthalocyanine. Journal of Nanobiotechnology 11:1.
Crossref
Paulina Skupin-Mrugalska, Jaroslaw Piskorz, Tomasz Goslinski, Jadwiga Mielcarek, Krystyna Konopka & Nejat Düzgüneş. (2013) Current status of liposomal porphyrinoid photosensitizers. Drug Discovery Today 18:15-16, pages 776-784.
Crossref
Daniela Pietrangeli, Angela Rosa, Sandra Ristori, Anna Salvati, Saverio Altieri & Giampaolo Ricciardi. (2013) Carboranyl-porphyrazines and derivatives for boron neutron capture therapy: From synthesis to in vitro tests. Coordination Chemistry Reviews 257:15-16, pages 2213-2231.
Crossref
Yu-Tsai Yang, Chin-Tin Chen & Tsuimin Tsai. (2013) Absorption and fluorescence spectral properties of hematoporphyrin in liposomes, micelles, and nanoparticles. Dyes and Pigments 96:3, pages 763-769.
Crossref
Sharif M. Abdelghany, Daniela Schmid, Jill Deacon, Jakub Jaworski, Francois Fay, Kirsty M. McLaughlin, Julie A. Gormley, James F. Burrows, Daniel B. Longley, Ryan F. Donnelly & Christopher J. Scott. (2013) Enhanced Antitumor Activity of the Photosensitizer meso -Tetra( N -methyl-4-pyridyl) Porphine Tetra Tosylate through Encapsulation in Antibody-Targeted Chitosan/Alginate Nanoparticles . Biomacromolecules 14:2, pages 302-310.
Crossref
Sisi Cui, Deyan Yin, Yuqi Chen, Yingfeng Di, Haiyan Chen, Yuxiang Ma, Samuel Achilefu & Yueqing Gu. (2012) In Vivo Targeted Deep-Tissue Photodynamic Therapy Based on Near-Infrared Light Triggered Upconversion Nanoconstruct . ACS Nano 7:1, pages 676-688.
Crossref
Jinfeng Zhang, Feifei An, Yanan Li, Caijun Zheng, Yinlong Yang, Xiujuan Zhang & Xiaohong Zhang. (2013) Simultaneous enhanced diagnosis and photodynamic therapy of photosensitizer-doped perylene nanoparticles via doping, fluorescence resonance energy transfer, and antenna effect. Chemical Communications 49:73, pages 8072.
Crossref
Saige Shi, Xianglong Zhu, Zengxia Zhao, Weijun Fang, Mei Chen, Yizhuan Huang & Xiaolan Chen. (2013) Photothermally enhanced photodynamic therapy based on mesoporous Pd@Ag@mSiO2 nanocarriers. Journal of Materials Chemistry B 1:8, pages 1133.
Crossref
E. Spyratou, M. Makropoulou, E.A. Mourelatou & C. Demetzos. (2012) Biophotonic techniques for manipulation and characterization of drug delivery nanosystems in cancer therapy. Cancer Letters 327:1-2, pages 111-122.
Crossref
Alyssa M. Master, Megan Livingston, Nancy L. Oleinick & Anirban Sen Gupta. (2012) Optimization of a Nanomedicine-Based Silicon Phthalocyanine 4 Photodynamic Therapy (Pc 4-PDT) Strategy for Targeted Treatment of EGFR-Overexpressing Cancers. Molecular Pharmaceutics 9:8, pages 2331-2338.
Crossref
Kinga Nawalany, Aleksandra Rusin, Mariusz Kepczynski, Piotr Filipczak, Marta Kumorek, Bartłomiej Kozik, Hana Weitman, Benjamin Ehrenberg, Zdzisław Krawczyk & Maria Nowakowska. (2012) Novel nanostructural photosensitizers for photodynamic therapy: In vitro studies. International Journal of Pharmaceutics 430:1-2, pages 129-140.
Crossref
Aspasia Petri, Eleni Alexandratou, Maria Kyriazi, Michail Rallis, Vassilios Roussis & Dido Yova. (2012) Combination of Fospeg-IPDT and a natural antioxidant compound prevents photosensitivity in a murine prostate cancer tumour model. Photodiagnosis and Photodynamic Therapy 9:2, pages 100-108.
Crossref
Zengxia Zhao, Yuning Han, Chenghong Lin, Dong Hu, Fang Wang, Xiaolan Chen, Zhong Chen & Nanfeng Zheng. (2012) Multifunctional Core–Shell Upconverting Nanoparticles for Imaging and Photodynamic Therapy of Liver Cancer Cells. Chemistry – An Asian Journal 7:4, pages 830-837.
Crossref
Behnoush Maherani, Elmira Arab-tehrany, Azadeh Kheirolomoom, Vadzim Reshetov, Marie José Stebe & Michel Linder. (2012) Optimization and characterization of liposome formulation by mixture design. The Analyst 137:3, pages 773-786.
Crossref
Vladimir Torchilin. 2012. Fundamentals and Applications of Controlled Release Drug Delivery. Fundamentals and Applications of Controlled Release Drug Delivery 289 328 .
Xiaolong Liang, Xiaoda Li, Xiuli Yue & Zhifei Dai. (2011) Conjugation of Porphyrin to Nanohybrid Cerasomes for Photodynamic Diagnosis and Therapy of Cancer. Angewandte Chemie International Edition 50:49, pages 11622-11627.
Crossref
Xiaolong Liang, Xiaoda Li, Xiuli Yue & Zhifei Dai. (2011) Conjugation of Porphyrin to Nanohybrid Cerasomes for Photodynamic Diagnosis and Therapy of Cancer. Angewandte Chemie 123:49, pages 11826-11831.
Crossref
Mathias O. Senge & Johan C. Brandt. (2011) Temoporfin (Foscan®, 5,10,15,20-Tetra(m-hydroxyphenyl)chlorin)-A Second-generation Photosensitizer†,‡. Photochemistry and Photobiology 87:6, pages 1240-1296.
Crossref
Boris Khlebtsov, Elizaveta Panfilova, Vitaly Khanadeev, Olga Bibikova, Georgy Terentyuk, Andrey Ivanov, Valentina Rumyantseva, Igor Shilov, Anastasia Ryabova, Victor Loshchenov & Nikolai G. Khlebtsov. (2011) Nanocomposites Containing Silica-Coated Gold–Silver Nanocages and Yb–2,4-Dimethoxyhematoporphyrin: Multifunctional Capability of IR-Luminescence Detection, Photosensitization, and Photothermolysis. ACS Nano 5:9, pages 7077-7089.
Crossref
Jialiang Zhang, Li Deng, Jianzhong Yao, Peng Gu, Feng Yang, Xiuxin Wang, Wei Liu, Yingying Zhang, Xingfa Ke, Xiaolong Jing & Jianming Chen. (2011) Synthesis and photobiological study of a novel chlorin photosensitizer BCPD-18MA for photodynamic therapy. Bioorganic & Medicinal Chemistry 19:18, pages 5520-5528.
Crossref
Cheng S. Jin & Gang Zheng. (2011) Liposomal nanostructures for photosensitizer delivery. Lasers in Surgery and Medicine 43:7, pages 734-748.
Crossref
L.A. Muehlmann, G.A. Joanitti, J.R. Silva, J.P.F. Longo & R.B. Azevedo. (2011) Liposomal photosensitizers: potential platforms for anticancer photodynamic therapy. Brazilian Journal of Medical and Biological Research 44:8, pages 729-737.
Crossref
B. N. Khlebtsov, E. V. Panfilova, V. A. Khanadeev, A. V. Markin, G. S. Terentyuk, V. D. Rumyantseva, A. V. Ivanov, I. P. Shilov & N. G. Khlebtsov. (2011) Composite multifunctional nanoparticles based on silica-coated gold-silver nanocages functionalized by Yb-hematoporphyrin. Nanotechnologies in Russia 6:7-8, pages 496-503.
Crossref
Sebastiaan A. H. J. de Visscher, Slávka Kaščáková, Henriëtte S. de Bruijn, Angélique van der Ploeg - van den Heuvel, Arjen Amelink, Henricus J. C. M. Sterenborg, Dominic J. Robinson, Jan L. N. Roodenburg & Max J. H. Witjes. (2011) Fluorescence localization and kinetics of mTHPC and liposomal formulations of mTHPC in the window-chamber tumor model. Lasers in Surgery and Medicine 43:6, pages 528-536.
Crossref
Flávio Figueira, José A.S. Cavaleiro & João P.C. Tomé. (2012) Silica nanoparticles functionalized with porphyrins and analogs for biomedical studies. Journal of Porphyrins and Phthalocyanines 15:07n08, pages 517-533.
Crossref
Jonathan F. Lovell, Cheng S. Jin, Elizabeth Huynh, Honglin Jin, Chulhong Kim, John L. Rubinstein, Warren C. W. Chan, Weiguo Cao, Lihong V. Wang & Gang Zheng. (2011) Porphysome nanovesicles generated by porphyrin bilayers for use as multimodal biophotonic contrast agents. Nature Materials 10:4, pages 324-332.
Crossref
Zhixiang Zhou, Lina Zhang, Huimin Liu, Qi Zhang, Boya Liu, Ping Ai, Hongtao Ma, Wei Liu, Zelin Li, Wang Sheng, Yi Zeng & Rugang Zhong. (2011) Photocytotoxicity of Hypocrellin B (HB) was Enhanced by Liposomalization in Vitro. International Journal of Toxicology 30:2, pages 174-180.
Crossref
Edyta Paszko, Carsten Ehrhardt, Mathias O. Senge, Dermot P. Kelleher & John V. Reynolds. (2011) Nanodrug applications in photodynamic therapy. Photodiagnosis and Photodynamic Therapy 8:1, pages 14-29.
Crossref
Chang-Keun Lim, Jiyoung Shin, Yong-Deok Lee, Jungahn Kim, Hoyong Park, Ick Chan Kwon & Sehoon Kim. (2011) Heavy-Atomic Construction of Photosensitizer Nanoparticles for Enhanced Photodynamic Therapy of Cancer. Small 7:1, pages 112-118.
Crossref
Fang Wang, Xiaolan Chen, Zengxia Zhao, Shaoheng Tang, Xiaoqing Huang, Chenghong Lin, Congbo Cai & Nanfeng Zheng. (2011) Synthesis of magnetic, fluorescent and mesoporous core-shell-structured nanoparticles for imaging, targeting and photodynamic therapy. Journal of Materials Chemistry 21:30, pages 11244.
Crossref
Fernanda Hidemi Sakamoto & Richard Rox Anderson. 2011. Lasers in Dermatology and Medicine. Lasers in Dermatology and Medicine 417 423 .
Ryan F. Donnelly, Desmond I.J. Morrow, Francois Fay, Christopher J. Scott, Sharif Abdelghany, Raghu Raj Thakur Singh, Martin J. Garland & A. David Woolfson. (2010) Microneedle-mediated intradermal nanoparticle delivery: Potential for enhanced local administration of hydrophobic pre-formed photosensitisers. Photodiagnosis and Photodynamic Therapy 7:4, pages 222-231.
Crossref
Sreeram Kalarical Janardhanan, Shoba Narayan, Gopal Abbineni, Andrew Hayhurst & Chuanbin Mao. (2010) Architectonics of Phage-Liposome Nanowebs as Optimized Photosensitizer Vehicles for Photodynamic Cancer Therapy. Molecular Cancer Therapeutics 9:9, pages 2524-2535.
Crossref
Byoung-chan Bae & Kun Na. (2010) Self-quenching polysaccharide-based nanogels of pullulan/folate-photosensitizer conjugates for photodynamic therapy. Biomaterials 31:24, pages 6325-6335.
Crossref
Zhengwen Xiao, Richard J. Owen, Weiyang Liu, John Tulip, Kevin Brown, Thomas Woo & Ronald B. Moore. (2010) Lipophilic photosensitizer administration via the prostate arteries for photodynamic therapy of the canine prostate. Photodiagnosis and Photodynamic Therapy 7:2, pages 106-114.
Crossref
M. Nisnevitch, F. Nakonechny & Y. Nitzan. (2010) Photodynamic antimicrobial chemotherapy by liposome-encapsulated water-soluble photosensitizers. Russian Journal of Bioorganic Chemistry 36:3, pages 363-369.
Crossref
Alyssa M. Master, Myriam E. Rodriguez, Malcolm E. Kenney, Nancy L. Oleinick & Anirban Sen Gupta. (2010) Delivery of the photosensitizer Pc 4 in PEG–PCL micelles for in vitro PDT studies. Journal of Pharmaceutical Sciences 99:5, pages 2386-2398.
Crossref
Xiaoxiao He, Xu Wu, Kemin Wang, Bihua Shi & Luo Hai. (2009) Methylene blue-encapsulated phosphonate-terminated silica nanoparticles for simultaneous in vivo imaging and photodynamic therapy. Biomaterials 30:29, pages 5601-5609.
Crossref
Dzmitry Kachatkou, Siarhei Sasnouski, Vladimir Zorin, Tatyana Zorina, Marie-Ange D’Hallewin, Francois Guillemin & Lina Bezdetnaya. (2009) Unusual Photoinduced Response of mTHPC Liposomal Formulation (Foslip). Photochemistry and Photobiology 85:3, pages 719-724.
Crossref
Ling Hu, Bei Huang, Man-man Zuo, Rui-yong Guo & Hao Wei. (2008) Preparation of the phycoerythrin subunit liposome in a photodynamic experiment on liver cancer cells. Acta Pharmacologica Sinica 29:12, pages 1539-1546.
Crossref
Minfang ZhangTatsuya MurakamiKumiko AjimaKunihiro TsuchidaAtula S. D. SandanayakaOsamu ItoSumio Iijima & Masako Yudasaka. (2008) Fabrication of ZnPc/protein nanohorns for double photodynamic and hyperthermic cancer phototherapy. Proceedings of the National Academy of Sciences 105:39, pages 14773-14778.
Crossref
Ángeles Juarranz, Pedro Jaén, Francisco Sanz-Rodríguez, Jesús Cuevas & Salvador González. (2008) Photodynamic therapy of cancer. Basic principles and applications. Clinical and Translational Oncology 10:3, pages 148-154.
Crossref
T. Minko, J. J. Khandare, A. A. Vetcher, V. A. Soldatenkov, O. B. Garbuzenko, M. Saad & V. P. Pozharov. 2008. Multifunctional Pharmaceutical Nanocarriers. Multifunctional Pharmaceutical Nanocarriers 309 336 .
Buhong Li, Eduardo H. Moriyama, Fugang Li, Mark T. Jarvi, Christine Allen & Brian C. Wilson. (2007) Diblock Copolymer Micelles Deliver Hydrophobic Protoporphyrin IX for Photodynamic Therapy. Photochemistry and Photobiology 83:6, pages 1505-1512.
Crossref
Sarika Verma, Gregory M. Watt, Zhiming Mai & Tayyaba Hasan. (2007) Strategies for Enhanced Photodynamic Therapy Effects. Photochemistry and Photobiology 83:5, pages 996-1005.
Crossref
Gang Zheng, Juan Chen, Klara Stefflova, Mark Jarvi, Hui Li & Brian C. Wilson. (2007) Photodynamic molecular beacon as an activatable photosensitizer based on protease-controlled singlet oxygen quenching and activation. Proceedings of the National Academy of Sciences 104:21, pages 8989-8994.
Crossref
G. Ramachandra Reddy, Mahaveer S. Bhojani, Patrick McConville, Jonathan Moody, Bradford A. Moffat, Daniel E. Hall, Gwangseong Kim, Yong-Eun L. Koo, Michael J. Woolliscroft, James V. Sugai, Timothy D. Johnson, Martin A. Philbert, Raoul Kopelman, Alnawaz Rehemtulla & Brian D. Ross. (2006) Vascular Targeted Nanoparticles for Imaging and Treatment of Brain Tumors. Clinical Cancer Research 12:22, pages 6677-6686.
Crossref
Anagha Vaidya, Yongen Sun, Tianyi Ke, Eun‐Kee Jeong & Zheng‐Rong Lu. (2006) Contrast enhanced MRI‐guided photodynamic therapy for site‐specific cancer treatment. Magnetic Resonance in Medicine 56:4, pages 761-767.
Crossref
Nicolas Solban, Imran Rizvi & Tayyaba Hasan. (2006) Targeted photodynamic therapy. Lasers in Surgery and Medicine 38:5, pages 522-531.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.