A Review of Phototoxic Plants, Their Phototoxic Metabolites, and Possible Developments as Photosensitizers

Author:

Petit Raphaëlle1,Izambart Jonathan1,Guillou Mathieu1,da Silva Almeida Jackson Roberto Guedes23,de Oliveira Junior Raimundo Gonçalves134,Sol Vincent35,Ouk Tan‐Sothea35,Grougnet Raphaël34,Quintans‐Júnior Lucindo José36,Sitarek Przemyslaw7,Thiéry Valérie13,Picot Laurent13ORCID

Affiliation:

1. UMR CNRS 7266 LIENSs La Rochelle Université UMR CNRS 7266 LIENSs Curie B10 Faculté des Sciences et Technologies Avenue Michel Crépeau 17042 La Rochelle France.

2. NEPLAME Universidade Federal do Vale do São Francisco 56304-205 Petrolina Pernambuco Brazil

3. Franco-Brazilian Network on Natural Products FB2NP.

4. UMR CNRS 8038 CiTCoM Université Paris Cité 75006 Paris France

5. LABCiS UR 22722 Université de Limoges 87000 Limoges France

6. LANEF Universidade Federal de Sergipe 49100-000 São Cristóvão Sergipe Brazil

7. Department of Medical Biology Medical University of Lodz Łódź Poland

Abstract

AbstractThis study provides a comprehensive overview of the current knowledge regarding phototoxic terrestrial plants and their phototoxic and photosensitizing metabolites. Within the 435,000 land plant species, only around 250 vascular plants have been documented as phototoxic or implicated in phototoxic occurrences in humans and animals. This work compiles a comprehensive catalog of these phototoxic plant species, organized alphabetically based on their taxonomic family. The dataset encompasses meticulous details including taxonomy, geographical distribution, vernacular names, and information on the nature and structure of their phototoxic and photosensitizing molecule(s). Subsequently, this study undertook an in‐depth investigation into phototoxic molecules, resulting in the compilation of a comprehensive and up‐to‐date list of phytochemicals exhibiting phototoxic or photosensitizing activity synthesized by terrestrial plants. For each identified molecule, an extensive review was conducted, encompassing discussions on its phototoxic activity, chemical family, occurrence in plant families or species, distribution within different plant tissues and organs, as well as the biogeographical locations of the producer species worldwide. The analysis also includes a thorough discussion on the potential use of these molecules for the development of new photosensitizers that could be used in topical or injectable formulations for antimicrobial and anticancer phototherapy as well as manufacturing of photoactive devices.

Publisher

Wiley

Subject

Molecular Biology,Molecular Medicine,General Chemistry,Biochemistry,General Medicine,Bioengineering

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