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Assessment Of Ovarian Reserve: Anti-Mullerian Hormone Versus Follicle Stimulating Hormone, Zehra Jamil, Syeda Sadia Fatima, Zahra Cheema, Safia Baig, Roha Ahmed Choudhary 2016 Aga Khan University

Assessment Of Ovarian Reserve: Anti-Mullerian Hormone Versus Follicle Stimulating Hormone, Zehra Jamil, Syeda Sadia Fatima, Zahra Cheema, Safia Baig, Roha Ahmed Choudhary

Department of Biological & Biomedical Sciences

Background: This study aimed to evaluate the strength of anti-Mullerian hormone (AMH) and follicle stimulating hormone (FSH) in reflecting the antral follicle count (AFC) in infertile females.
Materials and methods: This cross-sectional study was conducted on 160 females, visiting infertility clinic for assisted reproduction. Serum samples collected on the 3rd day of the cycle were assayed for FSH, luteinizing hormone, and AMH while AFC was assessed via transvaginal ultrasound. The study cohort was segregated into three groups based on AFC.
Results: Chronological age and FSH was significantly high in females with very low AFC (P < 0.01 and 0.009, respectively), yet they failed to discriminate patients with normal and higher follicle count (P = 0.65 and 0.84). Conversely, AMH reported highly significant difference between very low AFC and with those having either normal AFC (P = 0.002) or higher AFC (P = 0.001). Moreover, a significant difference in AMH was observed between normal and higher AFC group (P = 0.04).
Conclusion: Compared to female's age …


Kcnq1 Rs2237895 Polymorphism Is Associated With Gestational Diabetes In Pakistani Women, Syeda Sadia Fatima, Bushra Chaudhry, Taseer Ahmed Khan, Saad Farooq 2016 Aga Khan University

Kcnq1 Rs2237895 Polymorphism Is Associated With Gestational Diabetes In Pakistani Women, Syeda Sadia Fatima, Bushra Chaudhry, Taseer Ahmed Khan, Saad Farooq

Department of Biological & Biomedical Sciences

Background and Objective: Genetic studies on gestational diabetes (GDM) are relatively scarce; moreover, limited data is available for KCNQ1 polymorphism in Pakistani pregnant women. We aimed to determine the frequency of KCNQ1 rs2237895 in GDM and normal pregnant controls and its association with GDM-related phenotypes.
Methods: A total of 637 pregnant females (429 controls and 208 cases) in their second trimester were classified according to the International Association of the Diabetes and Pregnancy Study criteria in this study. Their blood samples were genotyped for KCNQ1 SNP rs2237895 using PCR-RFLP method and sequencing. Fasting and two hour-post glucose load blood levels, …


Anti Mullerian Hormone: Ovarian Response Indicator In Young Patients Receiving Long Gnrh Agonist Protocol For Ovarian Stimulation, Zehra Jamil, Syeda Sadia Fatima, Rehana Rehman, Faiza Alam, Sara Arif 2016 Aga Khan University

Anti Mullerian Hormone: Ovarian Response Indicator In Young Patients Receiving Long Gnrh Agonist Protocol For Ovarian Stimulation, Zehra Jamil, Syeda Sadia Fatima, Rehana Rehman, Faiza Alam, Sara Arif

Department of Biological & Biomedical Sciences

Objective: Anti Mullerian hormone (AMH) is gaining place as ovarian marker, chiefly in infertility assistance. We explored its correlation with oocytes retrieval after long GnRH agonist protocol for stimulation, in younger and older infertile population.
Methods: This retrospective analysis compiled data of 166 females, receiving ICSI treatment from June 2014 to March 2015. Serum FSH, LH, Estadiol, AMH and antral follicle count were assessed. Outcomes were measured as good (5 to 19 oocytes) and bad responders.
Results: Higher discriminatory power of AMH (AUROC; 0.771; p < 0.05) was seen in comparison to FSH (0.692; p < 0.05) and AFC (0.690; p < 0.01). AMH reported strongest association with oocyte retrieved (odds ratio of 15.06). Subgroup analysis reported 68.6 % risk of bad response with AMH levels of less than 1.37ng/ml. This association was observed more significant in young infertile patients <35 year of age (r=0.245; p=0.012) versus older population >35 year (r=0.169; p>0.05).
Conclusion: Our study reaffirms that serum AMH correlates well with …


Use Of Follicular Output Rate To Predict Intracytoplasmic Sperm Injection Outcome, Rehana Rehman, Rozina Mustafa, Mukhtiar Baig, Sara Arif, Muhammad Faisal Hashmi 2016 Aga Khan University

Use Of Follicular Output Rate To Predict Intracytoplasmic Sperm Injection Outcome, Rehana Rehman, Rozina Mustafa, Mukhtiar Baig, Sara Arif, Muhammad Faisal Hashmi

Department of Biological & Biomedical Sciences

Background: The measurement of follicular output rate (FORT) has been proposed as a good indicator for evaluating follicular response to the exogenous recombinant folliclestimulating hormone (rFSH). This places FORT as a promising qualitative marker for ovarian function. The objective of the study was to determine FORT as a predictor of oocyte competence, embryo quality and clinical pregnancy after intracytoplasmic sperm injection (ICSI).
Materials and Methods: This prospective study was carried out on a group of infer- tile females (n=282) at Islamabad Clinic Serving Infertile Couples, Islamabad, Pakistan, from June 2010 till August 2013. Downregulated females were stimulated in injection gonadotropins …


Anti-Mullerian Hormone: Above And Beyond Conventional Ovarian Reserve Markers, Zehra Jamil, Syeda Sadia Fatima, Khalid Ahmed, Rabia Malik 2016 Aga Khan University

Anti-Mullerian Hormone: Above And Beyond Conventional Ovarian Reserve Markers, Zehra Jamil, Syeda Sadia Fatima, Khalid Ahmed, Rabia Malik

Department of Biological & Biomedical Sciences

Management of ovarian dysfunctions requires accurate estimation of ovarian reserve (OR). Therefore, reproductive hormones and antral follicle count (AFC) are assessed to indicate OR. Serum anti-Mullerian hormone (AMH) is a unique biomarker that has a critical role in folliculogenesis as well as steroidogenesis within ovaries. Secretion from preantral and early antral follicles renders AMH as the earliest marker to show OR decline. In this review we discuss the dynamics of circulating AMH that remarkably vary with sex and age. As it emerges as a marker of gonadal development and reproductive disorders, here we summarize the role of AMH in female …


A New Model Of Master Of Philosophy In Physiological Sciences, H R. Ahmad, F M. Arain, N A. Khan 2016 Aga Khan University

A New Model Of Master Of Philosophy In Physiological Sciences, H R. Ahmad, F M. Arain, N A. Khan

Department of Biological & Biomedical Sciences

The objectives of Master of Philosophy (MPhil) in Physiological Sciences are: 1) to describe the new ways in which anatomy, biochemistry and physiology on one hand, and microbiology, pathology and pharmacology on other hand meet their functional requirements through multidisciplinary integrated concepts; 2) to elucidate relationships between cell biology, molecular biology and molecular genetics by connecting dots of how cell functions are driven by molecules and being controlled by genes. This forms the basis of cell, molecular and genetics [CMG] module upon which 7 multidisciplinary modules of Physiological Sciences follow; 3) these 24 credit hours provide the physiological basis for …


How To Write A Doctoral Thesis, H R. Ahmad 2016 Aga Khan University

How To Write A Doctoral Thesis, H R. Ahmad

Department of Biological & Biomedical Sciences

No abstract provided.


An Investigation Into The Molecular Basis Underlying Enhancement Of Transcription By The Intron In Budding Yeast, Neha Agarwal Agarwal 2016 Wayne State University

An Investigation Into The Molecular Basis Underlying Enhancement Of Transcription By The Intron In Budding Yeast, Neha Agarwal Agarwal

Wayne State University Dissertations

It is now quite evident that the introns, which are removed from the primary transcript by the process of splicing, are involved in a variety of important functions in eukaryotic cells. One of the evolutionarily conserved functions of introns is their role in regulating transcription of genes that harbors them. This effect of a splicing-competent intron on transcription is known as ‘Intron-Mediated Enhancement of transcription’ (IME). It has been observed that the intron-containing genes are often transcribed more efficiently than non-intronic genes. However, the molecular mechanism underlying IME in budding yeast and higher eukaryotes is not entirely clear, and that …


Regulation Of The Subunits Of Hypoxia Inducible Factors By Sprouty2 And Its Impact On Different Biological Processes, Kristin Caroline Hicks 2016 Loyola University Chicago

Regulation Of The Subunits Of Hypoxia Inducible Factors By Sprouty2 And Its Impact On Different Biological Processes, Kristin Caroline Hicks

Dissertations

The hypoxia inducible factors (HIF1α, HIF2α, HIF1β) promote transcription of genes that regulate glycolysis and cell survival and growth. Sprouty2 (Spry2) is a modulator of receptor tyrosine kinase signaling and inhibits cell proliferation via different mechanisms. Because of the seemingly opposite actions of the HIF and Spry2 on cellular processes, we hypothesized that Spry2 decreases the protein levels of HIF1α, HIF2α and HIF1β by enhancing the proximity of the HIF subunit to an ubiquitin ligase capable of degrading the subunit. Focusing on HIF1α as a prototypical alpha subunit, in a variety of tumor derived cell lines, Spry2 decreases the protein …


Studies Into The Allosteric Regulation Of Adp-Glucose Pyrophosphorylases, Benjamin Luke Hill 2016 Loyola University Chicago

Studies Into The Allosteric Regulation Of Adp-Glucose Pyrophosphorylases, Benjamin Luke Hill

Dissertations

The synthesis of glycogen in bacteria and starch in plants is allosterically controlled by the production of ADP-glucose by ADP-glucose pyrophosphorylase. Using computational studies, site directed mutagenesis, and kinetic characterization, and protein crystallography we found a critical region for transmitting the allosteric signal in the Escherichia coli and A. tumefaciens ADP-glucose pyrophosphorylase. Molecular dynamics simulations and structural comparisons with other ADP-glucose pyrophosphorylases provided information to hypothesize communication pathways that link allosteric and active sites, and this was tested by site-directed mutagenesis and kinetic characterization of the mutant enzymes. In addition, the application of x-ray crystallography enabled the pinpointing of the …


Heart And Sole: The Functional Role Of Fast-Skeletal Myosin Binding Protein-C In Cardiac And Skeletal Muscle, Brian Leei Lin 2016 Loyola University Chicago

Heart And Sole: The Functional Role Of Fast-Skeletal Myosin Binding Protein-C In Cardiac And Skeletal Muscle, Brian Leei Lin

Dissertations

The goal of my dissertation was to compare and contrast the function of all three major isoforms of Myosin Binding Protein-C (MyBP-C): slow-skeletal, fast-skeletal, and cardiac (ssMyBP-C, fsMyBP-C, and cMyBP-C, respectively), with a focus on the least characterized isoform, fsMyBP-C. Using a variety of ex vivo, in vitro, and in silico methods, my research demonstrated that the N-terminal region of all MyBP-C isoforms bind to actin and shift tropomyosin, thus activating the thin filament during contraction. Furthermore, each isoform differentially activated the thin filament over isoform-specific ranges of Ca2+: slow-skeletal activates at low Ca2+, fast-skeletal activates at higher Ca2+, and …


Mechanistic Variations Of The Bronsted Linear Free Energy Relationships For Nonezymatic Nucleotidyl Transfer Reactions, Zheng Zhang 2016 Loyola University Chicago

Mechanistic Variations Of The Bronsted Linear Free Energy Relationships For Nonezymatic Nucleotidyl Transfer Reactions, Zheng Zhang

Dissertations

As the essential enzymes in human bodies, DNA polymerases play a significant role in DNA replication, repair, genetic recombination, and reverse transcription. In 1956, the enzyme of DNA polymerase I, also named as Pol I, was discovered by Arthur Kornberg and colleagues. Subsequently, the Noble Committee had decided that the Noble Prize in Physiology or Medicine for 1959 was to be awarded to Kornberg for his excellent original work that describes the DNA replication process whereby the DNA polymerase copies the nucleotide sequence of a DNA template strand. Because of the complex enzyme structure in the DNA polymerase, it is …


The Role Of Microrna In Cardioprotection: Ischemic Preconditioning And Mesenchymal Stem Cell Paracrine Effects, Kristin Luther 2016 Loyola University Chicago

The Role Of Microrna In Cardioprotection: Ischemic Preconditioning And Mesenchymal Stem Cell Paracrine Effects, Kristin Luther

Dissertations

Changes in gene expression and protein levels are an important aspect of cardioprotection in which short non-coding RNA known as miRNA may play a key regulatory role. We investigated the functions of several miRNAs in the context of two cardioprotective stimuli, ischemic preconditioning (IPC) and mesenchymal stem cell (MSC) paracrine effects. We hypothesized that downregulation of a set of miRNAs (miR-148a/b, miR-30b, and let-7a*) augments expression of protective heat shock proteins during IPC, and that MSC exosomes transfer miR-21 to cardiomyocytes, resulting in downregulation of pro-apoptotic genes and reduction of infarct size.

IPC increased the level of Hsp70, Hsp90, and …


Towards The Complete Small Rnome Of Acinetobacter Baumannii, Andy Weiss, William H. Broach, Mackenzie C. Lee, Lindsey N. Shaw 2016 University of South Florida

Towards The Complete Small Rnome Of Acinetobacter Baumannii, Andy Weiss, William H. Broach, Mackenzie C. Lee, Lindsey N. Shaw

Molecular Biosciences Faculty Publications

In recent years, the Gram-negative bacterium Acinetobacter baumannii has garnered considerable attention for its unprecedented capacity to rapidly develop resistance to antibacterial therapeutics. This is coupled with the seemingly epidemic emergence of new hyper-virulent strains. Although strain-specific differences for A. baumannii isolates have been well described, these studies have primarily focused on proteinaceous factors. At present, only limited publications have investigated the presence and role of small regulatory RNA (sRNA) transcripts. Herein, we perform such an analysis, describing the RNA-seq-based identification of 78 A. baumannii sRNAs in the AB5075 background. Together with six previously identified elements, we include each of …


Peptidoglycan Recycling In Gram-Positive Bacteria Is Crucial For Survival In Stationary Phase, Marina Borisova, Rosmarie Gaupp, Amanda Duckworth, Alexander Schneider, Désirée Dalügge, Maraike Mühleck, Denise Deubel, Sandra Unsleber, Wenqi Yu, Günther Muth, Markus Bischoff, Friedrich Götz, Christoph Mayer 2016 University of Tübingen

Peptidoglycan Recycling In Gram-Positive Bacteria Is Crucial For Survival In Stationary Phase, Marina Borisova, Rosmarie Gaupp, Amanda Duckworth, Alexander Schneider, Désirée Dalügge, Maraike Mühleck, Denise Deubel, Sandra Unsleber, Wenqi Yu, Günther Muth, Markus Bischoff, Friedrich Götz, Christoph Mayer

Molecular Biosciences Faculty Publications

Peptidoglycan recycling is a metabolic process by which Gram-negative bacteria reutilize up to half of their cell wall within one generation during vegetative growth. Whether peptidoglycan recycling also occurs in Gram-positive bacteria has so far remained unclear. We show here that three Gram-positive model organisms, Staphylococcus aureus, Bacillus subtilis, and Streptomyces coelicolor, all recycle the sugar N-acetylmuramic acid (MurNAc) of their peptidoglycan during growth in rich medium. They possess MurNAc-6-phosphate (MurNAc-6P) etherase (MurQ in E. coli) enzymes, which are responsible for the intracellular conversion of MurNAc-6P to N-acetylglucosamine-6-phosphate and d-lactate. By applying mass spectrometry, we observed accumulation of MurNAc-6P in …


Selection Of A Novel Aptamer Against Vitronectin Using Capillary Electrophoresis And Next Generation Sequencing, C. H. Stuart, Kathryn R. Riley, O. Boyacioglu, D. M. Herpai, W. Debinski, S. Qasem, F. C. Marini, C. L. Colyer, W. H. Gmeiner 2016 Swarthmore College

Selection Of A Novel Aptamer Against Vitronectin Using Capillary Electrophoresis And Next Generation Sequencing, C. H. Stuart, Kathryn R. Riley, O. Boyacioglu, D. M. Herpai, W. Debinski, S. Qasem, F. C. Marini, C. L. Colyer, W. H. Gmeiner

Chemistry & Biochemistry Faculty Works

Breast cancer (BC) results in ≃40,000 deaths each year in the United States and even among survivors treatment of the disease may have devastating consequences, including increased risk for heart disease and cognitive impairment resulting from the toxic effects of chemotherapy. Aptamer-mediated drug delivery can contribute to improved treatment outcomes through the selective delivery of chemotherapy to BC cells, provided suitable cancer-specific antigens can be identified. We report here the use of capillary electrophoresis in conjunction with next generation sequencing to develop the first vitronectin (VN) binding aptamer (VBA-01; Kd 405 nmol/l, the first aptamer to vitronectin (VN; Kd = …


Functional Roles For Post-Translational Modifications Of T-Snares In Platelets, Jinchao Zhang 2016 University of Kentucky

Functional Roles For Post-Translational Modifications Of T-Snares In Platelets, Jinchao Zhang

Theses and Dissertations--Molecular and Cellular Biochemistry

Platelets affect vascular integrity by secreting a host of molecules that promote hemostasis and its sequela. Given its importance, it is critical to understand how platelet exocytosis is controlled. Post-translational modifications, such as phosphorylation and acylation, have been shown to affect signaling pathways and platelet function. In this dissertation, I focus on how these modifications affect the t-SNARE proteins, SNAP-23 and syntaxin-11, which are both required for platelet secretion. SNAP-23 is regulated by phosphorylation. Using a proteoliposome fusion assay, I demonstrate that purified IκB Kinase (IKK) phosphorylated SNAP-23, which increased the initial rates of SNARE-mediated liposome fusion. SNAP-23 mutants …


Substrate Specificity Of The Lipn Hydrolase From Mycobacterium Ulcerans, Stephanie Raynor 2016 Butler University

Substrate Specificity Of The Lipn Hydrolase From Mycobacterium Ulcerans, Stephanie Raynor

Undergraduate Honors Thesis Collection

Mycobacterium ulcerans is the causative agent of Buruli ulcer, a tropical skin disease that affects thousands of individuals annually. Recent studies have revealed that lipolytic enzymes are involved in the pathogenicity processes of mycobacterium and could be potential targets for novel antibiotics. LipN is one proposed serine hydrolase in Mycobacterium ulcerans that contains the conserved α/β hydrolase protein fold and utilizes the conserved catalytic traid of serine, histidine, and aspartate/glutamate. The physiological substrate and biological role of LipN from M. ulcerans have not yet been determined. In this study, LipN was cloned into a pET28a plasmid and overexpressed in an …


Novel Insight Into The Role Of Lxrα In Metabolic Regulation Via Dna Binding As A Heterodimer With Pparα And As A Homodimer, Andrea M. Klingler 2016 Wright State University

Novel Insight Into The Role Of Lxrα In Metabolic Regulation Via Dna Binding As A Heterodimer With Pparα And As A Homodimer, Andrea M. Klingler

Browse all Theses and Dissertations

Liver X receptor a (LXRa) plays a critical role in the maintenance of energy homeostasis within a cell through tight transcriptional regulation of genes involved in metabolism of lipids, glucose, and cholesterol. Although LXRa has been established to function as a heterodimer with the retinoid X receptor a (RXRa), recent studies have determined that LXRa also interacts directly with peroxisome proliferator-activated receptor a (PPARa). However, little is known regarding the functionality of this heterodimer, if any exists at all. This study determined that a heterodimer of PPARa and LXRa is capable of binding to candidate response elements in vitro with …


A Mechanistic Study Of An Ipsc Model For Leigh’S Disease Caused By Mtdna Mutataion (8993 T>G), John P. Galdun 2016 Virginia Commonwealth University

A Mechanistic Study Of An Ipsc Model For Leigh’S Disease Caused By Mtdna Mutataion (8993 T>G), John P. Galdun

Theses and Dissertations

Mitochondrial diseases encompass a broad range of devastating disorders that typically affect tissues with high-energy requirements. These disorders have been difficult to diagnose and research because of the complexity of mitochondrial genetics, and the large variability seen among patient populations. We have devised and carried out a mechanistic study to generate a cell based model for Leigh’s disease caused by mitochondrial DNA mutation 8993 T>G. Leigh’s disease is a multi-organ system disorder that depends heavily on the mutation burden seen within various tissues. Using new reprogramming and sequencing technologies, we were able to show that Leigh’s disease patient fibroblasts …


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