A Remarkable Difference in Pharmacokinetics of Fluorinated Versus Iodinated Photosensitizers Derived from Chlorophyll-a and a Direct Correlation between the Tumor Uptake and Anti-Cancer Activity

Author:

Pandurang Taur Prakash1,Cacaccio Joseph2,Durrani Farukh A.2,Dukh Mykhaylo2,Alsaleh Ajyal Z.3,Sajjad Munawwar4,D’Souza Francis3ORCID,Kumar Dalip1,Pandey Ravindra K.2

Affiliation:

1. Department of Chemistry, Birla Institute of Technology and Science, Pilani 333031, India

2. Photodynamic Therapy Center, Cell Stress Biology, Roswell Park Comprehensive Cancer Center, Buffalo, NY 14263, USA

3. Department of Chemistry, University of North Texas, 1155 Union Circle, Denton, TX 76203, USA

4. Department of Nuclear Medicine, University at Buffalo, The State University of New York, Buffalo, NY 14221, USA

Abstract

To investigate and compare the pharmacokinetic profile and anti-cancer activity of fluorinated and iodinated photosensitizers (PSs), the 3-(1′-(o-fluorobenzyloxy)ethyl pyropheophorbide and the corresponding meta-(m-) and para (p-) fluorinated analogs (methyl esters and carboxylic acids) were synthesized. Replacing iodine with fluorine in PSs did not make any significant difference in fluorescence and singlet oxygen (a key cytotoxic agent) production. The nature of the delivery vehicle and tumor types showed a significant difference in uptake and long-term cure by photodynamic therapy (PDT), especially in the iodinated PS. An unexpected difference in the pharmacokinetic profiles of fluorinated vs. iodinated PSs was observed. At the same imaging parameters, the fluorinated PSs showed maximal tumor uptake at 2 h post injection of the PS, whereas the iodinated PS gave the highest uptake at 24 h post injection. Among all isomers, the m-fluoro PS showed the best in vivo anti-cancer activity in mice bearing U87 (brain) or bladder (UMUC3) tumors. A direct correlation between the tumor uptake and PDT efficacy was observed. The higher tumor uptake of m-fluoro PS at two hours post injection provides a solid rationale for developing the corresponding 18F-agent (half-life 110 min only) for positron imaging tomography (PET) of those cancers (e.g., bladder, prostate, kidney, pancreas, and brain) where 18F-FDG-PET shows limitations.

Funder

NIH, SSF, DST, BITS Pilani, and Photolitec, LLC

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference41 articles.

1. The leading causes of death in the US for 2020;Ahmed;JAMA,2021

2. Racial differences in cancer susceptibility and survival: More than the color of the skin?;Ozdemir;Trends Cancer,2017

3. Estimated Projection of US Cancer Incidence and Death to 2040;Rahib;JAMA Netw. Open,2021

4. Surgical attitude in premalignant lesions and malignant tumors of the lower lip;Calcaianu;J. Med. Life,2015

5. Pre-cancerous lesions in the oral and maxillofacial region: A literature review with special focus on etiopathogenesis;Irani;Iran J. Pathol.,2016

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