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2023

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Articles 241 - 254 of 254

Full-Text Articles in Biotechnology

Development Of Hamper Pad On Lateral Flow Immunoassay For Sensitivity Improvement Of Carbendazim Detection, Pumnatthiga Makkala Jan 2023

Development Of Hamper Pad On Lateral Flow Immunoassay For Sensitivity Improvement Of Carbendazim Detection, Pumnatthiga Makkala

Chulalongkorn University Theses and Dissertations (Chula ETD)

Carbendazim (CBZ) is a fungicide that effectively controls fungal diseases like sheath blight, leaf spot, powdery mildew, and pythium root rot in agricultural products. However, CBZ can be a left residue in food and the environment that can affect human health and cause various diseases. Currently, lateral flow immunoassays (LFIAs) are commonly used for measuring and screening diseases or substances; they are low-cost and easily portable. Nevertheless, conventional LFIA methods have a drawback: low detection sensitivity. Structural improvement of LFIAs has been studied to enhance detection sensitivity. In this study, a hamper pad was fabricated using a nitrocellulose membrane coated …


Decolorization Of Remazol Brilliant Blue R With Immobilized Laccase In Spent Coffee Ground Biochar, Indah Puji Lestari Jan 2023

Decolorization Of Remazol Brilliant Blue R With Immobilized Laccase In Spent Coffee Ground Biochar, Indah Puji Lestari

Chulalongkorn University Theses and Dissertations (Chula ETD)

The amount of recalcitrant compound such as synthetic dye can be a threat to sustainability of the environment. Biocatalytic treatment using oxidoreductase enzyme such as laccase has been considered as environmentally benign method. However, the enzyme has some limitations for the applications especially the reusability and stability which required the enzyme to be immobilized to overcome the limits. In this study the laccase, one of oxidoreductase enzyme produced from Megasporoporia sp., was immobilized into spent coffee ground biochar with alkali modification. The spent coffee ground itself has huge source since it was discharge as a waste from one of the …


Antioxidant And Anticancer Activities Of Polysaccharide Extracted From White-Rot Fungus Trametes Polyzona Cu07, Budi Kurniawan Jan 2023

Antioxidant And Anticancer Activities Of Polysaccharide Extracted From White-Rot Fungus Trametes Polyzona Cu07, Budi Kurniawan

Chulalongkorn University Theses and Dissertations (Chula ETD)

Over the last decade, fungal polysaccharides have gained interest for their therapeutic activity as anticancer agent. This research aimed to investigate a newly isolated Trametes polyzona CU07 for its anticancer and antioxidant activity. CTPPs, an obtained crude polysaccharides of T. polyzona were extracted by hot water from its mycelia. Subsequently, the extract was analysed its chemical properties. Scavenging activity on ABTS and DPPH was evaluated for antioxidant performance. Furthermore, the anticancer activity was evaluated by performing the inhibitory effects, proliferation, apoptosis induction and colony formation assay. MCF-7 cell line and triple negative breast cancer (MDA-MB-231 and MDA-MB-468) were used as …


Electrochemical Dna Super-Sandwich Biosensor For Porcine Dna Adulteration Detection In Foods, Vasita Lapeee Jan 2023

Electrochemical Dna Super-Sandwich Biosensor For Porcine Dna Adulteration Detection In Foods, Vasita Lapeee

Chulalongkorn University Theses and Dissertations (Chula ETD)

Amid increasing concerns over meat adulteration and mislabeling, which impact consumer trust, especially among people who are forbidden from consuming certain meats due to religious, cultural, and health reasons, there is a need for reliable detection methods. Although standard methods for genetic material detection, such as DNA amplification, offer high sensitivity, they also present limitations in terms of cost, instrument complexity, and lengthy detection times. Addressing these limitations, this thesis focuses on developing an electrochemical DNA sensor for detecting porcine DNA contamination in food without prior DNA amplification. The proposed method is straightforward, rapid, and cost-effective. The detection process involves …


In Silico And In Vitro Studies On Inclusion Complex Of 8-Bromobaicalein With Beta-Cyclodextrins, Noriyuki Yasuda Jan 2023

In Silico And In Vitro Studies On Inclusion Complex Of 8-Bromobaicalein With Beta-Cyclodextrins, Noriyuki Yasuda

Chulalongkorn University Theses and Dissertations (Chula ETD)

Baicalein (5,6,7-trihydroxyflavone), an active compound derived from Scutellaria baicalensis Georgi, exhibits notable anti-inflammatory, antiviral, and anticancer properties. 8-bromobaicalein (BB), a derivative of baicalein, possesses even stronger cytotoxic activity against MCF-7 human breast cancer cell lines. However, its low water solubility limits its use for further applications. In this study, we investigated βCD and its derivatives (hydroxypropyl-β-cyclodextrin (HPβCD) and 2,6-di-O-methyl-β-cyclodextrin (DMβCD)) for their ability to improve the solubility of BB through inclusion complexation. From molecular dynamics simulations and MM/GBSA-based and SIE-based binding free energy calculations, we determined that DMβCD exhibited the highest efficacy as a host molecule for the inclusion complexation …


Bioactive Compounds From Holy Basil (Ocimum Tenuiflorum L.) Against Angiotensin-Converting Enzyme2 (Ace2), Sirinat Chalkual Jan 2023

Bioactive Compounds From Holy Basil (Ocimum Tenuiflorum L.) Against Angiotensin-Converting Enzyme2 (Ace2), Sirinat Chalkual

Chulalongkorn University Theses and Dissertations (Chula ETD)

The present study aimed to discover bioactive compounds 3 types of holy basil and clove basil that could inhibit SARS-CoV-2 binding to the Angiotensin-converting enzyme 2 receptors (ACE2) and prohibiting the virus from penetrating into the host cells. The leaves and stem of 3 types of holy basils and clove basil were extracted separately through steam-distillation, liquid-liquid extraction and column chromatography and all extracts were characterized by GC/MS and NMR spectrometry and examied their ACE2 inhibitory activity. Essential oils and water phase of red holy basil showed the highest inhibition with IC50 values of 0.026 and IC50 0.310 microgram per …


Identification And Characterization Of Bacteriophages For Phage Cocktail Formulation Specific To Uropathogenic Escherichia Coli, Pattida Kongsomboonchoke Jan 2023

Identification And Characterization Of Bacteriophages For Phage Cocktail Formulation Specific To Uropathogenic Escherichia Coli, Pattida Kongsomboonchoke

Chulalongkorn University Theses and Dissertations (Chula ETD)

Urinary tract infections (UTIs) are commonly found in elderlies, infants, hospitalized patients, and most women. UTIs are caused by a variety of pathogens with uropathogenic Escherichia coli (UPEC) is mostly prevalence. Even though UPEC can be treated with several antibiotics, the rapid emergence of multidrug resistant (MDR)-UPEC renders the antibiotic treatment no longer successful. Therapy using phages, which are bacterial viruses, has been considered but it is limited by bacterial resistance that develops during evolution. Fortunately, the suppression of phage resistance can be improved when used several phages as a cocktail. Here, I aim to formulate an efficient phage cocktail …


Extension Of The Ergot Alkaloid Gene Cluster, Samantha Joy Fabian Jan 2023

Extension Of The Ergot Alkaloid Gene Cluster, Samantha Joy Fabian

Graduate Theses, Dissertations, and Problem Reports (ETD)

Specialized metabolites produced by fungi impact human health. A large portion of the pharmaceuticals currently on the market are derived from metabolites biosynthesized by microbes. Ergot alkaloids are a class of fungal metabolites that are important in the interactions of environmental fungi with insects and mammals and also are used in the production of pharmaceuticals. In animals, ergot alkaloids can act as partial agonists or antagonists at receptors for 5-hydroxytryptamine (serotonin), dopamine, and noradrenaline as ergot alkaloids have chemical structures similar to those neurotransmitters. Therefore, they affect insects and mammals that consume them and can be used to produce drugs …


Sequencing Antisense Transcriptome Of Populus Through Antisense/Sense Transcript Pair Enrichment, Emma V. Burke Jan 2023

Sequencing Antisense Transcriptome Of Populus Through Antisense/Sense Transcript Pair Enrichment, Emma V. Burke

Dissertations, Master's Theses and Master's Reports

Past transcriptome research on plants focused primarily on protein coding genes, and only recently researchers began looking into the non-protein coding regions that may play significant roles in gene regulation. Antisense RNA transcripts that are found naturally in the cell share complementary sequence with sense transcripts and have been shown to regulate expression of their sense counterparts. Since antisense RNA has been largely under-studied and difficult to sequence because of their low relative abundance, new methods are needed to target antisense RNA for efficient genome-wide profiling. To address this gap in methods to efficiently and cost effectively enrich antisense RNA …


The Investigation Of Novel Bovine Oocyte-Specific Long Non-Coding Rnas And Their Roles In Oocyte Maturation And Early Embryonic Development, Jaelyn Zoe Current Jan 2023

The Investigation Of Novel Bovine Oocyte-Specific Long Non-Coding Rnas And Their Roles In Oocyte Maturation And Early Embryonic Development, Jaelyn Zoe Current

Graduate Theses, Dissertations, and Problem Reports (ETD)

Early embryonic loss is a significant factor in livestock species' infertility, resulting in an economic deficit. In cattle, the in vivo fertilization rate is ~90%, with an average calving rate of about 55%, indicating an embryonic-fetal mortality rate of roughly 35%. Further, 70-80% of total embryonic loss in cattle occurs during the first three weeks after insemination, particularly between days 7-16. Growing evidence indicates that the oocyte plays an active role in regulating critical aspects of the reproductive process required for successful fertilization, embryo development, and pregnancy. However, defining oocyte quality remains enigmatic. Recently, many have abandoned the notion that …


Assessing The Biocatalytic Promiscuity Of Pep- Transformations For Geminal-Difluorination, Eloy Jose Torres Garcia Jan 2023

Assessing The Biocatalytic Promiscuity Of Pep- Transformations For Geminal-Difluorination, Eloy Jose Torres Garcia

Theses and Dissertations (Comprehensive)

Fluorine is the most electronegative chemical element and can drastically change molecular properties, such as drug pharmacokinetics and agrochemical half-life. Although a great deal of progress is occurring in synthetic methods to access various organofluorines, these methods struggle with harsh conditions and limited substrate scope. Biocatalytic approaches offer the potential to access organofluorines that are difficult or impossible with the current methodology. Phosphoenolpyruvate (PEP) is a central metabolite and biosynthetic precursor for diverse molecules. Phosphoenol pyruvate mutase (Ppm) catalyses the interconversion of Phosphonopyruvate (PnPy) to Phosphoenolpyruvate (PEP). This research successfully expressed and …


Long-Range Aceo Phenomena In Microfluidic Channel, Diganta Dutta, Keifer Smith, Xavier Palmer Jan 2023

Long-Range Aceo Phenomena In Microfluidic Channel, Diganta Dutta, Keifer Smith, Xavier Palmer

Electrical & Computer Engineering Faculty Publications

Microfluidic devices are increasingly utilized in numerous industries, including that of medicine, for their abilities to pump and mix fluid at a microscale. Within these devices, microchannels paired with microelectrodes enable the mixing and transportation of ionized fluid. The ionization process charges the microchannel and manipulates the fluid with an electric field. Although complex in operation at the microscale, microchannels within microfluidic devices are easy to produce and economical. This paper uses simulations to convey helpful insights into the analysis of electrokinetic microfluidic device phenomena. The simulations in this paper use the Navier–Stokes and Poisson Nernst–Planck equations solved using COMSOL …


Heat Shock Protein 90 (Hsp90) System In Health And Disease., Daniella Munezero Jan 2023

Heat Shock Protein 90 (Hsp90) System In Health And Disease., Daniella Munezero

Graduate Theses, Dissertations, and Problem Reports (ETD)

Cells rely on heat shock proteins (HSP) to facilitate and regulate the folding of the substrate proteins into their native state, and degradation if misfolding cannot be prevented. HSP90, a member of the HSP family, is a potential target for treatment of cancer and neurodegenerative diseases. Unfortunately, several clinical trials for cancer treatment have been discontinued due to cell toxicity accompanying HSP90 inhibition. HSP90 has four distinct but structurally similar paralogs. HSP90 inhibitors target all the paralogs despite increasing proof of functional differences among the paralogs. Understanding the in vivo function of HSP90 and the role played by each paralog …


Elucidation Of The Role Of Agouti-Signaling Protein Throughout Folliculogenesis And Early Embryonic Development In Cattle, Heather L. Chaney Jan 2023

Elucidation Of The Role Of Agouti-Signaling Protein Throughout Folliculogenesis And Early Embryonic Development In Cattle, Heather L. Chaney

Graduate Theses, Dissertations, and Problem Reports (ETD)

The oocyte expresses certain genes during folliculogenesis to regulate the acquisition of oocyte competence. Oocyte competence, which refers to the presence of imperative molecular factors in the oocyte that are critical for high oocyte quality, is directly related to the ability of the oocyte to result in a successful pregnancy following fertilization. Over the past few decades, the development and optimization of assisted reproductive technologies, particularly in vitrofertilization, have enabled the beef and dairy industries to advance cattle genetics and productivity. However, only approximately 40% of bovine embryos will develop to the blastocyst stage in vitro. In addition, bovine embryos …