3D Skeletal Scaffolds of Marine Keratosan Demosponges Origin as Renewable Sources for Bioinspiration in Modern Structural Biomimetics and Tissue Engineering.

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Autori principali: Ehrlich, Hermann, Litowczenko, Jagoda, Szczurek, Anna, Voronkina, Alona, Pakuła, Daria, Frydrych, Miłosz, Przekop, Robert E, Smirnov, Igor, Petrov, Stanislav, Sieliverstov, Ihor, Kotula, Martyna, Kubiak, Anita, Leśniewski, Bartosz, Dziedzic, Izabela, Muzychka, Liubov, Stöker, Hartmut, Souiba, Zineb, Springer, Armin, Heimler, Korbinian, Vogt, Carla, Flont, Adelajda, Przymuszała, Marta, Tsurkan, Dmitry, Nowacki, Krzysztof
Natura: Artículo científico
Lingua:en
Pubblicazione: Biomimetics (Basel, Switzerland) 2026
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author Ehrlich, Hermann
Litowczenko, Jagoda
Szczurek, Anna
Voronkina, Alona
Pakuła, Daria
Frydrych, Miłosz
Przekop, Robert E
Smirnov, Igor
Petrov, Stanislav
Sieliverstov, Ihor
Kotula, Martyna
Kubiak, Anita
Leśniewski, Bartosz
Dziedzic, Izabela
Muzychka, Liubov
Stöker, Hartmut
Souiba, Zineb
Springer, Armin
Heimler, Korbinian
Vogt, Carla
Flont, Adelajda
Przymuszała, Marta
Tsurkan, Dmitry
Nowacki, Krzysztof
author_facet Ehrlich, Hermann
Litowczenko, Jagoda
Szczurek, Anna
Voronkina, Alona
Pakuła, Daria
Frydrych, Miłosz
Przekop, Robert E
Smirnov, Igor
Petrov, Stanislav
Sieliverstov, Ihor
Kotula, Martyna
Kubiak, Anita
Leśniewski, Bartosz
Dziedzic, Izabela
Muzychka, Liubov
Stöker, Hartmut
Souiba, Zineb
Springer, Armin
Heimler, Korbinian
Vogt, Carla
Flont, Adelajda
Przymuszała, Marta
Tsurkan, Dmitry
Nowacki, Krzysztof
Ehrlich, Hermann
Litowczenko, Jagoda
Szczurek, Anna
Voronkina, Alona
Pakuła, Daria
Frydrych, Miłosz
Przekop, Robert E
Smirnov, Igor
Petrov, Stanislav
Sieliverstov, Ihor
Kotula, Martyna
Kubiak, Anita
Leśniewski, Bartosz
Dziedzic, Izabela
Muzychka, Liubov
Stöker, Hartmut
Souiba, Zineb
Springer, Armin
Heimler, Korbinian
Vogt, Carla
Flont, Adelajda
Przymuszała, Marta
Tsurkan, Dmitry
Nowacki, Krzysztof
collection PubMed - marine biology
contents 3D Skeletal Scaffolds of Marine Keratosan Demosponges Origin as Renewable Sources for Bioinspiration in Modern Structural Biomimetics and Tissue Engineering. Ehrlich, Hermann Litowczenko, Jagoda Szczurek, Anna Voronkina, Alona Pakuła, Daria Frydrych, Miłosz Przekop, Robert E Smirnov, Igor Petrov, Stanislav Sieliverstov, Ihor Kotula, Martyna Kubiak, Anita Leśniewski, Bartosz Dziedzic, Izabela Muzychka, Liubov Stöker, Hartmut Souiba, Zineb Springer, Armin Heimler, Korbinian Vogt, Carla Flont, Adelajda Przymuszała, Marta Tsurkan, Dmitry Nowacki, Krzysztof This experimental review discusses evolutionarily approved, naturally pre-designed skeletal architectures of marine keratosan sponges in the form of 3D scaffolds, which have garnered increasing interest in the fields of structural and functional biomimetics as well as in tissue engineering. It has been demonstrated that these renewable, ready-to-use natural scaffolds can undergo further modifications through specialized treatments such as metallization and carbonization, enabling the creation of functional biomaterials while maintaining the species-specific hierarchical 3D structure. The study presented remarkable findings, including the demonstration of the unique shape-memory behavior of these scaffolds even after two months of exposure to high mechanical pressure at temperatures exceeding 100 °C. Additionally, the cytocompatibility and biological performance of natural and carbonized (1200 °C) spongin scaffolds, derived from selected bath sponges, were comparatively investigated with respect to growth and proliferation of human MG-63 osteoblastic cells. Understanding whether carbonization universally enhances osteogenic capabilities or selectively amplifies the inherent architectural advantages remains to be critical for the rational design of sponge-derived scaffolds in bone and structural tissue engineering applications.
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institution PubMed
language en
publishDate 2026
publisher Biomimetics (Basel, Switzerland)
record_format pubmed
spellingShingle 3D Skeletal Scaffolds of Marine Keratosan Demosponges Origin as Renewable Sources for Bioinspiration in Modern Structural Biomimetics and Tissue Engineering.
Ehrlich, Hermann
Litowczenko, Jagoda
Szczurek, Anna
Voronkina, Alona
Pakuła, Daria
Frydrych, Miłosz
Przekop, Robert E
Smirnov, Igor
Petrov, Stanislav
Sieliverstov, Ihor
Kotula, Martyna
Kubiak, Anita
Leśniewski, Bartosz
Dziedzic, Izabela
Muzychka, Liubov
Stöker, Hartmut
Souiba, Zineb
Springer, Armin
Heimler, Korbinian
Vogt, Carla
Flont, Adelajda
Przymuszała, Marta
Tsurkan, Dmitry
Nowacki, Krzysztof
3D Skeletal Scaffolds of Marine Keratosan Demosponges Origin as Renewable Sources for Bioinspiration in Modern Structural Biomimetics and Tissue Engineering. Ehrlich, Hermann Litowczenko, Jagoda Szczurek, Anna Voronkina, Alona Pakuła, Daria Frydrych, Miłosz Przekop, Robert E Smirnov, Igor Petrov, Stanislav Sieliverstov, Ihor Kotula, Martyna Kubiak, Anita Leśniewski, Bartosz Dziedzic, Izabela Muzychka, Liubov Stöker, Hartmut Souiba, Zineb Springer, Armin Heimler, Korbinian Vogt, Carla Flont, Adelajda Przymuszała, Marta Tsurkan, Dmitry Nowacki, Krzysztof This experimental review discusses evolutionarily approved, naturally pre-designed skeletal architectures of marine keratosan sponges in the form of 3D scaffolds, which have garnered increasing interest in the fields of structural and functional biomimetics as well as in tissue engineering. It has been demonstrated that these renewable, ready-to-use natural scaffolds can undergo further modifications through specialized treatments such as metallization and carbonization, enabling the creation of functional biomaterials while maintaining the species-specific hierarchical 3D structure. The study presented remarkable findings, including the demonstration of the unique shape-memory behavior of these scaffolds even after two months of exposure to high mechanical pressure at temperatures exceeding 100 °C. Additionally, the cytocompatibility and biological performance of natural and carbonized (1200 °C) spongin scaffolds, derived from selected bath sponges, were comparatively investigated with respect to growth and proliferation of human MG-63 osteoblastic cells. Understanding whether carbonization universally enhances osteogenic capabilities or selectively amplifies the inherent architectural advantages remains to be critical for the rational design of sponge-derived scaffolds in bone and structural tissue engineering applications.
title 3D Skeletal Scaffolds of Marine Keratosan Demosponges Origin as Renewable Sources for Bioinspiration in Modern Structural Biomimetics and Tissue Engineering.
url https://pubmed.ncbi.nlm.nih.gov/41744570/