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1.
Sci Rep ; 14(1): 11093, 2024 05 15.
Artículo en Inglés | MEDLINE | ID: mdl-38750188

RESUMEN

A chronic nonhealing wound poses a significant risk for infection and subsequent health complications, potentially endangering the patient's well-being. Therefore, effective wound dressings must meet several crucial criteria, including: (1) eliminating bacterial pathogen growth within the wound, (2) forming a barrier against airborne microbes, (3) promoting cell proliferation, (4) facilitating tissue repair. In this study, we synthesized 8 ± 3 nm Ag NP with maleic acid and incorporated them into an electrospun polycaprolactone (PCL) matrix with 1.6 and 3.4 µm fiber sizes. The Ag NPs were anchored to the matrix via electrospraying water-soluble poly(vinyl) alcohol (PVA), reducing the average sphere size from 750 to 610 nm in the presence of Ag NPs. Increasing the electrospraying time of Ag NP-treated PVA spheres demonstrated a more pronounced antibacterial effect. The resultant silver-based material exhibited 100% inhibition of gram-negative Escherichia coli and gram-positive Staphylococcus aureus growth within 6 h while showing non-cytotoxic effects on the Vero cell line. We mainly discuss the preparation method aspects of the membrane, its antibacterial properties, and cytotoxicity, suggesting that combining these processes holds promise for various medical applications.


Asunto(s)
Antibacterianos , Materiales Biocompatibles , Escherichia coli , Poliésteres , Alcohol Polivinílico , Plata , Staphylococcus aureus , Alcohol Polivinílico/química , Alcohol Polivinílico/farmacología , Plata/química , Plata/farmacología , Poliésteres/química , Antibacterianos/farmacología , Antibacterianos/química , Escherichia coli/efectos de los fármacos , Escherichia coli/crecimiento & desarrollo , Staphylococcus aureus/efectos de los fármacos , Células Vero , Animales , Chlorocebus aethiops , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología , Nanopartículas del Metal/química , Andamios del Tejido/química , Pruebas de Sensibilidad Microbiana
2.
ACS Appl Mater Interfaces ; 16(19): 24351-24371, 2024 May 15.
Artículo en Inglés | MEDLINE | ID: mdl-38690969

RESUMEN

Chronic nonhealing wounds are serious complications of diabetes with a high morbidity, and they can lead to disability or death. Conventional drug therapy is ineffective for diabetic wound healing because of the complex environment of diabetic wounds and the depth of drug penetration. Here, we developed a self-healing, dual-layer, drug-carrying microneedle (SDDMN) for diabetic wound healing. This SDDMN can realize transdermal drug delivery and broad-spectrum sterilization without drug resistance and meets the multiple needs of the diabetic wound healing process. Quaternary ammonium chitosan cografted with dihydrocaffeic acid (Da) and l-arginine and oxidized hyaluronic acid-dopamine are the main parts of the self-healing hydrogel patch. Methacrylated poly(vinyl alcohol) (methacrylated PVA) and phenylboronic acid (PBA) were used as the main part of the MN, and gallium porphyrin modified with 3-amino-1,2 propanediol (POGa) and insulin were encapsulated at its tip. Under hyperglycaemic conditions, the PBA moiety in the MN reversibly formed a glucose-boronic acid complex that promoted the rapid release of POGa and insulin. POGa is disguised as hemoglobin through a Trojan-horse strategy, which is then taken up by bacteria, allowing it to target bacteria and infected lesions. Based on the synergistic properties of these components, SDDMN-POGa patches exhibited an excellent biocompatibility, slow drug release, and antimicrobial properties. Thus, these patches provide a potential therapeutic approach for the treatment of diabetic wounds.


Asunto(s)
Ácidos Borónicos , Diabetes Mellitus Experimental , Glucosa , Cicatrización de Heridas , Cicatrización de Heridas/efectos de los fármacos , Animales , Ácidos Borónicos/química , Glucosa/metabolismo , Diabetes Mellitus Experimental/tratamiento farmacológico , Agujas , Insulina/administración & dosificación , Ratones , Quitosano/química , Alcohol Polivinílico/química , Ratas , Ácido Hialurónico/química , Masculino , Ácidos Cafeicos/química , Ácidos Cafeicos/farmacología , Sistemas de Liberación de Medicamentos , Ratas Sprague-Dawley , Humanos , Hidrogeles/química
3.
ACS Appl Mater Interfaces ; 16(19): 25181-25193, 2024 May 15.
Artículo en Inglés | MEDLINE | ID: mdl-38698676

RESUMEN

Supermolecular hydrogel ionic skin (i-skin) linked with smartphones has attracted widespread attention in physiological activity detection due to its good stability in complex scenarios. However, the low ionic conductivity, inferior mechanical properties, poor contact adhesion, and insufficient freeze resistance of most used hydrogels limit their practical application in flexible electronics. Herein, a novel multifunctional poly(vinyl alcohol)-based conductive organohydrogel (PCEL5.0%) with a supermolecular structure was constructed by innovatively employing sodium carboxymethyl cellulose (CMC-Na) as reinforcement material, ethylene glycol as antifreeze, and lithium chloride as a water retaining agent. Thanks to the synergistic effect of these components, the PCEL5.0% organohydrogel shows excellent performance in terms of ionic conductivity (1.61 S m-1), mechanical properties (tensile strength of 70.38 kPa and elongation at break of 537.84%), interfacial adhesion (1.06 kPa to pig skin), frost resistance (-50.4 °C), water retention (67.1% at 22% relative humidity), and remoldability. The resultant PCEL5.0%-based i-skin delivers satisfactory sensitivity (GF = 1.38) with fast response (348 ms) and high precision under different deformations and low temperature (-25 °C). Significantly, the wireless sensor system based on the PCEL5.0% organohydrogel i-skin can transmit signals from physiological activities and sign language to a smartphone by Bluetooth technology and dynamically displays the status of these movements. The organohydrogel i-skin shows great potential in diverse fields of physiological activity detection, human-computer interaction, and rehabilitation medicine.


Asunto(s)
Hidrogeles , Hidrogeles/química , Monitoreo Fisiológico/instrumentación , Monitoreo Fisiológico/métodos , Animales , Tecnología Inalámbrica , Dispositivos Electrónicos Vestibles , Conductividad Eléctrica , Humanos , Alcohol Polivinílico/química , Porcinos , Teléfono Inteligente , Piel/química , Carboximetilcelulosa de Sodio/química
4.
J Mech Behav Biomed Mater ; 155: 106579, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38749266

RESUMEN

Silicon nitride is utilized clinically as a bioceramic for spinal fusion cages, owing to its high strength, osteoconductivity, and antibacterial effects. Nevertheless, silicon nitride exhibits suboptimal damping properties, a critical factor in mitigating traumatic bone injuries and fractures. In fact, there is a scarcity of spinal implants that simultaneously demonstrate proficient damping performance and support osteogenesis. In our study, we fabricated a novel sodium alginate-silicon nitride/poly(vinyl alcohol) (SA-SiN/PVA) composite scaffold, enabling enhanced energy absorption and rapid elastic recovery under quasi-static and impact loading scenarios. Furthermore, the study demonstrated that the incorporation of physical and chemical cross-linking significantly improved stiffness and recoverable energy dissipation. Concerning the interaction between cells and materials, our findings suggest that the addition of silicon nitride stimulated osteogenic differentiation while inhibiting Staphylococcus aureus growth. Collectively, the amalgamation of ceramics and tough hydrogels facilitates the development of advanced composites for spinal implants, manifesting superior damping, osteogenic potential, and antibacterial properties. This approach holds broader implications for applications in bone tissue engineering.


Asunto(s)
Alginatos , Materiales Biocompatibles , Ensayo de Materiales , Alcohol Polivinílico , Compuestos de Silicona , Staphylococcus aureus , Alginatos/química , Alginatos/farmacología , Alcohol Polivinílico/química , Compuestos de Silicona/química , Compuestos de Silicona/farmacología , Staphylococcus aureus/efectos de los fármacos , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología , Antibacterianos/farmacología , Antibacterianos/química , Osteogénesis/efectos de los fármacos , Fenómenos Mecánicos , Andamios del Tejido/química , Humanos
5.
J Agric Food Chem ; 72(20): 11706-11715, 2024 May 22.
Artículo en Inglés | MEDLINE | ID: mdl-38728528

RESUMEN

In this study, we devised a photothermally stable phytochemical dye by leveraging alizarin in conjunction with the metal-organic framework ZIF-8 (AL@ZIF-8). The approach involved grafting alizarin into the microporous structure of ZIF-8 through physical adsorption and hydrogen-bonding interactions. AL@ZIF-8 significantly enhanced the photostability and thermostability of alizarin. The nanoparticles demonstrate substantial color changes in various pH environments, showcasing their potential for meat freshness monitoring. Furthermore, we introduced an intelligent film utilizing poly(vinyl alcohol)-sodium alginate-AL@ZIF-8 (PA-SA-ZA) for detecting beef freshness. The sensor exhibited a superior water contact angle (52.34°) compared to the alizarin indicator. The color stability of the film was significantly enhanced under visible and UV light (ΔE < 5). During beef storage, the film displayed significant color fluctuations correlating with TVB-N (R2=0.9067), providing precise early warning signals for assessing beef freshness.


Asunto(s)
Alginatos , Colorimetría , Alcohol Polivinílico , Alginatos/química , Animales , Alcohol Polivinílico/química , Bovinos , Colorimetría/métodos , Antraquinonas/química , Embalaje de Alimentos/instrumentación , Fitoquímicos/química , Carne Roja/análisis , Estructuras Metalorgánicas/química
6.
Int J Biol Macromol ; 268(Pt 1): 131692, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38702247

RESUMEN

Natural bioactive molecules such as phenolic acids and alkaloids play a crucial role in preserving the quality and safety of food products, particularly oils, by preventing oxidation. Berberis integerrima, a rich source of such antioxidants, has been explored in this study for its potential application in soybean oil preservation. Electrospun nanofibers, composed of polyvinyl alcohol and chitosan, were fabricated and loaded with an alcoholic extract of Berberis integerrima. The antioxidant activity of Berberis integerrima was evaluated, and the phenolic compounds contributing to its efficacy were identified and quantified. The physicochemical properties of the polyvinyl alcohol /chitosan/Berberis integerrima nanofibers, including morphology, crystallinity, functional groups, and thermal stability, were characterized. The results revealed that the polyvinyl alcohol/chitosan/Berberis integerrima nanofibers exhibited high antioxidant capacity and improved the stability of Berberis integerrima, indicating their potential as effective and biodegradable materials for food preservation. This study underscores the potential of harnessing natural antioxidants from Berberis integerrima in nanofibers to enhance the quality and safety of soybean oil.


Asunto(s)
Antioxidantes , Berberis , Quitosano , Nanofibras , Oxidación-Reducción , Aceite de Soja , Quitosano/química , Nanofibras/química , Aceite de Soja/química , Antioxidantes/química , Antioxidantes/farmacología , Berberis/química , Alcohol Polivinílico/química , Extractos Vegetales/química , Extractos Vegetales/farmacología
7.
Int J Biol Macromol ; 268(Pt 1): 131464, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38702248

RESUMEN

Global concerns over environmental damage caused by non-biodegradable single-use packaging have sparked interest in developing biomaterials. The food packaging industry is a major contributor to non-degradable plastic waste. This study investigates the impact of incorporating different concentrations of polyvinyl alcohol (PVA) and yerba mate extract as a natural antioxidant into carboxymethyl cassava starch films to possibly use as active degradable packaging to enhance food shelf life. Films with starch and PVA blends (SP) at different ratios (SP radios of 100:0, 90:10, 80:20 and 70:30) with and without yerba mate extract (Y) were successfully produced through extrusion and thermoforming. The incorporation of up to 20 wt% PVA improved starch extrusion processing and enhanced film transparency. PVA played a crucial role in improving the hydrophobicity, tensile strength and flexibility of the starch films but led to a slight deceleration in their degradation in compost. In contrast, yerba mate extract contributed to better compost degradation of the blend films. Additionally, it provided antioxidant activity, particularly in hydrophilic and lipophilic food simulants, suggesting its potential to extend the shelf life of food products. Starch-PVA blend films with yerba mate extract emerged as a promising alternative for mechanically resistant and active food packaging.


Asunto(s)
Antioxidantes , Embalaje de Alimentos , Manihot , Extractos Vegetales , Alcohol Polivinílico , Almidón , Embalaje de Alimentos/métodos , Alcohol Polivinílico/química , Almidón/química , Almidón/análogos & derivados , Antioxidantes/química , Manihot/química , Extractos Vegetales/química , Ilex paraguariensis/química , Resistencia a la Tracción , Interacciones Hidrofóbicas e Hidrofílicas , Fenómenos Mecánicos
8.
Int J Biol Macromol ; 268(Pt 2): 131984, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38692552

RESUMEN

Biomass materials substituting for petroleum-based polymers occupy an important position in achieving sustainable development. Cellulose, a typical biomass material, stands out as the primary choice for producing eco-friendly packaging materials. However, it is still a challenge to efficiently utilize cellulose from waste biomass materials in practice. Herein, cellulose-based films were prepared by pretreating waste corn straw, separating straw husk, straw pith and straw leaf, and extracting cellulose through alkali and sodium chlorite treatment to improve its mechanical properties using the cross-linked polyvinyl alcohol (PVA) method in this work. The prepared composite films were characterized by Fourier transform infrared spectrometer (FTIR), X-ray diffraction instrument (XRD), Scanning electron microscopy (SEM), Thermogravimetric (TG) and mechanical properties. The results indicated that corn straw husk exhibited the highest cellulose content of 31.67 wt%, and obtained husk cellulose had the highest crystallinity of 52.5 %. Compared to corn straw, the crystallinity of husk cellulose, pith cellulose and leaf cellulose increased by 19.5 %, 16.4 % and 44.1 %, respectively. Husk cellulose/PVA composite films were the most thermally stable, with a maximum weight loss temperature of 346.8 °C. In addition, the husk cellulose/PVA composite film had the best tensile strength of 37 MPa. Meanwhile, the composite films had good UV shielding, low water vapor transmission rate and biodegradability. Therefore, this work provides a fine utilization route of waste corn straw, and as-prepared cellulose based films have potential application in eco-friendly packaging materials.


Asunto(s)
Celulosa , Alcohol Polivinílico , Zea mays , Zea mays/química , Alcohol Polivinílico/química , Celulosa/química , Resistencia a la Tracción , Espectroscopía Infrarroja por Transformada de Fourier , Difracción de Rayos X , Termogravimetría
9.
Biosensors (Basel) ; 14(5)2024 May 03.
Artículo en Inglés | MEDLINE | ID: mdl-38785701

RESUMEN

At the heart of the non-implantable electronic revolution lies ionogels, which are remarkably conductive, thermally stable, and even antimicrobial materials. Yet, their potential has been hindered by poor mechanical properties. Herein, a double network (DN) ionogel crafted from 1-Ethyl-3-methylimidazolium chloride ([Emim]Cl), acrylamide (AM), and polyvinyl alcohol (PVA) was constructed. Tensile strength, fracture elongation, and conductivity can be adjusted across a wide range, enabling researchers to fabricate the material to meet specific needs. With adjustable mechanical properties, such as tensile strength (0.06-5.30 MPa) and fracture elongation (363-1373%), this ionogel possesses both robustness and flexibility. This ionogel exhibits a bi-modal response to temperature and strain, making it an ideal candidate for strain sensor applications. It also functions as a flexible strain sensor that can detect physiological signals in real time, opening doors to personalized health monitoring and disease management. Moreover, these gels' ability to decode the intricate movements of sign language paves the way for improved communication accessibility for the deaf and hard-of-hearing community. This DN ionogel lays the foundation for a future in which e-skins and wearable sensors will seamlessly integrate into our lives, revolutionizing healthcare, human-machine interaction, and beyond.


Asunto(s)
Lengua de Signos , Humanos , Alcohol Polivinílico/química , Monitoreo Fisiológico , Dispositivos Electrónicos Vestibles , Geles/química , Imidazoles/química , Técnicas Biosensibles , Acrilamida , Resistencia a la Tracción
10.
AAPS PharmSciTech ; 25(5): 116, 2024 May 20.
Artículo en Inglés | MEDLINE | ID: mdl-38769223

RESUMEN

Oral dispersible films have received broad interest due to fast drug absorption and no first-path metabolism, leading to high bioavailability and better patient compliance. Saxagliptin (SXG) is an antidiabetic drug that undergoes first-path metabolism, resulting in a less active metabolite, so the development of SXG oral dispersible films (SXG-ODFs) improves SXG bioavailability. The formula optimisation included a response surface experimental design and the impact of three formulation factors, the type and concentration of polymer and plasticiser concentration on in-vitro disintegration time and folding endurance. Two optimised SXG-ODFs prepared using either polyvinyl alcohol (PVA) or hydroxypropyl methylcellulose were investigated. SXG-ODFs prepared with PVA demonstrated a superior rapid disintegration time, ranging from 17 to 890 s, with the fastest disintegration time recorded at 17 s. These short durations can be attributed to the hydrophilic nature of PVA, facilitating rapid hydration and disintegration upon contact with saliva. Additionally, PVA-based films displayed remarkable folding endurance, surpassing 200 folds without rupture, indicating flexibility and stability. The high tensile strength of PVA-based films further underscores their robust mechanical properties, with tensile strength values reaching up to 4.53 MPa. SXG exhibits a UV absorption wavelength of around 212 nm, posing challenges for traditional quantitative spectrophotometric analysis, so a polyaniline nanoparticles-based solid-contact screen-printed ion-selective electrode (SP-ISE) was employed for the determination of SXG release profile effectively in comparison to HPLC. SP-ISE showed a better real-time release profile of SXG-ODFs, and the optimised formula showed lower blood glucose levels than commercial tablets.


Asunto(s)
Adamantano , Compuestos de Anilina , Dipéptidos , Liberación de Fármacos , Nanopartículas , Alcohol Polivinílico , Adamantano/química , Adamantano/análogos & derivados , Dipéptidos/química , Dipéptidos/farmacocinética , Dipéptidos/administración & dosificación , Compuestos de Anilina/química , Nanopartículas/química , Administración Oral , Alcohol Polivinílico/química , Hipoglucemiantes/química , Hipoglucemiantes/administración & dosificación , Hipoglucemiantes/farmacocinética , Humanos , Derivados de la Hipromelosa/química , Resistencia a la Tracción , Química Farmacéutica/métodos , Disponibilidad Biológica , Solubilidad , Electrodos
11.
J Nanobiotechnology ; 22(1): 229, 2024 May 08.
Artículo en Inglés | MEDLINE | ID: mdl-38720321

RESUMEN

Efficiently removing excess reactive oxygen species (ROS) generated by various factors on the ocular surface is a promising strategy for preventing the development of dry eye disease (DED). The currently available eye drops for DED treatment are palliative, short-lived and frequently administered due to the short precorneal residence time. Here, we developed nanozyme-based eye drops for DED by exploiting borate-mediated dynamic covalent complexation between n-FeZIF-8 nanozymes (n-Z(Fe)) and poly(vinyl alcohol) (PVA) to overcome these problems. The resultant formulation (PBnZ), which has dual-ROS scavenging abilities and prolonged corneal retention can effectively reduce oxidative stress, thereby providing an excellent preventive effect to alleviate DED. In vitro and in vivo experiments revealed that PBnZ could eliminate excess ROS through both its multienzyme-like activity and the ROS-scavenging activity of borate bonds. The positively charged nanozyme-based eye drops displayed a longer precorneal residence time due to physical adhesion and the dynamic borate bonds between phenyboronic acid and PVA or o-diol with mucin. The in vivo results showed that eye drops could effectively alleviate DED. These dual-function PBnZ nanozyme-based eye drops can provide insights into the development of novel treatment strategies for DED and other ROS-mediated inflammatory diseases and a rationale for the application of nanomaterials in clinical settings.


Asunto(s)
Síndromes de Ojo Seco , Soluciones Oftálmicas , Especies Reactivas de Oxígeno , Soluciones Oftálmicas/química , Soluciones Oftálmicas/farmacología , Síndromes de Ojo Seco/tratamiento farmacológico , Animales , Especies Reactivas de Oxígeno/metabolismo , Ratones , Estrés Oxidativo/efectos de los fármacos , Córnea/efectos de los fármacos , Córnea/metabolismo , Alcohol Polivinílico/química , Humanos , Depuradores de Radicales Libres/química , Depuradores de Radicales Libres/farmacología , Boratos/química , Nanopartículas/química , Masculino
12.
J Nanobiotechnology ; 22(1): 232, 2024 May 08.
Artículo en Inglés | MEDLINE | ID: mdl-38720301

RESUMEN

Diabetic wounds pose a challenge to healing due to increased bacterial susceptibility and poor vascularization. Effective healing requires simultaneous bacterial and biofilm elimination and angiogenesis stimulation. In this study, we incorporated polyaniline (PANI) and S-Nitrosoglutathione (GSNO) into a polyvinyl alcohol, chitosan, and hydroxypropyltrimethyl ammonium chloride chitosan (PVA/CS/HTCC) matrix, creating a versatile wound dressing membrane through electrospinning. The dressing combines the advantages of photothermal antibacterial therapy and nitric oxide gas therapy, exhibiting enduring and effective bactericidal activity and biofilm disruption against methicillin-sensitive Staphylococcus aureus, methicillin-resistant Staphylococcus aureus, and Escherichia coli. Furthermore, the membrane's PTT effect and NO release exhibit significant synergistic activation, enabling a nanodetonator-like burst release of NO through NIR irradiation to disintegrate biofilms. Importantly, the nanofiber sustained a uniform release of nitric oxide, thereby catalyzing angiogenesis and advancing cellular migration. Ultimately, the employment of this membrane dressing culminated in the efficacious amelioration of diabetic-infected wounds in Sprague-Dawley rats, achieving wound closure within a concise duration of 14 days. Upon applying NIR irradiation to the PVA-CS-HTCC-PANI-GSNO nanofiber membrane, it swiftly eradicates bacteria and biofilm within 5 min, enhancing its inherent antibacterial and anti-biofilm properties through the powerful synergistic action of PTT and NO therapy. It also promotes angiogenesis, exhibits excellent biocompatibility, and is easy to use, highlighting its potential in treating diabetic wounds.


Asunto(s)
Antibacterianos , Vendajes , Biopelículas , Óxido Nítrico , Terapia Fototérmica , Ratas Sprague-Dawley , Cicatrización de Heridas , Animales , Cicatrización de Heridas/efectos de los fármacos , Óxido Nítrico/farmacología , Óxido Nítrico/metabolismo , Ratas , Antibacterianos/farmacología , Antibacterianos/química , Antibacterianos/uso terapéutico , Biopelículas/efectos de los fármacos , Terapia Fototérmica/métodos , Masculino , Quitosano/química , Quitosano/farmacología , Nanofibras/química , Escherichia coli/efectos de los fármacos , Staphylococcus aureus Resistente a Meticilina/efectos de los fármacos , Diabetes Mellitus Experimental/complicaciones , Staphylococcus aureus/efectos de los fármacos , Alcohol Polivinílico/química , Alcohol Polivinílico/farmacología , S-Nitrosoglutatión/farmacología , S-Nitrosoglutatión/química
13.
Biopolymers ; 115(3): e23579, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38578129

RESUMEN

In this study, a new biomaterial with polyvinyl alcohol (PVA)/sodium caseinate (SodCa)/reduced graphene oxide (rGO) structure was developed. Antibacterial effective nanofibers were successfully produced by electrospinning method from 1%, 3%, 5%, and 7% rGO added PVA/SodCa (60:40, w:w) solution mixtures prepared for use as modern wound dressings. To create a usage area, especially in exuding wounds, hydrophilic PVA/SodCa/rGO electrospun mats were cross-linked by dipping them in a glutaraldehyde (GLA) bath. The surface micrographs of all nanofibers were homogeneous and smooth. rGO-doped biomaterials were obtained as thin nanofibers in the range of 301-348 nm. Nanofibers, which were completely soluble in water, after cross-linking preserved their existence in the range of 87%-81% at the end of the 24th hour in distilled water. It was reported that these biomaterials that persist in an aqueous environment show swelling behavior in the range of 275%-608%. The porosity of uncross-linked pure PVA/SodCa nanofibers increased by 46.75% after cross-linking. Moreover, the tensile strength of cross-linked PVA/SodCa electrospun mats increased in the presence of rGO. Provided that wound dressing is done every 24 h with 3% rGO-doped PVA/SodCa nanofiber and provided that wound dressing is done every 48 h with 5% rGO-doped PVA/SodCa nanofiber showed antibacterial activity against S. aureus as 99.38% and 99.55%, respectively.


Asunto(s)
Antibacterianos , Vendajes , Caseínas , Grafito , Nanofibras , Alcohol Polivinílico , Alcohol Polivinílico/química , Grafito/química , Antibacterianos/farmacología , Antibacterianos/química , Nanofibras/química , Caseínas/química , Resistencia a la Tracción , Staphylococcus aureus/efectos de los fármacos , Reactivos de Enlaces Cruzados/química , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología
14.
Food Chem ; 450: 139347, 2024 Aug 30.
Artículo en Inglés | MEDLINE | ID: mdl-38653047

RESUMEN

Food freshness monitoring is an important component in ensuring food safety for consumers and the food industry. Therefore, there is an urgent need for a portable, low-cost, and efficient detection method to determine the freshness. In this study, polyvinyl alcohol (PVA) was used as polymer carrier to prepare electrospinning film containing curcumin (Cur) and gardenia blue (GB) as intelligent indicator label on food packaging for real-time nondestructive detection of freshness of shrimp. The detection limit of ammonia response is less than or equal to 20 ppm, and the detection time is about 1 min, indicating that it has a sensitive response effect. At the same time, a smartphone application that can identify amines in response to color changes has been developed, and consumers can understand freshness by scanning the label. This study demonstrates the huge potential of smart indicator labels for food freshness monitoring.


Asunto(s)
Embalaje de Alimentos , Alcohol Polivinílico , Teléfono Inteligente , Animales , Alcohol Polivinílico/química , Embalaje de Alimentos/instrumentación , Aminas/química , Aminas/análisis , Penaeidae/química , Mariscos/análisis , Curcumina/química , Curcumina/análisis
15.
ACS Appl Mater Interfaces ; 16(19): 25304-25316, 2024 May 15.
Artículo en Inglés | MEDLINE | ID: mdl-38654450

RESUMEN

Poly(vinyl alcohol) (PVA) hydrogels are water-rich, three-dimensional (3D) network materials that are similar to the tissue structure of living organisms. This feature gives hydrogels a wide range of potential applications, including drug delivery systems, articular cartilage regeneration, and tissue engineering. Due to the large amount of water contained in hydrogels, achieving hydrogels with comprehensive properties remains a major challenge, especially for isotropic hydrogels. This study innovatively prepares a multiscale-reinforced PVA hydrogel from molecular-level coupling to nanoscale enhancement by chemically cross-linking poly(vinylpyrrolidone) (PVP) and in situ assembled aromatic polyamide nanofibers (ANFs). The optimized ANFs-PVA-PVP (APP) hydrogels have a tensile strength of ≈9.7 MPa, an elongation at break of ≈585%, a toughness of ≈31.84 MJ/m3, a compressive strength of ≈10.6 MPa, and a high-water content of ≈80%. It is excellent among all reported PVA hydrogels and even comparable to some anisotropic hydrogels. System characterizations show that those performances are attributed to the particular multiscale load-bearing structure and multiple interactions between ANFs and PVA. Moreover, APP hydrogels exhibit excellent biocompatibility and a low friction coefficient (≈0.4). These valuable performances pave the way for broad potential in many advanced applications such as biological tissue replacement, flexible wearable devices, electronic skin, and in vivo sensors.


Asunto(s)
Materiales Biocompatibles , Hidrogeles , Nanofibras , Alcohol Polivinílico , Povidona , Nanofibras/química , Alcohol Polivinílico/química , Hidrogeles/química , Povidona/química , Materiales Biocompatibles/química , Animales , Ratones , Nylons/química , Resistencia a la Tracción , Ensayo de Materiales , Fuerza Compresiva
16.
ACS Macro Lett ; 13(5): 475-482, 2024 May 21.
Artículo en Inglés | MEDLINE | ID: mdl-38591821

RESUMEN

The development of antioxidant wound dressings to remove excessive free radicals around wounds is essential for wound healing. In this study, we developed an efficient strategy to prepare antioxidant self-healing hydrogels as wound dressings by combining multicomponent reactions (MCRs) and postpolymerization modification. A polymer containing ferrocene and phenylboronic acid groups was developed via the Biginelli reaction, followed by efficient modification. This polymer is antioxidant due to its ferrocene moieties and can rapidly cross-link poly(vinyl alcohol) to realize an antioxidant self-healing hydrogel through dynamic borate ester linkages. This hydrogel has low cytotoxicity and is biocompatible. In in vivo experiments, this hydrogel is superior to existing clinical dressings in promoting wound healing. This study demonstrates the value of the Biginelli reaction in exploring biomaterials, potentially offering insights into the design of other multifunctional polymers and related materials using different MCRs.


Asunto(s)
Antioxidantes , Compuestos Ferrosos , Hidrogeles , Metalocenos , Cicatrización de Heridas , Compuestos Ferrosos/química , Metalocenos/química , Hidrogeles/química , Hidrogeles/farmacología , Cicatrización de Heridas/efectos de los fármacos , Antioxidantes/farmacología , Antioxidantes/química , Animales , Ratones , Ácidos Borónicos/química , Alcohol Polivinílico/química , Humanos , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología
17.
Int J Biol Macromol ; 268(Pt 1): 131602, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38626836

RESUMEN

The use of biopolymers as matrices and anthocyanins as pH-sensing indicators has generated increasing interest in freshness detection. Nevertheless, the weak mechanical properties and color stability of biopolymer-based smart packaging systems restrict their practicality. In this study, a nanocellulose hydrogel colorimetric film with enhanced stretchability, antifatigue properties, and color stability was prepared using soy hull nanocellulose (SHNC), polyvinyl alcohol (PVA), sodium alginate (SA), and anthocyanin (Anth) as raw materials. This hydrogel colorimetric film was used to detect beef freshness. The structure and properties (e.g., mechanical, thermal stability and hydrophobicity) of these hydrogel colorimetric films were characterized using different techniques. Fourier-transform infrared spectroscopy revealed the presence of hydrogen and ester bonds in the hydrogel colorimetric films, whereas scanning electron microscopy revealed the fish scale-like and honeycomb network structure of the hydrogel colorimetric films. Mechanical testing demonstrated that the SHNC/PVA/SA/Anth-2 hydrogel colorimetric film exhibited excellent tensile properties (elongation = 261 %), viscoelasticity (storage modulus of 11.25 kPa), and mechanical strength (tensile strength = 154 kPa), and the hydrogel colorimetric film exhibited excellent mechanical properties after repeated tensile tests. Moreover, the hydrogel colorimetric film had high transparency, excellent anti-UV linearity, thermal stability and hydrophobicity, and had displayed visually discernible color response to pH buffer solution and volatile NH3 by naked eyes, which was highly correlated with the TVB-N and pH values. Notably, the release of anthocyanin in distilled water decreased from 81.23 % to 19.87 %. The designed SHNC/PVA/SA/Anth hydrogel colorimetric films exhibited potential application as smart packaging film or gas-sensing labels in monitoring the freshness of meat products.


Asunto(s)
Celulosa , Colorimetría , Carne Roja , Celulosa/química , Colorimetría/métodos , Carne Roja/análisis , Animales , Bovinos , Embalaje de Alimentos , Antocianinas/química , Antocianinas/análisis , Hidrogeles/química , Alcohol Polivinílico/química , Resistencia a la Tracción , Concentración de Iones de Hidrógeno , Interacciones Hidrofóbicas e Hidrofílicas , Nanoestructuras/química
18.
Int J Biol Macromol ; 268(Pt 1): 131627, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38636752

RESUMEN

Nanoparticles-loaded bio-based polymers have emerged as a sustainable substitute to traditional oil-based packaging materials, addressing the challenges of limited recyclability and significant environmental impact. However, the functionality and efficiency of nanoparticles have a significant impact on the application of bio-based composite films. Herein, graphitic carbon nitride (g-C3N4) and titanium dioxide (TiO2) coupled photocatalyst (g-C3N4-TiO2) was prepared by one-step calcination and introduced into chitosan (CS) and polyvinyl alcohol (PVA) solution to fabricate g-C3N4-TiO2/CS/PVA green renewable composite film via solution casting method. The results demonstrated the successful preparation of a Z-scheme heterojunction g-C3N4-TiO2 with exceptional photocatalytic activity. Furthermore, the incorporation of heterojunction enhanced mechanical properties, water barrier, and ultraviolet (UV) resistance properties of the fresh-keeping film. The g-C3N4-TiO2/CS/PVA composite film exhibited superior photocatalytic antibacterial preservation efficacy on strawberries under LED light, with a prolonged preservation time of up to 120 h, when compared to other films such as polyethylene (PE), CS/PVA, g-C3N4/CS/PVA, and TiO2/CS/PVA. In addition, the composite film has good recyclability and renewability. This work is expected to have great potential for low-cost fruit preservation and sustainable packaging, which also contributes to environmental protection.


Asunto(s)
Quitosano , Embalaje de Alimentos , Grafito , Alcohol Polivinílico , Titanio , Titanio/química , Quitosano/química , Alcohol Polivinílico/química , Embalaje de Alimentos/métodos , Grafito/química , Frutas/química , Catálisis , Compuestos de Nitrógeno/química , Antibacterianos/química , Antibacterianos/farmacología
19.
Drug Dev Ind Pharm ; 50(5): 446-459, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38622817

RESUMEN

OBJECTIVE: The aim of the present study was to develop and optimize a wound dressing film loaded with chloramphenicol (CAM) and ibuprofen (IBU) using a Quality by Design (QbD) approach. SIGNIFICANCE: The two drugs have been combined in the same dressing as they address two critical aspects of the wound healing process, namely prevention of bacterial infection and reduction of inflammation and pain related to injury. METHODS: Three critical formulation variables were identified, namely the ratios of Kollicoat SR 30D, polyethylene glycol 400 and polyvinyl alcohol. These variables were further considered as factors of an experimental design, and 17 formulations loaded with CAM and IBU were prepared via solvent casting. The films were characterized in terms of dimensions, mechanical properties and bioadhesion. Additionally, the optimal formulation was characterized regarding tensile properties, swelling behavior, water vapor transmission rate, surface morphology, thermal behavior, goniometry, in vitro drug release, cell viability, and antibacterial activity. RESULTS: The film was optimized by setting minimal values for the folding endurance, adhesive force and hardness. The optimally formulated film showed good fluid handling properties in terms of swelling behavior and water vapor transmission rate. IBU and CAM were released from the film up to 80.9% and 82.5% for 8 h. The film was nontoxic, and the antibacterial activity was prominent against Micrococcus spp. and Streptococcus pyogenes. CONCLUSIONS: The QbD approach was successfully implemented to develop and optimize a novel film dressing promising for the treatment of low-exuding acute wounds prone to infection and inflammation.


Asunto(s)
Antibacterianos , Vendajes , Cloranfenicol , Ibuprofeno , Cicatrización de Heridas , Ibuprofeno/administración & dosificación , Ibuprofeno/química , Ibuprofeno/farmacología , Cicatrización de Heridas/efectos de los fármacos , Cloranfenicol/administración & dosificación , Cloranfenicol/farmacología , Cloranfenicol/química , Antibacterianos/administración & dosificación , Antibacterianos/farmacología , Antibacterianos/química , Liberación de Fármacos , Humanos , Alcohol Polivinílico/química , Polietilenglicoles/química , Animales , Supervivencia Celular/efectos de los fármacos , Química Farmacéutica/métodos
20.
J Mech Behav Biomed Mater ; 155: 106540, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38615407

RESUMEN

MXene, as a new category of two-dimensional nanomaterials, exhibits a promising prospect in biomedical applications due to its ultrathin structure and morphology, as well as a range of remarkable properties such as biological, chemical, electronic, and optical properties. In this work, different concentrations of MXene (M) were added to polyvinyl alcohol (PVA, P)/nano-hydroxyapatite (n-HA, H) mixed solution, and series of PVA/n-HA/MXene (PHM) composite membranes were obtained by combining sol-gel and freeze-drying processes. Morphology, chemical composition, surface, and mechanical properties of the prepared PHM membranes were characterized by various techniques. Subsequently, the swelling and degradation performances of the composite membranes were tested by swelling and degradation tests. In addition, in vitro studies like cell adhesion, cytotoxicity, proliferation, osteogenic differentiation, and antibacterial properties of MC3T3-E1 were also evaluated. The results showed that the addition of MXene could apparently improve the composite membranes' physicochemical properties, bioactivity, and osteogenic differentiation. Specially, PHM membrane had the best comprehensive properties when the concentration of MXene was set as 2.0% w/v. In a word, the addition of MXene has a positive effect on improving the mechanical properties, osteogenic induction, and antibacterial properties of PH composite membranes, and the prepared PHM composite membranes possess potential applications for guided bone regeneration.


Asunto(s)
Materiales Biocompatibles , Regeneración Ósea , Durapatita , Alcohol Polivinílico , Durapatita/química , Durapatita/farmacología , Alcohol Polivinílico/química , Regeneración Ósea/efectos de los fármacos , Ratones , Animales , Materiales Biocompatibles/química , Materiales Biocompatibles/farmacología , Membranas Artificiales , Fenómenos Mecánicos , Proliferación Celular/efectos de los fármacos , Osteogénesis/efectos de los fármacos , Ensayo de Materiales , Adhesión Celular/efectos de los fármacos , Antibacterianos/farmacología , Antibacterianos/química , Regeneración Tisular Dirigida , Nanoestructuras/química , Línea Celular , Diferenciación Celular/efectos de los fármacos , Nanocompuestos/química
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