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Articles 1 - 30 of 33
Full-Text Articles in Pharmacology
The Effect Of Pioglitazone On Phosphoproteome And Interactome Of Protein Phosphatase 2a In Primary Human Skeletal Muscle Cells, Lana Alghanem
The Effect Of Pioglitazone On Phosphoproteome And Interactome Of Protein Phosphatase 2a In Primary Human Skeletal Muscle Cells, Lana Alghanem
Wayne State University Dissertations
Skeletal muscle insulin resistance is one of the main contributors to Type 2 Diabetes (T2D), which is a chronic disease affecting 37.3 million people in United States (US), with an estimated annual cost exceeding $300 billion in the US. T2D is being treated with a variety of medications, including Pioglitazone (PIO), a potent insulin sensitizer for skeletal muscle. PIO is a synthetic ligand for the peroxisome proliferator-activated receptor (PPAR-γ), nuclear receptors regulating the expression of many genes involved in lipid and glucose metabolism. To date, the molecular action of PIO that sensitizes muscle to insulin is incompletely understood. Protein phosphorylation …
The Effect Of Acute And Chronic Arsenic Exposure On Malignant Transformation Of The Human Bronchial Epithelial Cell (Beas-2b), Bandar Almutairy
The Effect Of Acute And Chronic Arsenic Exposure On Malignant Transformation Of The Human Bronchial Epithelial Cell (Beas-2b), Bandar Almutairy
Wayne State University Dissertations
Arsenic (As3+), a metalloid abundant in the environment, is classified as a group I carcinogen associated with several common human cancers, including cancers in the lung, skin, bladder, liver, and prostate (Wei, Zhang & Tao, 2019b). The mechanisms of As3+-induced carcinogenesis had been extensively studied, and different mechanisms might be involved in various types of cancer (Wei, Zhang & Tao, 2019b). Recent studies showed that exposure to a high dose of arsenic is able to induce lung cancer. Moreover, arsenic activates oncogenic signaling pathways such as MAPKs, EGFR/RAS/RAF, PI3K/AKT, and JNK/STAT3 pathways as well as epigenetic alterations such as miRNAs …
Pharmaceuticals In The Environment: Health Implications And Environmental Toxicity, Jessica Phillips
Pharmaceuticals In The Environment: Health Implications And Environmental Toxicity, Jessica Phillips
Wayne State University Dissertations
Approximately 2.9 billion prescriptions are written annually in the United States, with a multitude of biochemical actions, with 63151 tons used by food producing animals worldwide and an additional 55-77 million prescriptions written for companion animals. With increasing prescription and unknown toxicologic effects of many of these chemicals, zebrafish (danio rerio), an NIH approved human model, were used to model potentially health effects. Significant abnormalities were seen with extended duration metformin exposure from 4 hours post fertilization up to 5 days post fertilization, although short term metformin exposure for 24 hours at 4-5 days post fertilization did not lead to …
Investigating Lifespan And Legacy Health Effects Of Developmental Exposure To Environmental Toxicants, Danielle Meyer
Investigating Lifespan And Legacy Health Effects Of Developmental Exposure To Environmental Toxicants, Danielle Meyer
Wayne State University Dissertations
The environmental presence of toxicants such as persistent organic pollutants, heavy metals, and contaminants of emerging concern is estimated to contribute to over 2 million deaths worldwide and health care costs ranging from ~3-9% of total global expenditures yearly. Many of the above toxicants are classified as endocrine-disrupting chemicals capable of interfering with endogenous hormonal function at environmentally relevant levels. Exposures during sensitive developmental windows can lead to reproductive, neurodevelopmental, and metabolic dysfunction that can last across the lifespan and/or be passed down to future generations. Such long-term effects remain to be well-understood; therefore, we modeled the effects of various …
Protein Phosphatase 2a In Metformin’S Action In Primary Human Skeletal Muscle Cells, Aktham H. Mestareehi
Protein Phosphatase 2a In Metformin’S Action In Primary Human Skeletal Muscle Cells, Aktham H. Mestareehi
Wayne State University Dissertations
Diabetes is a group of metabolic diseases characterized by hyperglycemia caused by defects in insulin secretion, insulin action, or both. Diabetes is associated with damage, dysfunction, and failure of various organs, such as the eyes, heart, kid-neys, and brain. Diabetes is mainly classified into type 1 (T1DM) and type 2 diabetes (T2D). Diabetes affects more than 34 million people in the USA (about 1 in 10) and more than 90% of diabetic patients have type 2 diabetes (T2D). Insulin resistance is a main characteristic feature of type 2 diabetes. Skeletal muscle insulin resistance is con-sidered to be the primary defect …
Targeted Combination Therapy Of Triple-Negative Breast Cancer, Ketki Bhise
Targeted Combination Therapy Of Triple-Negative Breast Cancer, Ketki Bhise
Wayne State University Dissertations
TARGETED COMBINATION THERAPY OF TRIPLE-NEGATIVE BREAST CANCERby KETKI BHISE May 2021 Advisor: Dr. Arun Iyer Major: Pharmaceutical Sciences Degree: Doctor of Philosophy Triple Negative Breast Cancer (TNBC) accounts for 10-20% of the total breast carcinoma cases. There is no FDA-approved targeted therapy for TNBC due to lack estrogen, progesterone and HER-2. We have identified the role of a hypoxia biomarker, carbonic anhydrase IX (CAIX) in proliferation and metastasis of TNBC. Based on this observation, we have developed CAIX-targeted Doxorubicin (Dox) prodrug, abbreviated as DoxAtz. To improve the delivery of DoxAtz to the tumor, we developed long circulating liposomes (LipoDoxAtz) and …
Therapeutic Dual-Targeting Of Cytosolic And Mitochondrial One-Carbon Metabolism, Aamod Sanjeev Dekhne
Therapeutic Dual-Targeting Of Cytosolic And Mitochondrial One-Carbon Metabolism, Aamod Sanjeev Dekhne
Wayne State University Dissertations
One-carbon metabolism (1CM) is compartmentalized in the mitochondria and cytosol and generates a host of metabolites critical to tumor propagation. Although drug-targeting of cytosolic 1CM remains a clinically-relevant mainstay, development of clinically-useful agents targeting mitochondrial 1CM remains elusive. Of particular pharmacological interest is the mitochondrial 1CM enzyme, serine hydroxymethyltransferase2 (SHMT2). SHMT2 expression correlates with the oncogenic phenotype in lung, colon, breast, glioma, and liver cancer and, overall, is the fifth-most differentially expressed metabolic enzyme in cancer cell versus normal tissue. Despite the unequivocal oncogenic importance and therapeutic potential of SHMT2, there are no clinically relevant (i.e. active in vivo) inhibitors …
Variations On A Theme: Intricacies Of Unanchored Poly-Ubiquitin Signaling And Toxicity, Jessica Renee Blount-Pacheco
Variations On A Theme: Intricacies Of Unanchored Poly-Ubiquitin Signaling And Toxicity, Jessica Renee Blount-Pacheco
Wayne State University Dissertations
Ubiquitin is an 8.5 kDa post-translational modifier involved in essentially all eukaryotic cellular processes. Through a process called ubiquitination, ubiquitinating enzymes chemically attach ubiquitin to substrate proteins to control their fates, resulting in anything from their recruitment into signaling pathways to their proteasomal degradation, with a plethora of possibilities in between. Ubiquitin molecules can also be attached to one another, resulting in poly-ubiquitin chains with various effects depending on the number of ubiquitin molecules and the specific amino acid residues used to link them together. While most poly-ubiquitin in the cell exists as conjugated species, there are also untethered poly-ubiquitin …
Characterization Of Cytosolic Sulfotransferase Expression And Regulation In Human Liver And Intestine, Sarah Talal Dubaisi
Characterization Of Cytosolic Sulfotransferase Expression And Regulation In Human Liver And Intestine, Sarah Talal Dubaisi
Wayne State University Dissertations
SULTs are conjugation enzymes that can modify the activity of a myriad of foreign and endogenous molecules. SULT expression was detected in various human tissues, including liver, small intestine, and colon. There are 13 human SULT genes that are classified into 4 families, SULT1, SULT2, SULT4, and SULT6. In humans, SULT1 and SULT2 families include 11 genes that are further divided into 6 subfamilies. In addition to their role in xenobiotic detoxification and regulation of physiological processes, SULT enzymes were implicated in the bioactivation of procarcinogens. Previous studies detected the expression of most SULT1 and SULT2 enzymes during early development, …
The Role Of The Cell-Surface Protease Tmprss13 In Colorectal Cancer, Fausto Alexander Varela
The Role Of The Cell-Surface Protease Tmprss13 In Colorectal Cancer, Fausto Alexander Varela
Wayne State University Dissertations
Colorectal cancer (CRC) is one of the most common and deadly cancers in both men and women in the United States. Extracellular proteolysis is often dysregulated in cancer including (CRC), resulting in degradation of extracellular matrix, as well as cleavage, processing, or shedding of cell adhesion molecules, growth factors, and cytokines. Several members of the type II transmembrane serine protease (TTSP) family have been shown to play critical roles in cancer progression; however, many family members have not yet been characterized in malignancy. We identified TMPRSS13 transcript to be upregulated in CRC compared to normal colon. This increase was confirmed …
Deubiquitinases In Ubiquitin Homeostasis And Disease, Gorica Ristic
Deubiquitinases In Ubiquitin Homeostasis And Disease, Gorica Ristic
Wayne State University Dissertations
Protein quality control (PQC) is indispensable for normal cellular functions, ensuring proteins are properly folded and removing those proteins that are functioning aberrantly. Perturbations in PQC can lead to various malignancies, neurodegeneration and neurological diseases. The Ubiquitin-Proteasome Pathway (UPP) is one important pathway in PQC, it relies on ubiquitination-dependent post-translational modification to selectively degrade misfolded or short-lived protein. Ubiquitination is reversed by the action of proteases known as deubiquitinating enzymes (DUBs). By hydrolyzing ubiquitin linkages, DUBs are responsible for cleaving and activating newly produced ubiquitin molecules, editing poly-Ub chains, removing ubiquitin from a substrate protein and recycling mono-Ub. Here, I …
Biochemical, Structural, And Drug Design Studies Of Norovirus And Zika Virus Proteases, Ben Kuiper
Biochemical, Structural, And Drug Design Studies Of Norovirus And Zika Virus Proteases, Ben Kuiper
Wayne State University Dissertations
Noroviruses, which are the leading cause of acute gastroenteritis, cause an estimated 677 million infections and 213,000 deaths each year worldwide. Noroviruses are classified into seven genogroups (GI-GVII); GI, GII, and GIV have been shown to be infectious in humans. However, GII noroviruses cause the majority of outbreaks (89%). No pharmacologic treatment or vaccine currently exists to treat or prevent norovirus infections.
Recently, the development of a norovirus replicon system, a murine model of norovirus infection, and the development of a biochemical protease assay have allowed for the design and development of norovirus inhibitors. However, the replicon and biochemical assay …
Farnesol-Mediated Regulation Of Hepatic Lipid Metabolism In Heparg Cells, Asmita Pant
Farnesol-Mediated Regulation Of Hepatic Lipid Metabolism In Heparg Cells, Asmita Pant
Wayne State University Dissertations
Non-alcoholic fatty liver disease is emerging as one of the most common liver disorders worldwide and is characterized by accumulation of triglycerides (TGs) in liver. The endogenous isoprenoid farnesol reduces hepatic TG levels in rodents, and this effect appears to involve at least two nuclear receptors, peroxisome proliferator-activated receptor α and farnesoid X receptor (FXR). However, farnesol’s effects on human hepatic lipid metabolism are currently unknown. The objective of this study is to evaluate how farnesol treatment would affect hepatic lipid accumulation and metabolism in a cellular model of human hepatic steatosis that was created by incubating the hepatocyte-like HepaRG …
Structural Characterization And Therapeutic Utility Of The Proton-Coupled Folate Transporter, Michael Roy Wilson
Structural Characterization And Therapeutic Utility Of The Proton-Coupled Folate Transporter, Michael Roy Wilson
Wayne State University Dissertations
Folate is a B9 vitamin essential to DNA synthesis. The proton-coupled folate transporter (PCFT) is a newly discovered proton/folate symporter with an acidic pH optimum and broad expression across a variety of solid tumor types, with limited expression in normal tissues. Several antifolate molecules have been developed as cancer therapeutics, although these classical antifolates display numerous off-target effects due to transport by the ubiquitous reduced folate carrier (RFC). In this dissertation, we determine the roles of multiple PCFT structure/function domains, and develop PCFT-specific antifolates to target solid tumors. We utilize substituted cysteine accessibility methods (SCAM) to identify a novel reentrant …
Neuronal Insult Either By Exposure To Lead Or By Direct Neuronal Damage Cause Genome-Wide Changes In Dna Methylation And Histone 3 Lysine 36 Trimethylation, Arko Sen
Wayne State University Dissertations
Prenatal and postnatal exposure to pervasive neuro-toxicants such as Lead (Pb) has been reported to causes extensive and diverse changes in the epigenetic profile. Among epigenetic modification, DNA methylation (5mC) is perhaps the most widely studied and has been proposed to be potential early biomarkers for Pb toxicity. Several studies have demonstrated the association between Pb-exposure and 5mC. However most of these studies are restricted to looking at a specific set of target genes or repetitive elements. Therefore, one of the main objectives of our study was to use an unbiased genome-wide approach to look at Pb-exposure associated changes in …
Using A Novel Optogenetic Approach To Directly Assess 5-Ht1a Somatodendritic Autoreceptor Function In Response To Chronic Selective Serotonin Reuptake Inhibitor Treatment, Kelly Marie Mcgregor
Using A Novel Optogenetic Approach To Directly Assess 5-Ht1a Somatodendritic Autoreceptor Function In Response To Chronic Selective Serotonin Reuptake Inhibitor Treatment, Kelly Marie Mcgregor
Wayne State University Dissertations
Antidepressant drugs are widely used but their mechanism of action remains only partially understood. One leading hypothesis holds that a key effect of chronic treatment with a Selective Serotonin Reuptake Inhibitor (SSRI) is loss of somatodendritic 5-HT1A receptor-mediated autoinhibition in serotonergic neurons of the dorsal raphe nucleus (DRN). However, technical limitations have prevented direct testing of this hypothesis. In the current study we took advantage of optogenetic strategies to assess the effects of the classic SSRI fluoxetine on 5-HT1A receptor-mediated autoinhibition. We conducted these experiments in mice expressing the light-sensitive ion channel Channelrhodopsin (ChR) in 5-HT neurons to facilitate their …
The Therapeutic Targeting Of Folate Receptor Alpha Positive Tumors Via Folate Receptor Selective Novel 5- And 6- Substituted Pyrrolo [2,3-D]Pyrimidine Antifolates", Shermaine Kimberly Mitchell-Ryan
The Therapeutic Targeting Of Folate Receptor Alpha Positive Tumors Via Folate Receptor Selective Novel 5- And 6- Substituted Pyrrolo [2,3-D]Pyrimidine Antifolates", Shermaine Kimberly Mitchell-Ryan
Wayne State University Dissertations
Ovarian Cancer is the fifth leading cause of cancer-related death of women in the United States. Epithelial Ovarian Cancer (EOC) constitutes 85-90% of malignancies within the ovary, with an alarming majority of these cases diagnosed at advanced stage. While most patients are initially highly responsive to the current treatment standard, there is a very high probability that they will recur with a drug resistant fatal disease. Currently there is no validated comprehensive model of disease progression for ovarian cancer, although tremendous progress has been made in understanding the origin of this disease and a putative precursor lesion has been identified …
Photodynamic Therapy As An Effective Therapeutic Approach In Mame Models Of Triple Negative And Inflammatory Breast Cancers, Neha Aggarwal
Photodynamic Therapy As An Effective Therapeutic Approach In Mame Models Of Triple Negative And Inflammatory Breast Cancers, Neha Aggarwal
Wayne State University Dissertations
Introduction: Photodynamic therapy (PDT) is a minimally invasive, FDA approved therapy for
treatment of several indications including endobronchial and esophageal cancers that are
accessible to light. Triple negative breast cancer (TNBC) and inflammatory breast cancer (IBC)
are aggressive and lethal subtypes of breast cancer that spread to chest wall and dermal
lymphatics, respectively, sites that would be accessible to light. Both TNBC and IBC patients
have a relatively poor survival rate due to lack of targeted therapies. Use of PDT is
underexplored for breast cancers but has been proposed for treatment of subtypes for which a
targeted therapy is unavailable. …
Proteasome Inhibition As A Potential Anti-Breast Cancer Therapy: Mechanisms Of Action And Resistance-Reversing Strategies, Rahul Rajesinh Deshmukh
Proteasome Inhibition As A Potential Anti-Breast Cancer Therapy: Mechanisms Of Action And Resistance-Reversing Strategies, Rahul Rajesinh Deshmukh
Wayne State University Dissertations
AMPK activation and Ubiquitin Proteasome System (UPS) inhibition have gained great attention as therapeutic strategies for the treatment of certain types of cancers. While AMPK serves as a master regulator of cellular metabolism, UPS regulates protein homeostasis. Although the crosstalk between them is suggested, the relationship between these two important pathways is not very clear. We observed that proteasome inhibition leads to AMPK activation in human breast cancer cells. We report that a variety of proteasome inhibitors activate AMPK in all of the tested cancer cell lines. Our data using Liver Kinase B1 (LKB1)-deficient cancer cells suggests that proteasome inhibitor-induced …
Therapeutic Targeting Of Bmp2 In Nf1-Deficient Malignant Peripheral Nerve Sheath Tumors (Mpnsts), Sidra Ahsan
Therapeutic Targeting Of Bmp2 In Nf1-Deficient Malignant Peripheral Nerve Sheath Tumors (Mpnsts), Sidra Ahsan
Wayne State University Dissertations
Neurofibromatosis type I (NF1)-deficient malignant peripheral nerve sheath tumor (MPNST) is an aggressive tumor for which the standard treatment is surgical removal with wide margins, often leaving behind cancer cells needing chemotherapy. RAS-GRD is the most widely studied functional target of NF1 implicated in tumorigenesis, however, therapeutic interventions targeting RAS activity have met with limited success. Using gene expression profiling, our lab identified BMP2-SMAD1/5/8 signaling pathway as a therapeutic target in MPNSTs, independent of the NRAS and MEK1/2 regulation. The overall goal of my research was to validate the significance of BMP2 in MPNSTs in novel cellular models, study the …
Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function, Enbo Zhan
Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function, Enbo Zhan
Wayne State University Dissertations
Adenosine A2B receptor (A2BR) appear to contribute to chronic inflammation. This receptor is highly expressed in macrophages and cardiac fibroblasts, cells which play key roles in inflammation and healing following myocardial infarction (MI). A2BR have been shown to induce collagen production and promote organ fibrosis, although the reports of A2BR role on MI are limited and conflicting. The results of cardiac fibroblast (CF) studies however suggest that non-selective A2BR stimulation inhibits collagen expression. The hypothesis of the present study was that deletion of A2BR reduces adverse remodeling in post-MI, …
Isolation And Characterization Of Natural Alpha-Glucosidase Inhibitors From Antioxidant Rich Red Wine Grapes (Vitis Vinifera), Hoda Chaouki Kadouh
Isolation And Characterization Of Natural Alpha-Glucosidase Inhibitors From Antioxidant Rich Red Wine Grapes (Vitis Vinifera), Hoda Chaouki Kadouh
Wayne State University Dissertations
Background: Diabetes is currently a global public health problem affecting people at all ages. Dietary antioxidants have been associated with a reduced risk of type 2 diabetes. Grape pomace contains considerable amounts of polyphenols and it has been reported to exhibit an inhibitory activity against alpha- glucosidases. Alpha-glucosidases, in turn, play a major role in controlling starch digestion and therefore postprandial blood glucose, a target for diabetes management.
Objective: This study aims to investigate the anti-diabetes potential of a selection of six grape pomaces and prepare and purify active components in the active variety that specifically inhibit intestinal alpha-glucosidases. The …
Overcoming Tumor Drug Resistance By Activating Amp-Activated Protein Kinase And Destabilizing Oncoproteins, Min Shen
Wayne State University Dissertations
Although considerable progress has been achieved in the field of cancer therapeutics, primary or acquired drug resistance remains a fundamental cause of therapeutic failure in cancer therapy. Among different mechanisms characterized that are responsible for tumor drug resistance, there is increasing evidence suggesting that dysregulation of gene expression, especially oncogene or tumor suppressor gene expression, at either gene transcription or protein synthesis level, can contribute to the drug-resistant phenotype. AMP-activated protein kinase (AMPK) is a well-known major cellular energy sensor, which negatively regulates metabolic pathways such as protein synthesis, fatty acid oxidation and glucose consumption. Activation of AMPK may suppress …
Acidic Pericellular Ph: Effects On Proteolysis And Gene Expression As Determined In 3d Models Of Breast Carcinoma, Jennifer M. Rothberg
Acidic Pericellular Ph: Effects On Proteolysis And Gene Expression As Determined In 3d Models Of Breast Carcinoma, Jennifer M. Rothberg
Wayne State University Dissertations
Among the non-cellular microenvironmental factors that contribute to malignancy of solid tumors is an acidic peritumoral pH. The first objective was to determine if an acidic extracellular pH observed in vivo (i.e., pHe 6.8) affects the activity of proteases, such as cathepsin B, that contribute to degradation of collagen IV by tumor cells when grown in biologically relevant three-dimensional cultures. At pHe 6.8 there were increases in pericellular active cysteine cathepsins and in degradation of DQ-collagen IV, which was partially blocked by a cathepsin B inhibitor. Imaging probes for active cysteine cathepsins localized to tumors in vivo. The amount of …
Progress Towards Understanding Of Mechanisms Of Action Of Potent Multifunctional Disease Modifying Therapeutics For Parkinson's Disease & Investigating The Methamphetamine-Induced Striatal Microglia Activation., Mrudang M. Shah
Wayne State University Dissertations
PROGRESS TOWARDS UNDERSTANDING OF MECHANISMS OF ACTION OF POTENT MULTIFUNCTIONAL DISEASE MODIFYING
THERAPEUTICS FOR PARKINSON'S DISEASE.
by
MRUDANG MANOJKUMAR SHAH
December 2013
Advisor: Dr. Aloke Dutta
Major: Pharmaceutical Sciences
Degree: Doctor of Philosophy
Our long term goal is to design and develop potent multifunctional disease modifying therapeutics for Parkinson's disease. The objective of my dissertation was to understand the mechanisms of action of some potent small molecules (synthesized in our lab) as a disease modifying Parkinson's disease therapeutic. The objective was achieved by pursuing the following two specific aims:
1. Investigating anti-oxidant and neuroprotective effects of a lead molecule (D-512) …
Analysis Of Gene Expression Alterations In Premalignant Progression From Normal Mammary Epithelium To Ductal Carcinoma In Situ By Multiple Orthogonal Tools, Hitchintan Kaur
Wayne State University Dissertations
Mammary ductal carcinoma in situ (DCIS) is being found in great numbers of women due to the widespread use of mammography. The molecular and genetic changes underlying the progression from normal breast tissue to DCIS are not clearly understood. The goal of the present study was to determine gene expression changes in different DCIS models (MCF10.DCIS, SUM102 and SUM225) in comparison to normal breast epithelial cells (MCF10A) that may enable us to identify novel markers of disease progression and potential therapeutic targets. We cultured the cells in three dimensional reconstituted basement membrane (3D rBM) for RNA extraction and used the …
Cationic Amphiphilic Drug-Induced Autophagosome Accumulation Is Due To Autophagosome Sequestration Within Vimentin Intermediate Filament Networks Resulting In Prolonged Autophagosome Half-Life, Miriam Devorah Kleinman
Cationic Amphiphilic Drug-Induced Autophagosome Accumulation Is Due To Autophagosome Sequestration Within Vimentin Intermediate Filament Networks Resulting In Prolonged Autophagosome Half-Life, Miriam Devorah Kleinman
Wayne State University Dissertations
Accumulations of autophagosomes and non-esterified cholesterol are
observed in several cell lines derived from lysosomal storage diseases,
including Niemann Pick Type C (NPC). The relationship between
autophagosome accumulation and lysosomal non-esterified cholesterol is
unclear. Exposure of murine hepatoma 1c1c7 cultures to the cationic
amphiphilic drugs (CADs) U18666A, imipramine and clozapine caused
lysosomal non-esterified cholesterol and autophagosome accumulation.
Measurement of LC3-II conversion in the presence of lysosomal inhibitors
bafilomycin A1 and NH4Cl, degradation of long-lived proteins, and
colocalization of GFP-LC3 and LAMP1 indicated an increase in
autophagosome synthesis without compensatory increase in clearance.
Autophagosome synthesis was blocked using 3-MA to monitor …
The Proton-Coupled Folate Transporter: Biology And Therapeutic Applications To Cancer, Sita Desmoulin
The Proton-Coupled Folate Transporter: Biology And Therapeutic Applications To Cancer, Sita Desmoulin
Wayne State University Dissertations
Folates are essential cofactors of tumor cell proliferation and survival required for nucleotide biosynthesis and amino acid metabolism. In cancer therapy, inhibition of folate-dependent metabolic pathways has been achieved through the use of antifolates. Unfortunately, the efficacy of many clinically approved antifolates is limited by a lack of tumor selectivity. Facilitative transport of folates into mammalian cells is achieved by the reduced folate carrier (RFC) and proton-coupled folate transporter (PCFT). As PCFT is a folate-proton symporter with an acidic pH optimum, PCFT may provide a mechanism for targeting cytotoxic antifolates to tumors, based on their acidic microenvironments. To establish the …
Hedgehog Signaling: A Potential Therapeutic Target For Non-Small Cell Lung Cancer, Ma'in Yehya Maitah
Hedgehog Signaling: A Potential Therapeutic Target For Non-Small Cell Lung Cancer, Ma'in Yehya Maitah
Wayne State University Dissertations
The American Cancer Society estimated that 222,520 Americans were diagnosed with lung cancer and 157,300 died of lung cancer in 2010 (Jemal et al. 2009, 225-249;Jemal et al. 2011, 69-90). The clinical outcome of patients diagnosed with non-small cell lung cancer (NSCLC), the major lung cancer sub-types, is very poor, which calls for innovative research for finding novel therapeutic targets and agents for better treatment outcome.
Emerging evidences have suggested that a phenomenon called Epithelial-to-Mesenchymal Transition (EMT), which shares similar molecular characteristics with cancer stem-like cells, contributes to lung cancer treatment failure. In view of the fact that EMT process …
Compensatory Renal Hypertrophy, Mitochondria And Redox Status, Bavneet Benipal
Compensatory Renal Hypertrophy, Mitochondria And Redox Status, Bavneet Benipal
Wayne State University Dissertations
A reduction in functional renal mass occurs in humans during aging and severe kidney damage from diseases, injuries, infections and congenital conditions and after nephrectomy. Nephrectomy, or surgical removal of a kidney or a section of a kidney, is performed for treatment of unilateral secondary renal cancer, infections and for kidney transplantation. As a result, the remaining renal tissue undergoes compensatory growth due primarily to hypertrophy, in which both the size and functional capacity of the remaining kidney are increased. Renal compensatory hypertrophy is associated with a series of physiological, morphological and biochemical changes that also have toxicological implications.
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