2022
DOI: 10.3390/biomedicines10112945
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Eumelanin from the Black Soldier Fly as Sustainable Biomaterial: Characterisation and Functional Benefits in Tissue-Engineered Composite Scaffolds

Abstract: An optimized extraction protocol for eumelanins from black soldier flies (BSF-Eumel) allows an in-depth study of natural eumelanin pigments, which are a valuable tool for the design and fabrication of sustainable scaffolds. Here, water-soluble BSF-Eumel sub-micrometer colloidal particles were used as bioactive signals for developing a composite biomaterial ink for scaffold preparation. For this purpose, BSF-Eumel was characterized both chemically and morphologically; moreover, biological studies were carried o… Show more

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Cited by 12 publications
(9 citation statements)
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“…To this aim, GGMA (2 and 4% ( w / v )) was dissolved in di H 2 O in a lower volume, containing Irgacure, and the complementary volume of BSF-Eumel, diluted in di H 2 O, was directly added to the polymer solution, to reach the final concentration of 0.3125 mg/mL. The solution was mixed at room temperature, until a uniform yellowish hydrogel was formed [ 41 ].…”
Section: Methodsmentioning
confidence: 99%
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“…To this aim, GGMA (2 and 4% ( w / v )) was dissolved in di H 2 O in a lower volume, containing Irgacure, and the complementary volume of BSF-Eumel, diluted in di H 2 O, was directly added to the polymer solution, to reach the final concentration of 0.3125 mg/mL. The solution was mixed at room temperature, until a uniform yellowish hydrogel was formed [ 41 ].…”
Section: Methodsmentioning
confidence: 99%
“…Thanks to a unique set of physico-chemical properties, eumelanins have found many applications as a functional biomaterial in different sectors, from organic (bio)electronics [ 33 , 34 , 35 , 36 ] to energy storage [ 37 ], photo- and radio-protection and regenerative medicine [ 38 , 39 ]. Novel insights indicate that eumelanin can specifically support bone tissue engineering [ 40 , 41 ]. Specifically, eumelanin has been highlighted to enhance the physico-chemical features of bone substitutes by stimulating stem cell and osteoblast functions and promoting the biomineralization process [ 40 ].…”
Section: Introductionmentioning
confidence: 99%
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“…This bottom-up approach has been less successful for understanding the complex electronic properties of melanin. In fact, a “chemical disorder model” was proposed that explains the melanin’s broad and featureless absorption spectrum in terms of a heterogeneous mix of structural subunits. , Even bottom-up synthetic studies starting from well-defined precursors have yielded diverse chemically complex melanins, leading to the suggestion illustrated in Scheme b that chemical disorder can include the monomer type; the oligomer size and structure; the electronic (i.e., redox) states; and the supramolecular organization. An alternative, top-down, experimental approach focuses on functional properties (e.g., metal binding, , optoelectronic , and energy storage ,, ).…”
Section: Introductionmentioning
confidence: 99%
“…Here, we used an operando approach illustrated in Scheme c to simultaneously monitor the molecular-level changes that occur when electrons are “flowing” through melanin. For these studies, we used a soluble natural melanin extracted from the cuticle of the black soldier fly (Hermetia illucens; BSF). , This BSF melanin is synthesized during insect sclerotization (i.e., hardening), and thus, its biological source and function are different from melanosome-generated melanins. Further, this BSF melanin is obtained from invertebrate biomass followed by the demineralization using acid treatment and the deproteination using a strong base treatment, which may alter its native structure .…”
Section: Introductionmentioning
confidence: 99%