Porphyrinoid-based photosensitizers for diagnostic and therapeutic applications: An update

Author:

Aggarwal Amit1,Samaroo Diana23,Jovanovic Ivana Radivojevic2,Singh Sunaina1,Tuz Michelle Paola1,Mackiewicz Marilyn Rampersad4

Affiliation:

1. LaGuardia Community College, 31-10 Thomson Ave., Long Island City, NY 11101, USA

2. New York City College of Technology, Department of Chemistry, 285 Jay Street, Brooklyn, NY 11201, USA

3. Graduate Center, 365 5th Ave, New York, NY 10016, USA

4. Portland State University, Department of Chemistry, 1719 SW 10th Ave, Portland, OR 97201, USA

Abstract

Porphyrin-based molecules are actively studied as dual function theranostics: fluorescence-based imaging for diagnostics and fluorescence-guided therapeutic treatment of cancers. The intrinsic fluorescent and photodynamic properties of the bimodal molecules allows for these theranostic approaches. Several porphyrinoids bearing both hydrophilic and/or hydrophobic units at their periphery have been developed for the aforementioned applications, but better tumor selectivity and high efficacy to destroy tumor cells is always a key setback for their use. Another issue related to their effective clinical use is that, most of these chromophores form aggregates under physiological conditions. Nanomaterials that are known to possess incredible properties that cannot be achieved from their bulk systems can serve as carriers for these chromophores. Porphyrinoids, when conjugated with nanomaterials, can be enabled to perform as multifunctional nanomedicine devices. The integrated properties of these porphyrinoid-nanomaterial conjugated systems make them useful for selective drug delivery, theranostic capabilities, and multimodal bioimaging. This review highlights the use of porphyrins, chlorins, bacteriochlorins, phthalocyanines and naphthalocyanines as well as their multifunctional nanodevices in various biomedical theranostic platforms.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Chemistry

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