982 resultados para phenol oxidase


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AbstractThis work describes the development of a biosensor based on the tyrosinase enzyme (Tyr) for the determination of phenol (PHEN) in laboratory effluent samples derived from ammoniacal nitrogen analysis of the water samples from the Muquém dam in the city of Cariús, CE, using square-wave voltammetry (SWV). The electrode modification consisted of the immobilization of gold nanoparticles, multi-walled carbon nanotubes, cobalt phthalocyanine, and Tyr on a glassy carbon electrode. The electrolyte, pH, enzyme quantity, and voltammetric parameters were optimized to detect PHEN. The analytical curves presented a linear range from 4.97 × 10-6 mol L-1 to 6.10 × 10-5 mol L-1, and the detection limit (DL) and quantitation limit (QL) values were 4.81 × 10-6 mol L-1 and 4.97 × 10-6mol L-1, respectively. The repetition of measurements with the same biosensor and repetition for three other prepared biosensors exhibited a relative standard deviation (RSD) of 5.50 and 1.75%, respectively. The percentage recovery of PHEN in effluent samples varied from 86.40 to 105.04%. The stability of the biosensor was evaluated (at 21 days) with satisfactory results, showing 97.86% of the initial response. Moreover, the DL and recovery percentages agreed with the established values from CONAMA and ABNT, respectively. Thus, the electrode configuration developed seems a promising tool in the detection and quantification of PHEN in complex samples.

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Acacia mearnsii de Wild (black wattle) is one of the most important trees planted in Southern Brazil for tannin extraction and charcoal production. The pyrolysis of the black wattle wood used for obtaining charcoal is performed in brick ovens, with the gas fraction being sent directly into the environment. The present study examines the condensable compounds present in the liquor produced from black wattle wood at different thermal degradation conditions, using gas chromatography coupled with mass spectrometry (GC/MS). Branches of black wattle were thermally degraded at controlled ambient and temperature conditions. Overall, a higher variety of compounds were obtained under atmospheric air pressure than under synthetic air pressure. Most of the tentatively identified compounds, such as carboxylic acids, phenols, aldehydes, and low molecular mass lignin fragments, such as guayacol, syringol, and eugenol, were products of lignin thermoconversion. Substituted aromatic compounds, such as vanillin, ethyl vanillin, and 2-methoxy-4-propeny-phenol, were also identified. At temperatures above 200 ºC, furan, 2-acetylfuran, methyl-2-furoate, and furfural, amongst others, were identified as polysaccharide derivatives from cellulose and hemicellulose depolymerization. This study evidences the need for adequate management of the condensable by-products of charcoal production, both for economic reasons and for controlling their potential environmental impact.

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A L-ascorbic acid biosensor based on ascorbate oxidase has been developed. The enzyme was extracted from the mesocarp of cucumber (Cucumis sativus) by using 0.05 mol L-1 phosphate buffer, pH 5.8 containing 0.5 mol L-1 NaCl. After the dialysis versus phosphate buffer 0.05 mol L-1 pH 5.8, the enzyme was immobilized onto nylon net through glutaraldehyde covalent bond. The membrane was coupled to an O2 electrode and the yielding reaction monitored by oxygen depletion at -600 mV using flow injection analysis optimized to 0.1 mol L-1 phosphate buffer pH 5.8, as the carrier solution and flow-rate of 0.5 mL min-1. The ascorbic acid calibration curve was linear from 1.2x10-4 to 1.0x10-3 mol L-1. The evaluation of biosensor lifetime leads to 500 injections. Commercial pharmaceutical samples were analyzed with the proposed method and the results were compared with those obtained by high-performance liquid chromatography (HPLC).

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A direct potentiometric titration method was applied to commercial and soil humic acids in order to determine their carboxyl and phenol group concentrations and apparent and intrinsic pK. In that context, acid-base properties of humic acids are interpreted by selective blocking of carboxylic and phenolic groups by esterification and acetylation. Differences in underivatized and derivatized HA's acid-base properties are ascribed to carboxyl and phenol groups influence on total humic acidity. Potentiometric data were treated with the modified Henderson-Hasselbalch equation. Infra red results, the acidic group contents and the average values of apparent and intrinsic pK for underivatized and derivatized HAs confirmed the selectivity of esterification derivatization method. After blocking of the functional groups, the values of acidic group contents decreased, while the value of apparent pK increased after derivatization. Phenol groups cannot be specifically identified by the acetylation method, due to low selectivity of the acetylation method.

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Propolis is a sticky, gummy, resinous substance collected by honeybees (Apis mellifera L.) from various plant sources, which has excellent medicinal properties. This paper describes the isolation and identification of triterpenoids and anacardic acid derivatives from Brazilian propolis and their antibacterial activity. Their structures were elucidated by ¹H and 13C NMR, including uni- and bidimensional techniques; in addition, comparisons were made with data from academic literature. These compounds were identified as: cardanols (1a + 1b), cardols (2a + 2b), monoene anacardic acid (3), a-amirine (4), b-amirine (5), cycloartenol (6), 24-methylene-cycloartenol (7) and lupeol (8). The determination of the position of the double bond after a reaction with Dimethyl disulfide (DMDS) is described for the phenol derivatives. The ethanolic extract was tested in vitro for antimicrobial activity by using the disc diffusion method and it showed significant results against Escherichia coli, Staphylococcus aureus, Pseudomonas aeruginosa and Shigella spp.

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In this study the BEST7 software was employed to quantify different classes of functional groups and to model the proton titration behavior of humic substances. To illustrate the process, the Suwannee River fulvic acid of the IHSS (International Humic Substances Society) was used. Five categories - two classes of phenolic groups (phenol and cathecol), two classes of carboxylic groups (benzoic and phtalic) and the combination between them (salicylic) - of oxygenated groups were considered as being responsible for the potentiometric behavior of the sample and were quantitatively determined. The most and the least abundant groups were cathecol (3.300 ± 0.010 mmol g-1) and phenol (1.225 ± 0.070 mmol g-1), respectively. The estimated equilibrium constants were also determined and were in good agreement with the literature values for phenol and cathecol groups and for benzoic, phtalic and salicylic acids. Distribution diagrams of the species were generated with the software SPE and SPEPLOT.

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Muitas enzimas estão envolvidas em reações de defesa de plantas contra patógenos. O objetivo deste trabalho foi verificar alterações na atividade de algumas destas enzimas em plantas de feijão originadas de sementes microbiolizadas com um isolado de Pseudomonas do grupo das fluorescentes (isolado DFs842). Sementes de feijão cultivar BRS Valente foram imersas em suspensão salina preparada a partir de crescimento bacteriano com 24 h do isolado de Pseudomonas (OD540=0,5) sabidamente biocontroladora de Xanthomonas axonopodis pv. phaseoli. Como testemunhas, as sementes foram imersas em solução salina (NaCl 0,85%). Após a microbiolização por 5 h a 10ºC, as sementes foram plantadas em vasos contendo uma mistura de solo não esterilizado, areia e esterco bovino (proporção 3:1:1), mantidos em casa de vegetação. A inoculação do patógeno foi realizada na terceira folha verdadeira de todas as plantas, fazendo-se cortes com tesoura imersa em suspensão salina do patógeno (X. axonopodis pv. phaseoli) preparada a partir de crescimento de 24 h (OD540=0,4). Câmaras úmidas foram mantidas 24 h antes e após a inoculação. Para o preparo do extrato protéico, as três primeiras folhas verdadeiras foram coletadas individualmente em 5 épocas de coleta distintas: uma, momentos antes da inoculação e as demais nos tempos seis, 24, 72 h e 15 dias após a inoculação. Este extrato protéico serviu de fonte para as determinações do teor de proteínas solúveis totais (PST), atividade da polifenol oxidase (PPO) e da peroxidase (PO), as quais foram realizadas por leituras espectrofotométricas. Os resultados demonstraram aumento significativo no teor de PST e na atividade de PPO nas plantas submetidas ao tratamento com isolado DFs842, sendo que, o teor de PST foi o dobro, em relação às plantas não tratadas. Também foi observado que, mesmo antes da inoculação do patógeno o teor de PST e a atividade de PPO nas plantas tratadas estavam bem maiores. Em relação à atividade de PO houve redução da mesma nas plantas tratadas com o isolado de Pseudomonas (DFs842). Esses resultados evidenciaram que a microbiolização das sementes provocou alterações metabólicas nas plantas delas originadas, pelo aumento do teor de PST e atividade de PPO, indicando uma provável participação destas enzimas na indução de resistência ativada pela microbiolização com o isolado de Pseudomonas (DFs842).

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ResumoAs estrobilurinas estão entre os fungicidas mais comumente utilizados no controle das doenças do trigo, isoladamente ou em misturas com fungicidas inibidores da enzima succinato desidrogenase (IDHS). As estrobilurinas são conhecidas como fungicidas inibidores da quinona oxidase ou fungicidas IQo. Por ter como alvo um único sítio de ação nas células fúngicas, o gene mitocondrial cyt b, o emprego contínuo das estrobilurinas pode representar alto risco de emergência de resistência a estes fungicidas em populações de fitopatógenos. O presente trabalho teve como objetivo testar a hipótese de que a resistência a azoxistrobina no fungo Pyricularia oryzae dotrigo resultou em resistência cruzada a piraclostrobina, outro fungicida IQo. Para testar esta hipótese, foi comparado o nível de resistência à piraclostrobina apresentado por dois grupos de isolados do fungo P. oryzae do trigo: a) sensíveis à azoxistrobina e portadores do gene cyt b não mutante (haplotipo H9) e b) resistentes à azoxistrobina e portadores da mutação G143A no gene cyt b(haplotipo H1). Fungicidas pertencentes a um mesmo grupo químico apresentam resistência cruzada. Todos os isolados de P. oryzaedo trigo sensíveis à azoxistrobina foram também sensíveis à piraclostrobina. Os isolados resistentes a azoxistrobina foram, também, resistentes à piraclostrobina, indicando que há resistência cruzada para os dois fungicidas. Entre os isolados resistentes, distinguiram-se dois grupos fenotípicos: (A) altamente resistentes e (B) resistentes. Isolados de P. oryzaecom a presença da mutação G143A no gene cyt b foram 42 vezes mais resistentes à piraclostrobina. Esses altos níveis de resistência à fungicidas IQo podem ser o resultado de elevada pressão de seleção exercida pelos anos consecutivos de aplicações de estrobilurinas para o manejo de doenças do trigo no Brasil.

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A análise e o estudo das características morfológicas de sementes e plântulas de palmito-vermelho (Euterpe espiritosantensis Fernandes), juçara (E. edulis Mart.) e açaí (E. oleracea Mart.) não permitem que o analista de sementes, ou o melhorista, faça a identificação e a diferenciação inequívoca das espécies. Neste trabalho, buscou-se avaliar o potencial discriminante da técnica de eletroforese para sementes dessas espécies, utilizando-se nove sistemas enzimáticos. Foram realizadas análises de eletroforese de isoenzimas, testando-se 30 embriões (0 a 1 mm de protrusão) de cada espécie, por corrida e por sistema enzimático. Para a identificação das bandas e determinação do perfil eletroforético foram realizadas, no mínimo, 30 corridas por sistema enzimático avaliado, em gel de poliacrilamida (7,5%). Constatou-se que, dentre as isoenzimas testadas, a polifenol-oxidase e a fosfatase-ácida mostraram-se instáveis, raramente possibilitando a visualização das bandas. As isoenzimasalfa e beta-esterase nem sempre possibilitaram o aparecimento de bandas visíveis, principalmente para E. espiritosantensis, mas foram capazes de distinguir E. edulis de E. oleracea. A glucose-6-fosfato desidrogenase e a glutamato-desidrogenase revelaram perfis eletroforéticos nítidos em todas as corridas, mas a posição das bandas não permitiu a diferenciação das três espécies estudadas. As isoenzimas mais eficientes na avaliação da pureza genética e na diferenciação das sementes foram fosfoglucomutase, fosfoglucose isomerase e peroxidase, por apresentarem perfis eletroforéticos distintos.

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Cyanobacteria are a diverse group of oxygenic photosynthetic bacteria that inhabit in a wide range of environments. They are versatile and multifaceted organisms with great possibilities for different biotechnological applications. For example, cyanobacteria produce molecular hydrogen (H2), which is one of the most important alternatives for clean and sustainable energy. Apart from being beneficial, cyanobacteria also possess harmful characteristics and may become a source of threat to human health and other living organisms, as they are able to form surface blooms that are producing a variety of toxic or bioactive compounds. The University of Helsinki Culture Collection (UHCC) maintains around 1,000 cyanobacterial strains representing a large number of genera and species isolated from the Baltic Sea and Finnish lakes. The culture collection covers different life forms such as unicellular and filamentous, N2-fixing and non-N2-fixing strains, and planktonic and benthic cyanobacteria. In this thesis, the UHCC has been screened to identify potential strains for sustainable biohydrogen production and also for strains that produce compounds modifying the bioenergetic pathways of other cyanobacteria or terrestrial plants. Among the 400 cyanobacterial strains screened so far, ten were identified as high H2-producing strains. The enzyme systems involved in H2 metabolism of cyanobacteria were analyzed using the Southern hybridization approach. This revealed the presence of the enzyme nitrogenase in all strains tested, while none of them are likely to have contained alternative nitrogenases. All the strains tested, except for two Calothrix strains, XSPORK 36C and XSPORK 11A, were suggested to contain both uptake and bidirectional hydrogenases. Moreover, 55 methanol extracts of various cyanobacterial strains were screened to identify potent bioactive compounds affecting the photosynthetic apparatus of the model cyanobacterium, Synechocystis PCC 6803. The extract from Nostoc XPORK 14A was the only one that modified the photosynthetic machinery and dark respiration. The compound responsible for this effect was identified, purified, and named M22. M22 demonstrated a dual-action mechanism: production of reactive oxygen species (ROS) under illumination and an unknown mechanism that also prevailed in the dark. During summer, the Baltic Sea is occupied by toxic blooms of Nodularia spumigena (hereafter referred to as N. spumigena), which produces a hepatotoxin called nodularin. Long-term exposure of the terrestrial plant spinach to nodularin was studied. Such treatment resulted in inhibition of growth and chlorosis of the leaves. Moreover, the activity and amount of mitochondrial electron transfer complexes increased in the leaves exposed to nodularin-containing extract, indicating upregulation of respiratory reactions, whereas no marked changes were detected in the structure or function of the photosynthetic machinery. Nodularin-exposed plants suffered from oxidative stress, evidenced by oxidative modifications of various proteins. Plants initiated strategies to combat the stress by increasing the levels of alpha-tocopherol, mitochondrial alternative oxidase (AOX), and mitochondrial ascorbate peroxidase (mAPX).

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Electrokinetic remediation coupled with Fenton oxidation, widely called as Electrokinetic Fenton process is a potential soil remediation technique used for low permeable soil. The applicability of the process has been proved with soil contaminated with a wide range of organic compounds from phenol to the most recalcitrant ones such as PAHs and POPs. This thesis summarizes the major findings observed during an Electrokinetic Fenton Process study conducted for the remediation of low permeable soil contaminated with HCB, a typical hydrophobic organic contaminant. Model low permeable soil, kaolin, was artificially contaminated with HCB and subjected to Electrokinetic Fenton treatments in a series of laboratory scale batch experiments. The use of cyclodextrins as an enhancement agent to mobilize the sorbed contaminant through the system was investigated. Major process hindrances such as the oxidant availability and treatment duration were also addressed. The HCB degradation along with other parameters like soil pH, redox and cumulative catholyte flow were analyzed and monitored. The results of the experiments strengthen the existing knowledge on electrokinetic Fenton process as a promising technology for the treatment of soil contaminated with hydrophobic organic compounds. It has been demonstrated that HCB sorbed to kaolin can be degraded by the use of high concentrations of hydrogen peroxide during such processes. The overall system performances were observed to be influenced by the point and mode of oxidant delivery. Furthermore, the study contributes to new knowledge in shortening the treatment duration by adopting an electrode polarity reversal during the process.

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OBJETIVO: As espécies ativas de oxigênio (EAO), originadas pela ação da enzima xantina-oxidase, têm importância na fisiopatologia da síndrome isquêmica-reperfusional. Foi nosso objetivo verificar o possível efeito citoprotetor do alopurinol (inibidor da xantina-oxidase) sobre as alterações histológicas decorrentes da isquemia-reperfusão hepática. MÉTODOS: Utilizaram-se 60 ratos Wistar assim divididos: grupo 1(n=20): pré-tratado com alopurinol e submetido à laparotomia e à exposição do pedículo hepático por 45 min.; grupo 2 (n=20): tratado com alopurinol e submetido à isquemia hepática seletiva por 45 min.; e grupo 3 (n=20): submetido apenas à isquemia por 45 min. A cada 24 horas, durante quatro dias, cinco animais de cada grupo foram submetidos a hepatectomias parciais para estudo histopatológico. RESULTADOS: Na análise das 24h, houve aumento significativo da congestão vascular e da necrose nos grupos de animais submetidos à isquemia (2 e 3) quando comparados aos do grupo controle (grupo 1) (p<0,05). Na análise das 48h, os resultados se repetiram em relação à necrose hepática. Não se observaram diferenças significativas nos tempos de 72 e 96h. Além disso, no período das 24h, verificou-se uma diminuição significativa da necrose nos animais submetidos à isquemia e pré-tratados com alopurinol quando comparados ao grupo não tratado. CONCLUSÕES: A isquemia transitória normotérmica hepática causa significativas alterações histopatológicas nos fígados de ratos. Em nosso estudo, o alopurinol exerceu efeito benéfico em relação à necrose hepatocitária, o que reforça o envolvimento da enzima xantina oxidase no dano decorrente da isquemia-reperfusão hepática.

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Rhodococcus equi é um micro-organismo intracelular facultativo, agente etiológico da rodococose, uma importante enfermidade que acomete principalmente potros com menos de seis meses de idade, causando a morte geralmente em decorrência de lesões pulmonares. Este agente também tem potencial zoonótico e emergiu como um patógeno oportunista no mundo, acometendo humanos imunocomprometidos, especialmente os transplantados e infectados pelo vírus da imunodeficiência humana (HIV). Entretanto, infecções por R. equi em hospedeiros hígidos tem sido relatadas, principalmente em crianças e idosos. Estudos tem mostrado um nível crescente na resistência de isolados de R. equi em relação aos antimicrobianos comumente utilizados no tratamento de animais e seres humanos infectados por este agente. A virulência deste pode estar associada a fatores como a cápsula de polissacarídeo, fosfolipase C e à enzima colesterol oxidase (fator equi). No entanto, uma proteína localizada em um plasmídeo, designada vapA, é essencial para a sobrevivência e replicação do agente em macrófagos. Com isso, os objetivos deste estudo foram avaliar o perfil de suscetibilidade de isolados de R. equi de diferentes fontes em relação aos antimicrobianos mais comumente utilizados na terapêutica animal e humana, bem como verificar a associação entre a presença do gene vapA e o índice de resistência múltipla aos antimicrobianos (IRMA). Neste estudo, 67 isolados brasileiros de R. qui de diferentes fontes foram analisados: 30 provenientes de amostras clínicas de equinos, sete de humanos e 30 ambientais (seis do solo e 24 de fezes de equinos). Para avaliar o perfil de suscetibilidade dos isolados utilizou-se o método de disco difusão, sendo testadas 16 drogas de diferentes classes de antimicrobianos. As amostras clínicas de equinos apresentaram as maiores taxas de resistência à penicilina (86,7%) e lincomicina (30%). Além disso, foram também resistentes a macrolídeos (azitromicina a 6,7%, eritromicina a 6% e claritromicina a 3,3%) e rifamicina (13%). Todas as amostras humanas e ambientais foram sensíveis aos macrolídeos e rifamicina. Contudo, isolados ambientais demonstraram níveis elevados de resistência à penicilina e cloranfenicol. Da mesma forma, os isolados humanos apresentaram alto nível de resistência ao ceftiofur, lincomicina e sulfazotrim. O IRMA em todos os isolados de R. equi variou de 0 a 0,67, tendo como valores médios 0,19 para as amostras clínicas de equinos, 0,14 nas ambientais e em isolados humanos foi de 0,1. Apesar da alta sensibilidade observada nos isolados analisados, verificaram-se diferentes níveis de resistência nas amostras clínicas de equinos. Em contraste, os isolados ambientais não demonstraram resistência em relação aos agentes antimicrobianos utilizados na terapia da rodococose equina. Além disso, em isolados humanos não se observou resistência contra a droga para uso restrito em terapia de humano. Com base no IRMA observado em isolados clínicos de equinos, destacamos a importância de medidas restritivas e mais cautela na utilização de antimicrobianos em infecções causadas por R. equi para evitar o aumento de novas cepas multirresistentes.

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The aim of this study was to compare different staining methods for the evaluation of sperm morphology by light microscopy and also to describe the morphometry of the entire sperm in collared peccaries (Pecari tajacu). Semen from 10 males was obtained by electroejaculation and evaluated for sperm motility, vigor, and concentration. Semen smears were prepared through three different staining methods: Bengal rose, brome-phenol blue, and eosin-nigrosin. Smears were evaluated under light microscopy and sperm morphologic alterations were determined in percentage. In addition, sperm morphometric analysis was conducted by light microscopy coupled to image analyzer software. The smears stained with Bengal Rose provide the best results for the visualization of the sperm tail, midpiece, and head. The use of eosin-nigrosin stain did not allow an adequate impregnation, and some sperm presented a few contrasts with the background. A higher incidence of bent coiled tails was verified in the use of brome-phenol blue staining (P<0.05). Through morphometric evaluation, it was observed that the tail occupies the greatest proportion (89%) of the sperm which presents a discretely elongated head. According to the results, the use of the Bengal Rose stain is recommended for the morphologic evaluation of the collared peccary sperm.

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Biorefining is defined as sustainable conversion of biomass into marketable products and energy. Forests cover almost one third of earth’s land area, and account for approximately 40% of the total annual biomass production. In forest biorefining, the wood components are, in addition to the traditional paper and board products, converted into chemicals and biofuels. The major components in wood are cellulose, hemicelluloses, and lignin. The main hemicellulose in softwoods, which are of interest especially for the Nordic forest industry, is O-acetyl galactoglucomannan (GGM). GGM can be isolated in industrial scale from the waste waters of the mechanical pulping process, but is not yet today industrially utilized. In order to attain desired properties of GGM for specific end-uses, chemical and enzymatic modifications can be performed. Regioselective modifications of GGM, and other galactose-containing polysaccharides were done by oxidations, and by combining oxidations with subsequent derivatizations of the formed carbonyl or carboxyl groups. Two different pathways were investigated: activation of the C-6 positions in different sugar units by TEMPO-mediated oxidation, and activation of C-6 position in only galactose-units by oxidation catalyzed by the enzyme galactose oxidase. The activated sites were further selectively derivatized; TEMPO-oxidized GGM by a carbodiimide-mediated reaction forming amides, and GO-oxidized GGM by indium-mediated allylation introducing double or triple bonds to the molecule. In order to better understand the reaction, and to develop a MALDI-TOF-MS method for characterization of regioselectively allylated GGM, α-D-galactopyranoside and raffinose were used as model compounds. All reactions were done in aqueous media. To investigate the applicability of the modified polysaccharides for, e.g., cellulose surface functionalization, their sorption onto pulp fibres was studied. Carboxylation affects the sorption tendency significantly; a higher degree of oxidation leads to lower sorption. By controlling the degree of oxidation of the polysaccharides and the ionic strength of the sorption media, high degrees of sorption of carboxylated polysaccharides onto cellulose could, however, be obtained. Anionic polysaccharides were used as templates during laccase-catalyzed polymerization of aniline, offering a green, chemo-enzymatic route for synthesis of conducting polyaniline (PANI) composite materials. Different polysaccharide templates, such as, native GGM, TEMPO-oxidized GGM, naturally anionic κ-carrageenan, and nanofibrillated cellulose produced by TEMPO-oxidation, were assessed. The conductivity of the synthesized polysaccharide/PANI biocomposites varies depending on the polysaccharide template; κ-CGN, the anionic polysaccharide with the lowest pKa value, produces the polysaccharide/PANI biocomposites with the highest conductivity. The presented derivatization, sorption, and polymerization procedures open new application windows for polysaccharides, such as spruce GGM. The modified polysaccharides and the conducting biocomposites produced provide potential applications in biosensors, electronic devices, and tissue engineering.