Lysosome-targeted photodynamic treatment induces primary keratinocyte differentiation

Neringa Daugelaviciene*, Pranas Grigaitis, Liepa Gasiule, Daiva Dabkeviciene, Urte Neniskyte, Ausra Sasnauskiene

*Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

97 Downloads (Pure)

Abstract

Photodynamic therapy is an attractive technique for various skin tumors and non-cancerous skin lesions. However, while the aim of photodynamic therapy is to target and damage only the malignant cells, it unavoidably affects some of the healthy cells surrounding the tumor as well. However, data on the effects of PDT to normal cells are scarce, and the characterization of the pathways activated after the photodamage of normal cells may help to improve clinical photodynamic therapy. In our study, primary human epidermal keratinocytes were used to evaluate photodynamic treatment effects of photosensitizers with different subcellular localization. We compared the response of keratinocytes to lysosomal photodamage induced by phthalocyanines, aluminum phthalocyanine disulfonate (AlPcS2a) or aluminum phthalocyanine tetrasulfonate (AlPcS4), and cellular membrane photodamage by m-tetra(3-hydroxyphenyl)-chlorin (mTHPC). Our data showed that mTHPC-PDT promoted autophagic flux, whereas lysosomal photodamage induced by aluminum phthalocyanines evoked differentiation and apoptosis. Photodamage by AlPcS2a, which is targeted to lysosomal membranes, induced keratinocyte differentiation and apoptosis more efficiently than AlPcS4, which is targeted to lysosomal lumen. Computational analysis of the interplay between these molecular pathways revealed that keratin 10 is the coordinating molecular hub of primary keratinocyte differentiation, apoptosis and autophagy.

Original languageEnglish
Article number112183
Pages (from-to)1-12
Number of pages12
JournalJournal of Photochemistry and Photobiology B: Biology
Volume218
Early online date29 Mar 2021
DOIs
Publication statusPublished - May 2021

Bibliographical note

Funding Information:
The present study was supported by European Social Fund under National Integrated Programme Biotechnology & Biopharmacy , grant VP1-3.1-ŠMM- 08-K01-005 .

Funding Information:
The present study was supported by European Social Fund under National Integrated Programme Biotechnology & Biopharmacy, grant VP1-3.1-?MM- 08-K01-005.

Publisher Copyright:
© 2021 Elsevier B.V.

Funding

The present study was supported by European Social Fund under National Integrated Programme Biotechnology & Biopharmacy , grant VP1-3.1-ŠMM- 08-K01-005 . The present study was supported by European Social Fund under National Integrated Programme Biotechnology & Biopharmacy, grant VP1-3.1-?MM- 08-K01-005.

Keywords

  • AlPcS
  • Keratin 10
  • Keratinocyte differentiation
  • Lysosome
  • mTHPC
  • Photodynamic treatment
  • Primary human epidermal keratinocytes

Fingerprint

Dive into the research topics of 'Lysosome-targeted photodynamic treatment induces primary keratinocyte differentiation'. Together they form a unique fingerprint.

Cite this