Chemical Variability and Biological Potential of <i>Cornu aspersum</i> Mucus as a Source for the Development of New Cosmetic and Pharmaceutical Products. [PDF]
Hudz N +8 more
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Effects of cuproptosis and its application in inflammatory bowel disease (Review). [PDF]
Chen L +5 more
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Convergent expansions of keystone gene families drive metabolic innovation in Saccharomycotina yeasts. [PDF]
David KT +12 more
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Toxic effects of Helix aspersa snail egg hydrolyzates obtained by static in vitro digestion on Caco-2 colorectal adenocarcinoma cells. [PDF]
Matusiewicz M +5 more
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Biological Properties of the Mucus and Eggs of Helix aspersa Müller as a Potential Cosmetic and Pharmaceutical Raw Material: A Preliminary Study. [PDF]
Herman A +3 more
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Structural and Evolutionary Relationships of Melanin Cascade Proteins in Cnidarian Innate Immunity. [PDF]
Van Buren EW +6 more
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Structure of panulirus interruptus hemocyanin and evolution of arthropod hemocyanin
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Hemocyanins are used as immunomodulators in clinical applications because they induce a strong Th1-biased cell-mediated immunity, which has beneficial effects. They are multiligand glycosylated molecules with abundant and complex mannose-rich structures.
Fabian Salazar +2 more
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Bivalve hemocyanins—a comparison with other molluscan hemocyanins
Comparative Biochemistry and Physiology Part B: Comparative Biochemistry, 19881. The hemocyanins of the protobranch bivalves Yoldia thraciaeformis, Yoldia limatula and Acila castrensis have absorption spectra similar to other hemocyanins. 2. Hemocyanins from all three bivalves appear as six-tiered cylinders in the electron microscope (30-32 nm in diameter by 34-38 nm in height). Yoldia thraciaeformis and A.
Edgar Meyhöfer +2 more
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Instead of the red blood of vertebrates, most molluscs have blue hemolymph containing hemocyanin, a type-3 copper-containing protein. The hemoglobin of vertebrate blood is replaced in most molluscs with hemocyanin, which plays the role of an oxygen transporter.
Sanae, Kato +2 more
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