Photocrosslinking of hyaluronic acid-based hydrogels through biotissue barriers

Photocrosslinkable hydrogels based on hyaluronic acid are promising biomaterials high in demand in tissue engineering. Typically, hydrogels are photocured under the action of UV or blue light strongly absorbed by biotissues, which limits prototyping under living organism conditions. To overcome this limitation, we propose the derivatives of well-known photosensitizers, namely chlorin p6, chlorin e6 and phthalocyanine, as those for radical polymerization in the transparency window of biotissues. Taking into account the efficiency of radical generation and dark and light cell toxicity, we evaluated water miscible pyridine phthalocyanine as a promising initiator for the intravital hydrogel photoprinting of hyaluronic acid glycidyl methacrylate (HAGM) under irradiation near 670 nm. Coinitiators (dithiothreitol or 2-mercap-toethanol) reduce the irradiation dose required for HAGM crosslinking from ∼405 J cm−2 to 80 J cm−2. Patterning by direct laser writing using a scanning 675 nm laser beam was performed to demonstrate the formation of complex shape structures. Young’s moduli typical of soft tissue (∼270–460 kPa) were achieved for crosslinked hydrogels. The viability of human keratinocytes HaCaT cells within the photocrosslinking process was shown. To demonstrate scaffolding across the biotissue barrier, the subcutaneously injected photocomposition was crosslinked in BALB/c mice. The safety of the irradiation dose of 660–675 nm light (100 mW cm−2, 15 min) and the non-toxicity of the hydrogel components were confirmed by histomorphologic analysis. The intravitally photocrosslinked scaffolds maintained their shape and size for at least one month, accompanied by slow biodegradation. We conclude that the proposed technology provides a lucrative opportunity for minimally invasive scaffold formation through biotissue barriers. © 2025 Elsevier B.V., All rights reserved.

Авторы
Savelyev Alexander G. 1 , Sochilina A.V. 1, 2, 3 , Babayeva Gulalek 4, 5 , Nikolaeva Maria E. 3 , Kuziaeva Valeriia I. 2 , Prostyakova Anna I. 2 , Sergeev Igor S. 6 , Gorin Dmitry A. 6 , Khaydukov Evgeniy V. 1, 2, 3, 7 , Generalova A.N. 1, 2 , Akasov Roman A. 1, 2, 3
Номер выпуска
4
Язык
English
Страницы
980-992
Статус
Published
Том
13
Год
2024
Организации
  • 1 National Research Centre "Kurchatov Institute", Moscow, Russian Federation
  • 2 Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry of the Russian Academy of Sciences, Moscow, Russian Federation
  • 3 Moscow Pedagogical State University, Moscow, Russian Federation
  • 4 Blokhin National Medical Research Center of Oncology, Ministry of Health, Moscow, Russian Federation
  • 5 Research Institute of Molecular and Cellular Medicine, RUDN University, Moscow, Russian Federation
  • 6 Center for Photonic Science and Engineering, Skolkovo Institute of Science and Technology, Moscow, Russian Federation
  • 7 Mendeleev University of Chemical Technology of Russia, Moscow, Russian Federation
Ключевые слова
Atom transfer radical polymerization; Cell death; Crosslinking; Hyaluronic acid; Mammals; Scaffolds; Scaffolds (biology); Tissue; Biotissues; Blue light; Condition; Glycidyl methacrylate; Irradiation dose; Living organisms; Photo-cross-linkings; Photosensitiser; Tissues engineerings; UV-light; Laser beams; hydrogel; methacrylic acid; phthalocyanine derivative; biomaterial; chlorophyllide; cross linking reagent; epoxide; indole derivative; isoindole derivative; photosensitizing agent; phthalocyanine; phytochlorin; porphyrin; Article; cross linking; cytotoxicity; HaCat cell line; quantum yield; soft tissue; animal; Bagg albino mouse; cell line; cell survival; chemistry; drug effect; human; light; mouse; photochemistry; tissue engineering; Animals; Biocompatible Materials; Chlorophyllides; Cross-Linking Reagents; Epoxy Compounds; HaCaT Cells; Humans; Hydrogels; Indoles; Isoindoles; Methacrylates; Mice; Mice, Inbred BALB C; Photochemical Processes; Photosensitizing Agents; Porphyrins
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