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Healthcare Innovations

Process development of healthy snack products from germinated brown rice flour and banana flour using the extrusion process

คณะอุตสาหกรรมอาหาร

Process development of healthy snack products from germinated brown rice flour and banana flour using the extrusion process

This study aimed to develop a formula and production process for snacks made from germinated brown rice flour and banana flour using the extrusion process. The results indicated that both germinated brown rice flour and banana flour could be effectively used as the main raw materials for snack production via extrusion. The proportion of flour in the formula and production conditions, such as moisture content of the raw materials, barrel temperature, and screw speed, significantly influenced the nutritional value, bioactive compound levels, and antioxidant activity of the final products.

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The use of Houttuynia cordata Thunb and Piper retrofractum Vahl extracts to inhibit opportunistic infections in patient with atopic dermatitis

คณะวิทยาศาสตร์

The use of Houttuynia cordata Thunb and Piper retrofractum Vahl extracts to inhibit opportunistic infections in patient with atopic dermatitis

Atopic dermatitis patients are the second largest number among skin disease patients. There is no cure for atopic dermatitis, and it can only be treated to relieve symptoms, causing chronic disease. There is a chance that opportunistic infections will enter and cause more disease from the patient's wound, causing the patient to have complications from other infections. This study is interested in studying the reduction of the chance of opportunistic infections in patients with atopic dermatitis using natural extracts. The interest is in Plu Kaow and long pepper because there is data supporting the inhibition of microorganisms. The leaves of both plants are crudely extracted, soaked in 95% ethanol for 7 days, filtered with a Buchner filter, and the extracts are tested for phytochemicals to analyze phenolic components, flavonoids, tannins, anthocyanin, DPPH, and tested for antimicrobial properties. The experiments consisted of 5 types of gram-positive and gram-negative bacteria: E. coli, Bacillus subtilis, Pseudomonas aeruginosa, Staphylococcus aureus, and Staphylococcus epidermidis. The researcher expects that this can be further developed and used to treat patients with atopic dermatitis.

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Aggregated gallic acid-modified platinum nanoparticles as colorimetric sensor for tannic acid detection in beverages based on displacement phenomenon

คณะวิทยาศาสตร์

Aggregated gallic acid-modified platinum nanoparticles as colorimetric sensor for tannic acid detection in beverages based on displacement phenomenon

A new colorimetric assay for the rapid detection of tannic acid in beverage samples based on displacement phenomenon of aggregated gallic acid-modified platinum nanoparticles is developed for the first time. PtNPs were functionalized with gallic acid, promoting the formation of the green-hued aggregated nanoparticles. While colorimetry offers a rapid method for identifying tannic acid, challenges remain in sensitivity and accuracy of detection on the PtNPs colorimetric probe, particularly in the presence of anthocyanin interferences. To address this, we developed a sample preparation method to degrade anthocyanin in beverages. Tannic acid was easily displaced onto the gallic acid-coated PtNPs surfaces, causing dispersion and resulting in a visible color change from green to orange−brown. Under the optimal conditions, the colorimetric sensor exhibited a linear response in the range of 1−2,000 µmol L−1 (R2 = 0.9991). The limit of detection (LOD) and the limit of quantification (LOQ) were found at 0.02 and 0.09 µmol L−1, respectively. The proposed sensor expressed superior selectivity over other interfering substances and demonstrated excellent precision with a relative standard deviation (RSD) of 1.00%−3.36%. More importantly, recoveries ranging from 95.0−104.7% were obtained, indicating the capability of proposed colorimetric sensor to detect tannic acid rapidly and accurately in real beverage samples.

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Development of Terminalia Chebula Retz. Extract loaded Edible Film for mouth against wound

คณะอุตสาหกรรมอาหาร

Development of Terminalia Chebula Retz. Extract loaded Edible Film for mouth against wound

This study focused on the development of an edible film containing Terminalia chebula Retz extract for the treatment of oral ulcers. The film was designed to dissolve in the mouth without the need for swallowing or chewing, which is suitable for people with canker sores or oral inflammation. Terminalia chebula extract has been shown to have several pharmacological properties, including antimicrobial, antioxidant, and anti-inflammatory activities.

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Development of synbiotic tepache for health

คณะอุตสาหกรรมอาหาร

Development of synbiotic tepache for health

Tepache is a traditional Mexican fermented beverage commonly made using pineapple peels, which naturally contain sugars and the enzyme bromelain. These components contribute to its distinctive aroma and unique flavor. This project aims to develop a health-enhancing tepache by fermenting pineapple peels with probiotic yeast and lactic acid bacteria. Additionally, prebiotics, including inulin and xylo-oligosaccharides, are incorporated as nutrients to support probiotic growth. The resulting synbiotic tepache promotes gut microbiota balance, exhibits antioxidant properties, and enhances the immune system, making it a functional and beneficial beverage for consumers.

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In Silico Drug Discovery of Emerging Immune Checkpoint TIGIT-Binding Compounds for Cancer Immunotherapy: Computational Screening, Docking Studies, and Molecular Dynamics Analysis

คณะวิทยาศาสตร์

In Silico Drug Discovery of Emerging Immune Checkpoint TIGIT-Binding Compounds for Cancer Immunotherapy: Computational Screening, Docking Studies, and Molecular Dynamics Analysis

Cancer remains a major global health challenge as the second-leading cause of human death worldwide. The traditional treatments for cancer beyond surgical resection include radiation and chemotherapy; however, these therapies can cause serious adverse side effects due to their high killing potency but low tumor selectivity. The FDA approved monoclonal antibodies (mAbs) that target TIGIT/PVR (T-cell immunoglobulin and ITIM domain/poliovirus receptor) which is an emerging immune checkpoint molecules has been developed; however, the clinical translation of immune checkpoint inhibitors based on antibodies is hampered due to immunogenicity, immunological-related side effects, and high costs, even though these mAbs show promising therapeutic efficacy in clinical trials. To overcome these bottlenecks, small-molecule inhibitors may offer advantages such as better oral bioavailability and tumor penetration compared to mAbs due to their smaller size. Here, we performed structure-based virtual screening of FDA-approved drug repertoires. The 100 screened candidates were further narrowed down to 10 compounds using molecular docking, with binding affinities ranging from -9.152 to -7.643 kcal/mol. These compounds were subsequently evaluated for their pharmacokinetic properties using ADMET (Absorption, Distribution, Metabolism, Excretion, and Toxicity) analysis, which demonstrated favorable drug-like characteristics. The lead compounds will be further analyzed for conformational changes and binding stability against TIGIT through molecular dynamics (MD) simulations to ensure that no significant conformational changes occur in the protein structure. Collectively, this study represents the potential of computational methods and drug repurposing as effective strategies for drug discovery, facilitating the accelerated development of novel cancer treatments.

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Investigation of the Optimal Ratio of Ginger, Banana Flower, and Roselle in Liposomal Encapsulation to Enhance Antioxidant Activity and Total Phenolic Content

คณะอุตสาหกรรมอาหาร

Investigation of the Optimal Ratio of Ginger, Banana Flower, and Roselle in Liposomal Encapsulation to Enhance Antioxidant Activity and Total Phenolic Content

The growing interest in antioxidant-rich foods is driven by their potential to reduce the risk of chronic diseases such as cancer, cardiovascular conditions, and cellular degeneration. Ginger (Zingiber officinale), banana inflorescence (Musa paradisiaca L.), and roselle (Hibiscus sabdariffa L.) are herbal plants known for their high phenolic content, a crucial component in antioxidant activity. However, the bioactive compounds in these plants are often unstable when exposed to light, temperature, and oxygen, leading to a reduction in their efficacy. This study aims to investigate the optimal ratio of ginger, banana inflorescence, and roselle for encapsulation in liposomes—a technique designed to enhance the stability of bioactive compounds and improve their delivery efficacy. The research evaluates the antioxidant activity of the extracts using DPPH, ABTS, and FRAP methods, alongside total phenolic content (TPC) measurement. The most effective ratio for antioxidant activity will be selected for liposomal encapsulation, employing phospholipids as key structural components. The encapsulation efficiency (EE%) will be calculated to assess the effectiveness of the liposomal delivery system. The findings are expected to identify the optimal combination of ginger, banana inflorescence, and roselle that maximizes antioxidant potency and enhances the stability of bioactive compounds through liposomal encapsulation. This approach offers a promising strategy for developing herbal health supplements that maintain their biological properties over time.

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Photoelectrochemical sensor for salbutamol detection using molecular imprinted-polymer technique with CuO/g-C₃N₄ nanocomposite

วิทยาลัยเทคโนโลยีและนวัตกรรมวัสดุ

Photoelectrochemical sensor for salbutamol detection using molecular imprinted-polymer technique with CuO/g-C₃N₄ nanocomposite

The photoelectrochemical detection of salbutamol, which is illicitly used as a lean meat promoter in pigs, is investigated using a molecularly imprinted polymer (MIP)-based sensor with a CuO/g-C₃N₄ nanocomposite to enhance detection performance, leveraging nanomaterials and molecular imprinting for high selectivity and sensitivity. This approach offers a promising strategy for the precise and efficient analysis of salbutamol in food samples.

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CLASSIFICATION OF OTITIS MEDIA TYPE USING OTOSCOPIC IMAGES

คณะวิทยาศาสตร์

CLASSIFICATION OF OTITIS MEDIA TYPE USING OTOSCOPIC IMAGES

Otitis Media is an infection of the middle ear that can occur in individuals of all ages. Diagnosis typically involves analyzing images taken with an otoscope by specialized physicians, which relies heavily on medical experience to expedite the process. This research introduces computer vision technology to assist in the preliminary diagnosis, aiding expert decision-making. By utilizing deep learning techniques and convolutional neural networks, specifically the YOLOv8 and Inception v3 architectures, the study aims to classify the disease and its five characteristics used by physicians: color, transparency, fluid, retraction, and perforation. Additionally, image segmentation and classification methods were employed to analyze and predict the types of Otitis Media, which are categorized into four types: Otitis Media with Effusion, Acute Otitis Media with Effusion, Perforation, and Normal. Experimental results indicate that the classification model performs moderately well in directly classifying Otitis Media, with an accuracy of 65.7%, a recall of 65.7%, and a precision of 67.6%. Moreover, the model provides the best results for classifying the perforation characteristic, with an accuracy of 91.8%, a recall of 91.8%, and a precision of 92.1%. In contrast, the classification model that incorporates image segmentation techniques achieved the best overall performance, with an mAP50-95 of 79.63%, a recall of 100%, and a precision of 99.8%. However, this model has not yet been tested for classifying the different types of Otitis Media.

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