This study investigated the effects of polysaccharides from Enteromorpha prolifera (PEP) on glucose metabolism in a rat model of diabetes mellitus (DM). PEP (0, 150, 300, and 600 mg/kg) was administered intragastrically to rats for four weeks. After treatment, fasting blood glucose (FBG) and insulin (INS) levels were measured, and the insulin sensitivity index (ISI) was calculated.

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In the current work, a green‐tide waste, enteromorpha prolifera (EP), is used as raw material to prepare efficient absorbers and light‐to‐heat converters for solar steam generation. The crystal structure of the Cu-containing protein plastocyanin (Mr 10,500) from the green alga Enteromorpha prolifera has been solved by molecular replacement. The structure was refined by constrained-restrained and restrained reciprocal space least-squares techniques Enteromorpha prolifera, one of the most common green algae, is widely distributed along the intertidal zone of coastal areas 1.It is regarded as an abundant source of carbohydrates, protein 2018-02-01 · Enteromorpha prolifera, a resource-rich green alga, contains special sulfated rhamnose-rich polysaccharides. In this study, the physicochemical properties of polysaccharides extracted from E. prolifera using different techniques were compared, and significant differences in yield, molecular weight, and chemical composition were observed. Enteromorpha prolifera is an edible alga and previous studies have indicated that E. prolifera polysaccharide (EP) attenuates non-alcoholic fatty liver disease (NAFLD) in high-fat diet rats.

Enteromorpha prolifera

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NCBI BLAST name: green algae Rank: species Genetic code: Translation table 1 (Standard) Mitochondrial genetic code: Translation table 1 (Standard) Enteromorpha (Ulva) prolifera, an important member of marine green algae, contains many bioactive compounds among which polysaccharides are the major components. This seaweed attracted extensive interest due to its multiple biological activities. Abstract Biochar that was derived from Enteromorpha prolifera and magnetically modified (BCF600) was evaluated for its physicochemical properties and Cr (VI) adsorption behavior and mechanism. The results showed that the modified biochar was less porous on surface and loaded with γ-Fe2 O 3 particles. Li et al. developed the Enteromorpha prolifera polysaccharide (EP)/chitosan (CS)-based NPs for delivery of curcumin to inhibit cancer cells (B16F10), the results showed that curcumin loaded NPs (CUR-NPs) showed spherical morphology with a negative charge of −16.27 ± 0.97 mV and average diameter range of 230 to 330 nm and exhibited sustained

7pcy: the crystal structure of plastocyanin from a green alga, enteromorpha prolifera

However, the effects of E. prolifera on microbial ecology and function remained unknown. In this study, metagenomic sequencing was used to investigate the effect of E. prolifera bloom on the microbial communiti … Enteromorpha prolifera, a green alga, has long been used in food diets as well as traditional remedies in East Asia. Our preliminary study demonstrated that an ethyl acetate extract of Enteromorpha prolifera (EAEP) exhibited the strongest antioxidant activity compared to ethanol or water extracts. It is shown that because Enteromorpha prolifera ta NFC has a higher aspect ratio, it is easier to interpenetrate with PVA to form a dense network, and the lower concentration ensures the better dispersion of NFC in the matrix, so its enhancement effect on PVA composite films is better than that of NCC. Enteromorpha prolifera, a green alga, has long been used in food diets as well as traditional remedies in East Asia.

0 (Enteromorpha clathrata). 0 (Enteromorpha crinita). Organismgrupper. Alger; Makroskopiska alger; Grönalger. Bläddra och ladda ner. Bläddra observationer 

Enteromorpha prolifera

This seaweed attracted extensive interest due to its multiple biological activities. Abstract Biochar that was derived from Enteromorpha prolifera and magnetically modified (BCF600) was evaluated for its physicochemical properties and Cr (VI) adsorption behavior and mechanism.

Enteromorpha prolifera

Enteromorpha prolifera-derived carbon, a novel renewable material, possesses abundant functional groups, a high specific surface area and a large pore volume making it a promising candidate as a high-performance cathode material for lithium–sulfur batteries. Enteromorpha prolifera. NCBI BLAST name: green algae Rank: species Genetic code: Translation table 1 (Standard) Mitochondrial genetic code: Translation table 1 (Standard) Enteromorpha (Ulva) prolifera, an important member of marine green algae, contains many bioactive compounds among which polysaccharides are the major components.
Ulph hamilton

Flora -fanerogamer. Stuckenia sp.

Tarmtång (Enteromorpha sp.) Gonactinia prolifera. favorite_border. Gonactinia prolifera. Fredrik Pleijel.
Nybohovsgrand 17

Enteromorpha prolifera ekvivalent dose morfin
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Species: Enteromorpha intestinalis. Color: yellow green. Shape: filamentous. Species: Enteromorpha prolifera. Color: yellow green. Shape: filamentous 

Vetenskapligt: Enteromorpha prolifera f. simplex K.L.Vinogr.


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Enteromorpha compressa var. prolifera, Enteromorpha compressa var. trichodes, Enteromorpha polyclados, Enteromopha prolifera, Enteromorpha salina, Enteromorpha salina var. polyclados, Ulva compressa var. prolifera, Ulva enteromorpha f. prolifera. Identification: This green, filamentous, branched, monosiphonous, and benthic macroalga has hollow

art av tarmalgerna (Ulva spp. tidigare kallad Enteromorpha spp.). glomerella f. simplicata · Lecidea enteromorpha f. subtumida · Lecidea dubia Lecidea intermediella · Lecidea prolifera · Lecidea elevata · Lecidea ararctica  232806 Ulva procera (Enteromorpha ahlneriana) fingrenig tarmalg H(TT) M hela kusten (?).