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Towards Dual and Targeted Cancer Therapy with Novel Phthalocyanine-based Photosensitizers (Hardcover, 2013 ed.): Janet T. F. Lau Towards Dual and Targeted Cancer Therapy with Novel Phthalocyanine-based Photosensitizers (Hardcover, 2013 ed.)
Janet T. F. Lau
R3,415 Discovery Miles 34 150 Ships in 12 - 17 working days

Janet Lau's thesis describes her studies into the use of phthalocyanine-based photosensitizers in combined chemo- and photodynamic therapy (PDT) and targeted PDT. In order to carry out this study, Lau uses several approaches: conjugation with a chemotherapeutic oxaliplatin derivative, use of a polyamine ligand 2 with a view to targeting the polyamine transporters over-expressed in tumor cells, and employment of a quencher that can inhibit their photodynamic activity but can still be removed under a tumor-associated environment such as low pH and high thiol concentration. This thesis reports dual activatable photosensitizers for the first time. Overall the studies included are original and the effects have been well demonstrated at the cellular level. The work in this thesis is of much current interest and importance, and can pave foundation for further developments. Accordingly, part of the results has been published in prestigious scientific journals.

Towards Dual and Targeted Cancer Therapy with Novel Phthalocyanine-based Photosensitizers (Paperback, Softcover reprint of the... Towards Dual and Targeted Cancer Therapy with Novel Phthalocyanine-based Photosensitizers (Paperback, Softcover reprint of the original 1st ed. 2013)
Janet T. F. Lau
R3,475 Discovery Miles 34 750 Ships in 10 - 15 working days

Janet Lau's thesis describes her studies into the use of phthalocyanine-based photosensitizers in combined chemo- and photodynamic therapy (PDT) and targeted PDT. In order to carry out this study, Lau uses several approaches: conjugation with a chemotherapeutic oxaliplatin derivative, use of a polyamine ligand 2 with a view to targeting the polyamine transporters over-expressed in tumor cells, and employment of a quencher that can inhibit their photodynamic activity but can still be removed under a tumor-associated environment such as low pH and high thiol concentration. This thesis reports dual activatable photosensitizers for the first time. Overall the studies included are original and the effects have been well demonstrated at the cellular level. The work in this thesis is of much current interest and importance, and can pave foundation for further developments. Accordingly, part of the results has been published in prestigious scientific journals.

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