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Full-Text Articles in Chemistry

Electrospun Nanofiber Scaffolds For In Vitro 3d Tissue Engineering, Victoria E. Santillan, Samerender Nagam Hanumantharao, Stephanie Bule, Ronish M. Shrestha, Carter Rodzik, Alan Mendoza Estrada, Stephen L. Farias, Marina Tanasova, Smitha Rao May 2026

Electrospun Nanofiber Scaffolds For In Vitro 3d Tissue Engineering, Victoria E. Santillan, Samerender Nagam Hanumantharao, Stephanie Bule, Ronish M. Shrestha, Carter Rodzik, Alan Mendoza Estrada, Stephen L. Farias, Marina Tanasova, Smitha Rao

Michigan Tech Publications

Tissue engineering is widely used in research for investigating cellular proliferation, behavior, and responses to various stimuli. However, the predictive value of preclinical studies using cell culture plates is limited by the inability to recapitulate the complexity of the physiological microenvironment. Synthetic three-dimensional (3D) scaffolds can be engineered to mimic the complex morphology of the extracellular matrix of native tissues and can serve as physiologically relevant platforms for preclinical studies. In this study, 3D electrospun scaffolds were characterized to aid in breast cancer research. Unlike previous studies that focused primarily on scaffold fabrication or cell viability, this work systematically evaluates …


How Fe(Ii)/2-Oxoglutarate Oxygenase Chooses Chlorination Over Hydroxylation: Electric Field-Driven Ligand Exchange Governs C-Cl Formation, Simahudeen Bathir Jaber Sathik Rifayee, Midhun George Thomas, Anandhu Krishnan, Kritika Gupta, Carter Davis, Tatyana Karabencheva-Christova, Christo Z. Christov May 2026

How Fe(Ii)/2-Oxoglutarate Oxygenase Chooses Chlorination Over Hydroxylation: Electric Field-Driven Ligand Exchange Governs C-Cl Formation, Simahudeen Bathir Jaber Sathik Rifayee, Midhun George Thomas, Anandhu Krishnan, Kritika Gupta, Carter Davis, Tatyana Karabencheva-Christova, Christo Z. Christov

Michigan Tech Publications

Non-heme Fe(II)/2-oxoglutarate (2OG)-dependent halogenases catalyze highly selective C-H halogenation. BesD is a non-heme Fe(II)/2OG halogenase that performs regio- and stereoselective chlorination of the l-lysine (l-Lys) substrate. Understanding the mechanism by which halogenation is favored over canonical hydroxylation is essential for guiding enzyme engineering efforts aimed at converting hydroxylases into halogenases. Here, we combine molecular dynamics (MD) and hybrid quantum mechanics/molecular mechanics (QM/MM) calculations to elucidate the origin of chlorination selectivity in BesD and variants derived from a homologous hydroxylase. Our results indicate that, although the initial inline Cl-Fe(III)-OH intermediate is inherently predisposed toward hydroxylation, it undergoes a two-step isomerization in …


Emaldi Ms And Oligonucleotide Analysis, Manoj Perera, Yipeng Yin, Reed Arneson, Fakhira Razzaq, Rishabh Awasthi, William Wittstock, Yinan Yuan, Shiyue Fang May 2026

Emaldi Ms And Oligonucleotide Analysis, Manoj Perera, Yipeng Yin, Reed Arneson, Fakhira Razzaq, Rishabh Awasthi, William Wittstock, Yinan Yuan, Shiyue Fang

Michigan Tech Publications

Enhanced matrix assisted laser desorption ionization mass spectrometry (eMALDI MS) refers to MALDI MS in which the efficacy of desorption and ionization is enhanced by heat, volatile species, or both, generated from chemical decomposition of additives in the sample of analyte under MALDI conditions. MALDI MS has been widely used for oligonucleotide (ON) analysis. However, two challenges, limited ability to analyze long ONs and low tolerance to trace salts, significantly restrict its applications. We recently proposed the ion pair thermal model for the gas phase ion formation mechanism of MALDI MS. This model predicts an exponential increase in ion yield …


4-Chlorobenzylamine Containing Maleic Acid Derivatives: Synthesis, In Silico Studies, And Anti-Alzheimer’S Activity, Muhammad Junaid Tariq, Madiha Kanwal, Athar Ata, Humaira Nadeem, Mahwish Siddiqui Feb 2026

4-Chlorobenzylamine Containing Maleic Acid Derivatives: Synthesis, In Silico Studies, And Anti-Alzheimer’S Activity, Muhammad Junaid Tariq, Madiha Kanwal, Athar Ata, Humaira Nadeem, Mahwish Siddiqui

Michigan Tech Publications

One way to protect neurons is to protect them from oxidative damage by reducing lipid peroxidation (LPO). Therapeutic medicines that target the inflammatory response have antioxidant activities and can also block inflammatory cascade pathways and counteract cell lyses. The goal of this investigation was to see if new maleic acid derivatives could protect the brain from scopolamine-induced amnesia. To evaluate and characterize the maleic acid derivatives, spectroscopic techniques such as 1H NMR and Fourier Transform Infrared Spectroscopy (FTIR) were used. To further evaluate the synthesized compounds, an in vitro DPPH antioxidant assay was performed, compound 2f exhibited the best …


Haze Processing Of Atmospheric Particles During Wintertime In The Indo-Gangetic Plains, Susan Mathai, Amna Ijaz, Tania Gautam, Zezhen Cheng, Nurun Nahar Lata, Harsh Bhotika, David Tseng, Rosalie K. Chu, Lynn Mazzoleni, Claudio Mazzoleni, Swarup China Jan 2026

Haze Processing Of Atmospheric Particles During Wintertime In The Indo-Gangetic Plains, Susan Mathai, Amna Ijaz, Tania Gautam, Zezhen Cheng, Nurun Nahar Lata, Harsh Bhotika, David Tseng, Rosalie K. Chu, Lynn Mazzoleni, Claudio Mazzoleni, Swarup China

Michigan Tech Publications

The impacts of haze on visibility, air quality, and climate are not well quantified due to a lack of understanding of the evolution of the mixing state and phase state of atmospheric particles during haze processing. The variability of the mixing state of atmospheric particles contributes significantly to uncertainties associated with the estimated aerosol radiative forcing. We collected particle samples in January 2018 from the highly polluted Indo-Gangetic plain during hazy conditions to study haze-processed particles. Single particle analysis using multi-modal micro-spectroscopy techniques revealed an abundance (40–70% by number) of potassium-rich sulfate particles from biomass-burning influenced smoke. Tilted view imaging …


Regio- And Stereoselective Halogenation By An Iron(Ii)- And 2-Oxoglutarate-Dependent Halogenase In The Biosynthesis Of Halogenated Nucleosides, Philip M. Palacios, Xiaoyun Li, Simahudeen Bathir Jaber Sathik Rifayee, Haoyu Tang, Tatyana Karabencheva-Christova, Christo Christov, Wei-Chen Chang, Yisong Guo Dec 2025

Regio- And Stereoselective Halogenation By An Iron(Ii)- And 2-Oxoglutarate-Dependent Halogenase In The Biosynthesis Of Halogenated Nucleosides, Philip M. Palacios, Xiaoyun Li, Simahudeen Bathir Jaber Sathik Rifayee, Haoyu Tang, Tatyana Karabencheva-Christova, Christo Christov, Wei-Chen Chang, Yisong Guo

Michigan Tech Publications

Iron(II)- and 2-oxoglutarate-dependent (Fe/2OG) enzymes have garnered strong research interest in past decades due to their ability to catalyze regio- and stereoselective C-H functionalization via a single reactive intermediate, the oxyferryl species. In addition to the hydroxylation reaction that is commonly observed, other reaction outcomes have also been discovered in Fe/2OG enzymes. Among them, halogenation has attracted much research effort with the goal of revealing the molecular determinants to favor halogenation over hydroxylation however, a full mechanistic picture is still missing. In this study, by investigating a recently identified Fe/2OG halogenase, AdeV, from the biosynthetic pathway of Adechlorin, we show, …


Comprehensive Review Of In Vitro Approaches For Environmental Heavy Metal Exposure, Manas Warke, Madeline English, Camila Padilla, Lexie Gasco, Wendy Leisner, Rupali Datta, Smitha Rao Sep 2025

Comprehensive Review Of In Vitro Approaches For Environmental Heavy Metal Exposure, Manas Warke, Madeline English, Camila Padilla, Lexie Gasco, Wendy Leisner, Rupali Datta, Smitha Rao

Michigan Tech Publications

Heavy metals are ubiquitous environmental pollutants, contaminating air, soil, and water via the erosion of natural deposits, as well as originating from anthropogenic sources, such as agriculture, industries, transportation, and landfills. The increasing utilization of heavy metals over the years, combined with the persistent nature of metals in the environment poses a direct threat to human and environment health. Although regulatory limits have been established for toxic metals, assessing the associated health risks using real-life exposure scenarios remains challenging. In this review, we summarize the development and use of in vitro models based two- and three-dimensional cell culture systems, focusing …


Revealing The Catalytic Mechanism Of The Fe(Ii)/2-Oxoglutarate-Dependent Human Epigenetic Modifying Enzyme Alkbh5, Fathima Hameed Cherilakkudy, Midhun George Thomas, Ann Varghese, Sodiq Waheed, Anandhu Krishnan, Vincenzo Venditti, Christopher J. Schofield, Deyu Li, Christo Christov, Tatyana Karabencheva-Christova Aug 2025

Revealing The Catalytic Mechanism Of The Fe(Ii)/2-Oxoglutarate-Dependent Human Epigenetic Modifying Enzyme Alkbh5, Fathima Hameed Cherilakkudy, Midhun George Thomas, Ann Varghese, Sodiq Waheed, Anandhu Krishnan, Vincenzo Venditti, Christopher J. Schofield, Deyu Li, Christo Christov, Tatyana Karabencheva-Christova

Michigan Tech Publications

ALKBH5 is one of only two known human non-heme Fe(II)/2-oxoglutarate-dependent oxygenases that catalyze the demethylation of N6-methyladenine (m6A) in single-stranded mRNA, underscoring its role in diverse cancers. Unlike its homolog, the fat mass and obesity-associated protein (FTO), which oxidizes m6A to a stable N6-hydroxymethyladenine (hm6A) intermediate, ALKBH5 demethylates m6A, yielding adenine and formaldehyde as products. Here, we integrate molecular dynamics simulations and quantum mechanics/molecular mechanics methods to elucidate ALKBH5’s complete catalytic mechanism. Two post-hydroxylation pathways were evaluated: a proton transfer pathway and a Schiff base formation pathway, with …


Correction: Turn-On Fluorescent Glucose Transport Bioprobe Enables Wash-Free Real-Time Monitoring Of Glucose Uptake Activity In Live Cells And Small Organisms, Monica S. Hensley, David Hutchings, Abdelrahman Ismail, Micaela Rayne Geborkoff, Thomas Werner, Marina Tanasova Jul 2025

Correction: Turn-On Fluorescent Glucose Transport Bioprobe Enables Wash-Free Real-Time Monitoring Of Glucose Uptake Activity In Live Cells And Small Organisms, Monica S. Hensley, David Hutchings, Abdelrahman Ismail, Micaela Rayne Geborkoff, Thomas Werner, Marina Tanasova

Michigan Tech Publications

Correction for “Turn-on fluorescent glucose transport bioprobe enables wash-free real-time monitoring of glucose uptake activity in live cells and small organisms” by Monica S. Hensley et al., RSC Chem. Biol., 2025, 6, 987–995, https://doi.org/10.1039/D4CB00239C.

The authors regret that two contributors, Micaela Rayne Geborkoff and Professor Dr Thomas Werner, were inadvertently omitted from the original author list of this article. Both individuals made significant contributions to the research reported.

Micaela Rayne Geborkoff was involved in the design, planning, and execution of the Drosophila experiments, specifically in the growth and treatment of fruit fly larvae. Professor Dr Thomas Werner provided …


Lanthanum-Based Nanoparticles: A Promising Frontier In Antimicrobial Applications, Ikhazuagbe H. Ifijen, Peter Agyemang, Emmanuel Faderin, Lovelyn Oyinyechi Odo, Emmanuel Ikechukwu Okeke, Divine Ifechukwu Onugha, Stella Eberechi Obuba, Obembe Oluwafunke, Chinyem Ogochukwu Jul 2025

Lanthanum-Based Nanoparticles: A Promising Frontier In Antimicrobial Applications, Ikhazuagbe H. Ifijen, Peter Agyemang, Emmanuel Faderin, Lovelyn Oyinyechi Odo, Emmanuel Ikechukwu Okeke, Divine Ifechukwu Onugha, Stella Eberechi Obuba, Obembe Oluwafunke, Chinyem Ogochukwu

Michigan Tech Publications

Lanthanum-based nanoparticles have garnered significant attention for their potential in antimicrobial applications due to their unique properties and mechanisms of action. This review explores the antimicrobial efficacy of various lanthanum-based nanoparticles, including La2O3, La(OH)3, and LaF3, highlighting their mechanisms of action such as disruption of microbial cell walls, generation of reactive oxygen species (ROS), and interference with microbial DNA and protein synthesis. Despite their promising attributes, several challenges hinder their practical application, including limited understanding of their mechanisms, concerns over biocompatibility and toxicity, and difficulties in scaling up production. Emerging trends in nanoparticle research, such as surface functionalization, smart delivery …


Unveiling Exosomal Biomarkers In Neurodegenerative Diseases: Lc-Ms-Based Profiling, Yue Bi, Liang Wang, Chunyan Li, Zhiying Shan, Lanrong Bi Jun 2025

Unveiling Exosomal Biomarkers In Neurodegenerative Diseases: Lc-Ms-Based Profiling, Yue Bi, Liang Wang, Chunyan Li, Zhiying Shan, Lanrong Bi

Michigan Tech Publications

Exosomes, small extracellular vesicles secreted by various cell types, play a critical role in intercellular communication and are increasingly recognized as key players in the progression of neurodegenerative diseases (NDs). Their ability to carry and propagate pathogenic proteins such as amyloid-beta, tau, and alpha-synuclein have established exosomal biomarkers as both key players in disease pathology and promising indicators for early diagnosis. Liquid chromatography-mass spectrometry (LC-MS) has emerged as a powerful tool for the comprehensive analysis of exosomal cargo, enabling the identification of proteins, metabolites, and other molecules associated with neurodegeneration. This review explores the structural composition, biogenesis, and role of …


Application Of Quechers Extraction Method For Optimization Of Organic Matters In Oil Sand By Ultrahigh Fourier Transform Infrared Orbitrap-Mass Spectrometry, Gbenga Aladekoyi, Emmanuel G. Olumayede, Samuel O. Olusanya, Simeon Schum May 2025

Application Of Quechers Extraction Method For Optimization Of Organic Matters In Oil Sand By Ultrahigh Fourier Transform Infrared Orbitrap-Mass Spectrometry, Gbenga Aladekoyi, Emmanuel G. Olumayede, Samuel O. Olusanya, Simeon Schum

Michigan Tech Publications

This work focuses on the performance of composite solvents using the QuEchERs extraction (quick, easy, cheap, effective, rugged, and safe) method in bitumen recovery and determination of organic matters present in the oil sands of the Okitipupa area of southwestern Nigeria. Different correlated parameters, such as extraction time (h), stirring time (r/ min), change in temperature (°C), and type of solvent (heptane—toluene and dichloromethane—toluene), solvent ratios (2: 8, 3: 7, 5: 5, 7: 3, and 8: 2) were used to optimize dissolved organic matters from the oil sands using QuEchERs extraction method. Ratios 1 g/2.5 ml for each solvent mix …


Turn-On Fluorescent Glucose Transport Bioprobe Enables Wash-Free Real-Time Monitoring Of Glucose Uptake Activity In Live Cells And Small Organisms, Monica Soma Hensley, David Hutchings, Abdelrahman Ismail, Marina Tanasova May 2025

Turn-On Fluorescent Glucose Transport Bioprobe Enables Wash-Free Real-Time Monitoring Of Glucose Uptake Activity In Live Cells And Small Organisms, Monica Soma Hensley, David Hutchings, Abdelrahman Ismail, Marina Tanasova

Michigan Tech Publications

The direct link between sugar uptake and metabolic diseases highlights the iminent need for molecular tools to detect and evaluate alterations in sugar uptake efficiency as approaches to identify disease-relevant metabolic alterations. However, the strict requirements of facilitative glucose transporters regarding substrate binding and translocation pose challenges for developing effective fluorescence molecular probes. Based on the state-of-the-art understanding of glucose recognition by facilitative transporters (GLUTs), we designed a glucopyranoside mimic - GluRho - that delivers the “turn-on” rhodamine B to live cells via glucose transport, including major transporters GLUTs 1-4. The high binding affinity achieved through the secondary interaction between …


Synthesis Of Sensitive Oligodeoxynucleotides Containing Acylated Cytosine, Adenine, And Guanine Nucleobases, Komal Chillar, Rohith Awasthy, Marina Tanasova, Shiyue Fang May 2025

Synthesis Of Sensitive Oligodeoxynucleotides Containing Acylated Cytosine, Adenine, And Guanine Nucleobases, Komal Chillar, Rohith Awasthy, Marina Tanasova, Shiyue Fang

Michigan Tech Publications

Background/Objective: Oligodeoxynucleotides (ODNs) containing base-labile modifications such as N4-acetyldeoxycytidine (4acC), N6-acetyladenosine (6acA), N2- acetylguanosine (2acG), and N4-methyoxycarbonyldeoxycytidine (4mcC) are highly challenging to synthesize because standard ODN synthesis methods require deprotection and cleavage under strongly basic and nucleophilic conditions, and there is a lack of ideal alternative methods to solve the problem. The objective of this work is to explore the capability of the recently developed 1,3-dithian-2-yl-methoxycarbonyl (Dmoc) method for the incorporation of multiple 4acC modifications into a single ODN molecule and the feasibility of using the method for the incorporation of the 6acA, 2acG and 4mcC modifications into ODNs. Methods: …


Seasonal Effects Of Plant Functional Groups On Molecular Biogeochemistry Of Dissolved Organic Matter In Porewater Of A Poor Fen, Zhimin Song, Maryam Khaksari, Erik A. Lilleskov, Evan Kane, Paul V. Doskey Apr 2025

Seasonal Effects Of Plant Functional Groups On Molecular Biogeochemistry Of Dissolved Organic Matter In Porewater Of A Poor Fen, Zhimin Song, Maryam Khaksari, Erik A. Lilleskov, Evan Kane, Paul V. Doskey

Michigan Tech Publications

Climate change may transform peatlands from net carbon (C) sinks to C sources, which could result in a positive feedback to global warming. Warmer temperatures might lower water tables, increase the abundance of shrubs, slow Sphagnum and sedge growth and further accelerate the decomposition of dissolved organic matter (DOM) with a concomitant release of C from the surface. Studies in which vascular plant functional groups (PFGs) in peatlands have been manipulated to mimic the potential effects of a warming climate on DOM are scarce. In the subject study, seasonal effects of PFGs on the molecular composition of DOM of peat …


Brain-Targeted Reactive Oxygen Species In Hypertension: Unveiling Subcellular Dynamics, Immune Cross-Talk, And Novel Therapeutic Pathways, Renjun Wang, Min Wang, Dongshu Du, Zhiying Shan, Lanrong Bi, Qing-Hui Chen Mar 2025

Brain-Targeted Reactive Oxygen Species In Hypertension: Unveiling Subcellular Dynamics, Immune Cross-Talk, And Novel Therapeutic Pathways, Renjun Wang, Min Wang, Dongshu Du, Zhiying Shan, Lanrong Bi, Qing-Hui Chen

Michigan Tech Publications

Hypertension (HTN) is a complex disease with significant global health implications, driven by neural and oxidative mechanisms. Reactive oxygen species (ROS), once considered mere metabolic byproducts, are now recognized as one of the key contributors to dysfunction of the autonomic nerve system, which involves the onset and progression of HTN. This review highlights the dynamic roles of ROS in neuronal signaling, subcellular compartmentalization, and brain-immune interactions, focusing on their impacts on synaptic remodeling, neuroinflammation, and epigenetic modifications within key autonomic regions such as the paraventricular nucleus and rostral ventrolateral medulla. We discuss novel ROS sources, including microglia-derived and endoplasmic reticulum …


Biochemical, Structural, And Conformational Characterization Of A Fungal Ethylene-Forming Enzyme, Shramana Chatterjee, Joel A. Rankin, Mark A. Farrugia, Simahudeen Bathir J S Rifayee, Christo Z. Christov, Jian Hu, Et. Al. Mar 2025

Biochemical, Structural, And Conformational Characterization Of A Fungal Ethylene-Forming Enzyme, Shramana Chatterjee, Joel A. Rankin, Mark A. Farrugia, Simahudeen Bathir J S Rifayee, Christo Z. Christov, Jian Hu, Et. Al.

Michigan Tech Publications

The ethylene-forming enzyme (EFE) from the fungus Penicillium digitatum strain Pd1 was heterologously produced in Escherichia coli and its properties were compared to the extensively characterized bacterial enzyme from Pseudomonas savastanoi strain PK2. Both enzymes catalyze four reactions: the conversion of 2-oxoglutarate (2OG) to ethylene and CO2, oxidative decarboxylation of 2OG coupled to L-arginine (L-Arg) hydroxylation, uncoupled oxidative decarboxylation of 2OG, and the production of 3-hydroxypropionate (3-HP) from 2OG. The strain Pd1 enzyme exhibited a greater ratio of ethylene production over L-Arg hydroxylation than the PK2 strain EFE. The uncoupled decarboxylation of 2OG and …


Advances In Pyrazolo[1,5-A]Pyrimidines: Synthesis And Their Role As Protein Kinase Inhibitors In Cancer Treatment, Terungwa H. Iorkula, Osasere Jude Kelly Osayawe, Daniel A. Odogwu, Latifat Oluwatobi Ganiyu, Emmanuel Faderin, Raymond Femi Awoyemi, Busayo Odunayo Akodu, Ikhazuagbe Hilary Ifijen, Omowunmi Rebecca Aworinde, Peter Agyemang, Odo Lovelyn Onyinyechi Feb 2025

Advances In Pyrazolo[1,5-A]Pyrimidines: Synthesis And Their Role As Protein Kinase Inhibitors In Cancer Treatment, Terungwa H. Iorkula, Osasere Jude Kelly Osayawe, Daniel A. Odogwu, Latifat Oluwatobi Ganiyu, Emmanuel Faderin, Raymond Femi Awoyemi, Busayo Odunayo Akodu, Ikhazuagbe Hilary Ifijen, Omowunmi Rebecca Aworinde, Peter Agyemang, Odo Lovelyn Onyinyechi

Michigan Tech Publications

Pyrazolo[1,5-a]pyrimidines are a notable class of heterocyclic compounds with potent protein kinase inhibitor (PKI) activity, playing a critical role in targeted cancer therapy. Protein kinases, key regulators in cellular signalling, are frequently disrupted in cancers, making them important targets for small-molecule inhibitors. This review explores recent advances in pyrazolo[1,5-a]pyrimidine synthesis and their application as PKIs, with emphasis on inhibiting kinases such as CK2, EGFR, B-Raf, MEK, PDE4, BCL6, DRAK1, CDK1 and CDK2, Pim-1, among others. Several synthetic strategies have been developed for the efficient synthesis of pyrazolo[1,5-a]pyrimidines, including cyclization, condensation, three-component reactions, microwave-assisted methods, and green chemistry approaches. Palladium-catalyzed crosscoupling …


Synthesis Of Fe3o4@Mil-101-Oh/Chitosan For Adsorption And Release Of Doxorubicin, Iman Najafipour, Nafiseh Emami, Pegah Sadeh, Adonis Amoli, Sareh Mosleh-Shirazi, Ali Mohammad Amani, Hesam Kamyab, Shreeshivadasan Chelliapan, Seyed Reza Kasaee, Ehsan Vafa Jan 2025

Synthesis Of Fe3o4@Mil-101-Oh/Chitosan For Adsorption And Release Of Doxorubicin, Iman Najafipour, Nafiseh Emami, Pegah Sadeh, Adonis Amoli, Sareh Mosleh-Shirazi, Ali Mohammad Amani, Hesam Kamyab, Shreeshivadasan Chelliapan, Seyed Reza Kasaee, Ehsan Vafa

Michigan Tech Publications

This study reports the synthesis and characterization of a magnetic composite metal-organic framework, The Fe3O4@MIL-101-OH/Chitosan nanocomposite was used for the first time to adsorb and release the drug doxorubicin (DOX). The nanocomposite was characterized using scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), Brunauer-Emmett-Teller (BET), X-ray diffraction (XRD), and vibrating sample magnetometry (VSM). The characterization results showed that the synthesized nanocomposite has a crystalline structure and good magnetic properties. Also, this nanocomposite has a high specific surface area (610.36 m2/g). In this article, the effect of pH, contact time, and drug concentration on DOX adsorption were investigated, and the …


Long Oligos: Direct Chemical Synthesis Of Genes With Up To 1728 Nucleotides, Yipeng Yin, Reed Arneson, Yinan Yuan, Shiyue Fang Jan 2025

Long Oligos: Direct Chemical Synthesis Of Genes With Up To 1728 Nucleotides, Yipeng Yin, Reed Arneson, Yinan Yuan, Shiyue Fang

Michigan Tech Publications

The longest oligos that can be chemically synthesized are considered to be 200-mers. Here, we report direct synthesis of an 800-mer green fluorescent protein gene and a 1728-mer Φ29 DNA polymerase gene on an automated synthesizer. Key innovations that enabled this breakthrough include conducting the synthesis on a smooth surface rather than within the pores of traditional supports, and the use of the powerful catching-by-polymerization (CBP) method for isolating the full-length oligos from a complex mixture. Conducting synthesis on a smooth surface not only eliminated the steric hindrance that would otherwise prevent long oligo assembly, but also, surprisingly, drastically reduced …


Enhanced Light Absorption For Solid-State Brown Carbon From Wildfires Due To Organic And Water Coatings, Zezhen Cheng, Manish Shrivastava, Amna Ijaz, Daniel Veghte, Gregory W. Vandergrift, Kuo-Pin Tseng, Nurun Nahar Lata, Will Kew, Kaitlyn Suski, Johannes Weis, Gourihar Kulkarni, Larry K. Berg, Jerome D. Fast, Libor Kovarik, Lynn Mazzoleni, Alla Zelenyuk, Swarup China Nov 2024

Enhanced Light Absorption For Solid-State Brown Carbon From Wildfires Due To Organic And Water Coatings, Zezhen Cheng, Manish Shrivastava, Amna Ijaz, Daniel Veghte, Gregory W. Vandergrift, Kuo-Pin Tseng, Nurun Nahar Lata, Will Kew, Kaitlyn Suski, Johannes Weis, Gourihar Kulkarni, Larry K. Berg, Jerome D. Fast, Libor Kovarik, Lynn Mazzoleni, Alla Zelenyuk, Swarup China

Michigan Tech Publications

Wildfires emit solid-state strongly absorptive brown carbon (solid S-BrC, commonly known as tar ball), critical to Earth's radiation budget and climate, but their highly variable light absorption properties are typically not accounted for in climate models. Here, we show that from a Pacific Northwest wildfire, over 90% of particles are solid S-BrC with a mean refractive index of 1.49 + 0.056i at 550 nm. Model sensitivity studies show refractive index variation can cause a ~200% difference in regional absorption aerosol optical depth. We show that ~50% of solid S-BrC particles from this sample uptake water above 97% relative humidity. We …


Ptsd Increases Risk For Hypertension Development Through Pvn Activation And Vascular Dysfunction In Sprague Dawley Rats, Xinqian Chen, Xin Yan, Chunxiu Yu, Qing-Hui Chen, Lanrong Bi, Zhiying Shan Nov 2024

Ptsd Increases Risk For Hypertension Development Through Pvn Activation And Vascular Dysfunction In Sprague Dawley Rats, Xinqian Chen, Xin Yan, Chunxiu Yu, Qing-Hui Chen, Lanrong Bi, Zhiying Shan

Michigan Tech Publications

This study investigates the impact of single prolonged stress (SPS), a model of post-traumatic stress disorder (PTSD), on cardiovascular responses, hypothalamic paraventricular nucleus (PVN) activity, and vascular function to elucidate the mechanisms linking traumatic stress to hypertension. Although SPS did not directly cause chronic hypertension in male Sprague Dawley (SD) rats, it induced acute but transient increases in blood pressure and heart rate and significantly altered the expression of hypertension-associated genes, such as vasopressin, angiotensin II type 1 receptor (AT1R), and FOSL1 in the PVN. Notably, mitochondrial reactive oxygen species (mtROS) were predominantly elevated in the pre-autonomic regions of the …


Near-Infrared Ratiometric Hemicyanine Fluorescent Probes For Monitoring Mitochondrial Ph Dynamics In Live Cells During Oxidative Stress And Hypoxia, Sushil K. Dwivedi, Dilka Liyana Arachchige, Adenike Olowolagba, Mohamed Mahmoud, Subash Pandey, Tara Vohs, Haiying Liu, Rudy Luck Sep 2024

Near-Infrared Ratiometric Hemicyanine Fluorescent Probes For Monitoring Mitochondrial Ph Dynamics In Live Cells During Oxidative Stress And Hypoxia, Sushil K. Dwivedi, Dilka Liyana Arachchige, Adenike Olowolagba, Mohamed Mahmoud, Subash Pandey, Tara Vohs, Haiying Liu, Rudy Luck

Michigan Tech Publications

Novel near-infrared ratiometric molecules (probes A and B) produced by linking formyl-functionalized xanthene and methoxybenzene moieties, respectively, onto a xanthene-hemicyanine framework are detailed. Probe A exhibited a primary absorption peak at 780 nm and a shoulder peak at 730 nm and exhibited fluorescence at 740 nm↓ (signifies a downward shift in intensity upon acidification) in a pH 9.3 buffer and 780 nm↑ at pH 2.8 under excitation at 700 nm. Probe B featured absorptions at 618 and 668 nm at pH 3.2 and at 717 nm at pH 8.6, and fluorescence at 693 nm↑ at pH 3.2 and at 739 …


Glaciation Of Mixed-Phase Clouds: Insights From Bulk Model And Bin-Microphysics Large-Eddy Simulation Informed By Laboratory Experiment, Aaron Wang, Steve Krueger, Sisi Chen, Mikhail Ovchinnikov, Will Cantrell, Raymond Shaw Sep 2024

Glaciation Of Mixed-Phase Clouds: Insights From Bulk Model And Bin-Microphysics Large-Eddy Simulation Informed By Laboratory Experiment, Aaron Wang, Steve Krueger, Sisi Chen, Mikhail Ovchinnikov, Will Cantrell, Raymond Shaw

Michigan Tech Publications

Mixed-phase clouds affect precipitation and radiation differently from liquid and ice clouds, posing greater challenges to their representation in numerical simulations. Recent laboratory experiments using the Pi Cloud Chamber explored cloud glaciation conditions based on increased injection of ice-nucleating particles. In this study, we use two approaches to reproduce the results of the laboratory experiments: a bulk scalar mixing model and large-eddy simulation (LES) with bin microphysics. The first approach assumes a well-mixed domain to provide an efficient assessment of the mean cloud properties for a wide range of conditions. The second approach resolves the energy-carrying turbulence, the particle size …


Enhancing Cardiomyocyte Resilience To Ischemia-Reperfusion Injury: The Therapeutic Potential Of An Indole-Peptide-Tempo Conjugate (Iptc), Shanshan Hou, Xin Yan, Xiang Gao, Steffen Jockusch, K. Michael Gibson, Zhiying Shan, Lanrong Bi Sep 2024

Enhancing Cardiomyocyte Resilience To Ischemia-Reperfusion Injury: The Therapeutic Potential Of An Indole-Peptide-Tempo Conjugate (Iptc), Shanshan Hou, Xin Yan, Xiang Gao, Steffen Jockusch, K. Michael Gibson, Zhiying Shan, Lanrong Bi

Michigan Tech Publications

Ischemia/reperfusion (I/R) injury leads to apoptosis and extensive cellular and mitochondrial damage, triggered by the early generation and subsequent accumulation of mitochondrial reactive oxygen species (mtROS). This condition not only contributes to the pathology of I/R injury itself but is also implicated in a variety of other diseases, especially within the cardiovascular domain. Addressing mitochondrial oxidative stress thus emerges as a critical therapeutic target. In this context, our study introduces an indole-peptide-tempo conjugate (IPTC), a compound designed with dual functionalities: antioxidative properties and the ability to modulate autophagy. Our findings reveal that IPTC effectively shields H9C2 cardiomyocytes against hypoxia/reoxygenation (H/R) …


A Convenient Synthesis Of Short Α-/Β-Mixed Peptides As Potential Α-Amylase Inhibitors, Naeem Ahmed, Fakhira Razzaq, Muhammad Arfan, Mansour K. Gatasheh, Hammad Nasir, Joham Sarfraz Ali, Hamna Hafeez Sep 2024

A Convenient Synthesis Of Short Α-/Β-Mixed Peptides As Potential Α-Amylase Inhibitors, Naeem Ahmed, Fakhira Razzaq, Muhammad Arfan, Mansour K. Gatasheh, Hammad Nasir, Joham Sarfraz Ali, Hamna Hafeez

Michigan Tech Publications

Over the last decades, the increased incidence of metabolic disorders, such as type two diabetes and obesity, has motivated researchers to investigate new enzyme inhibitors. Inhibition of the α-amylase enzyme is one therapeutic approach in lowering glucose levels in the blood to manage diabetes mellitus. The objective of this study was to synthesize short α-/β-mixed peptides in the solution phase. The Boc-protected α-L-leucine was converted to β-analogue by using Arndt–Eistert synthesis with the advantage of no racemization and retention of configuration. Three novel short peptides were successfully synthesized: N(Boc)-Gly-β-Leu–OCH3(14), N(Boc)-O(Bz)α-Ser-β-Leu–OCH3(16), and N(Boc)-O(Bz)-α-Tyr-α-Gly-β-Leu–OCH3(17), characterized by FTIR and 1H NMR analysis. The …


Editorial Commentary On The Special Issue “Antioxidant Therapy For Cardiovascular Diseases”—Cutting-Edge Insights Into Oxidative Stress And Antioxidant Therapy In Cardiovascular Health, Guim Kwon, K. Michael Gibson, Lanrong Bi Sep 2024

Editorial Commentary On The Special Issue “Antioxidant Therapy For Cardiovascular Diseases”—Cutting-Edge Insights Into Oxidative Stress And Antioxidant Therapy In Cardiovascular Health, Guim Kwon, K. Michael Gibson, Lanrong Bi

Michigan Tech Publications

No abstract provided.


Cutting-Edge Developments In Zinc Oxide Nanoparticles: Synthesis And Applications For Enhanced Antimicrobial And Uv Protection In Healthcare Solutions, Egwonor Loveth Irede, Raymond Femi Awoyemi, Babatunde Owolabi, Omowunmi Rebecca Aworinde, Rofiat Odunayo Kajola, Ajibola Hazeez, Ayuba Adawale Raji, Latifat Oluwatobi Ganiyu, Chimezie O. Onukwuli, Asishana Paul Onivefu, Ikhazuagbe Hilary Ifijen Jul 2024

Cutting-Edge Developments In Zinc Oxide Nanoparticles: Synthesis And Applications For Enhanced Antimicrobial And Uv Protection In Healthcare Solutions, Egwonor Loveth Irede, Raymond Femi Awoyemi, Babatunde Owolabi, Omowunmi Rebecca Aworinde, Rofiat Odunayo Kajola, Ajibola Hazeez, Ayuba Adawale Raji, Latifat Oluwatobi Ganiyu, Chimezie O. Onukwuli, Asishana Paul Onivefu, Ikhazuagbe Hilary Ifijen

Michigan Tech Publications

This paper presents a comprehensive review of recent advancements in utilizing zinc oxide nanoparticles (ZnO NPs) to enhance antimicrobial and UV protective properties in healthcare solutions. It delves into the synthesis techniques of ZnO NPs and elucidates their antimicrobial efficacy, exploring the underlying mechanisms governing their action against a spectrum of pathogens. Factors impacting the antimicrobial performance of ZnO NPs, including size, surface characteristics, and environmental variables, are extensively analyzed. Moreover, recent studies showcasing the effectiveness of ZnO NPs against diverse pathogens are critically examined, underscoring their potential utility in combatting microbial infections. The study further investigates the UV protective …


Spectroscopic Characterization, Dft Calculations, In Vitro Pharmacological Potentials, And Molecular Docking Studies Of N, N, O-Schiff Base And Its Trivalent Metal Complexes, Ikechukwu P. Ejidike, Amani Direm, Cemal Parlak, Adebayo A. Adeniyi, Mohammad Azam, Athar Ata, Michael O. Eze, Joshua W. Hollett, Hadley S. Clayton Jun 2024

Spectroscopic Characterization, Dft Calculations, In Vitro Pharmacological Potentials, And Molecular Docking Studies Of N, N, O-Schiff Base And Its Trivalent Metal Complexes, Ikechukwu P. Ejidike, Amani Direm, Cemal Parlak, Adebayo A. Adeniyi, Mohammad Azam, Athar Ata, Michael O. Eze, Joshua W. Hollett, Hadley S. Clayton

Michigan Tech Publications

In this study, trivalent metal complexes of the category: [M(L)(H2O)nCly] obtained from the interaction of metal3+ ion salts with organic N, N, O-Schiff base (HL) (where: HL = 4-{(Z)-((2-{(E)-((2-hydroxyphenyl)methylidene)amino}ethyl)imino)methyl}-2-methoxyphenol; n, y = 1 or 2 and M = Ti(III), Fe(III), Ru(III), Cr(III) and Al(III)) were synthesized and characterized viz molar conductance, FT-IR, and UV–Vis spectroscopies, elemental analyses, thermal analyses (TGA and DTA), and UV–Vis spectroscopy, theoretical calculations. A distorted octahedral structure around the metal ions was proposed based on the obtained experimental and calculated data. Thermal examination of the complexes signposts the step-by-step disintegration to give the final decomposition product …


The Unique Role Of The Second Coordination Sphere To Unlock And Control Catalysis In Nonheme Fe(Ii)/2-Oxoglutarate Histone Demethylase Kdm2a, Midhun George Thomas, Simahudeen Bathir Jaber Sathik Rifayee, Saket S. Chaturvedi, Koteswararao Gorantla, Walter White, Jon Wildey, Christopher J. Schofield, Christo Christov May 2024

The Unique Role Of The Second Coordination Sphere To Unlock And Control Catalysis In Nonheme Fe(Ii)/2-Oxoglutarate Histone Demethylase Kdm2a, Midhun George Thomas, Simahudeen Bathir Jaber Sathik Rifayee, Saket S. Chaturvedi, Koteswararao Gorantla, Walter White, Jon Wildey, Christopher J. Schofield, Christo Christov

Michigan Tech Publications

Nonheme Fe(II) and 2-oxoglutarate (2OG)-dependent histone lysine demethylases 2A (KDM2A) catalyze the demethylation of the mono- or dimethylated lysine 36 residue in the histone H3 peptide (H3K36me1/me2), which plays a crucial role in epigenetic regulation and can be involved in many cancers. Although the overall catalytic mechanism of KDMs has been studied, how KDM2 catalysis takes place in contrast to other KDMs remains unknown. Understanding such differences is vital for enzyme redesign and can help in enzyme-selective drug design. Herein, we employed molecular dynamics (MD) and combined quantum mechanics/molecular mechanics (QM/MM) to explore the complete catalytic mechanism of KDM2A, including …