The first epidemiological study for thalassemia in Cyprus was performed by Fawdry in 1946. The study determined that the frequency of β-thalassemia (β-thal) carriers was around 18.0% and that of α(0)-thal carriers (individuals with both cis α-globin genes inactive) at around 2.0%. In 1998, another study concluded that Cyprus had one of the highest frequencies of β-thal carriers worldwide (17.2%). Based on Haldane's hypothesis that malaria might be the selective agent responsible for the maintenance of high levels of thalassemia and sickle cell disease in many populations around the world, it is expected that following the eradication of the disease in Cyprus in 1948, the carriers of β-thal should decline with each generation. In order to determine whether this has been the case, we compiled frequency data for β-thal carriers from three separate surveys performed as part of the Cyprus National Thalassaemia Screening Programme (NTSP). The surveys were carried out in 1986, 2003 and 2010 involving 9622, 6711 and 5228 subjects, respectively. The expected drop in the prevalence of β-thal carriers for each successive generation following the eradication of malaria, i.e., in the absence of selection pressure, was calculated using the Hardy-Weinberg equation and the mathematical model of Hartl and Clark. The surveys provide supporting evidence for the decrease of the frequency of the β-thal carriers in the Greek Cypriot population, with a drop of 1.89% in 24 years.
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http://dx.doi.org/10.3109/03630269.2013.801851 | DOI Listing |
ACS Infect Dis
January 2025
Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore 560064, India.
The complete tricarboxylic acid (TCA) cycle, comprising a series of 8 oxidative reactions, occurs in most eukaryotes in the mitochondria and in many prokaryotes. The net outcome of these 8 chemical reactions is the release of the reduced electron carriers NADH and FADH, water, and carbon dioxide. The parasites of the .
View Article and Find Full Text PDFJ Appl Genet
January 2025
Department of Genetics and Animal Breeding, Poznan University of Life Sciences, Poznan, Poland.
Identification of chromosomal abnormalities is an important issue in animal breeding and veterinary medicine. Routine cytogenetic diagnosis of domestic animals began in the 1960s with the aim of identifying carriers of centric fusion between chromosome 1 and 29 in cattle. In the 1970s, chromosome banding techniques were introduced, and in the 1980s, the first cytogenomic techniques, based on the development of locus- and chromosome-specific probes, were used.
View Article and Find Full Text PDFNanomicro Lett
January 2025
Shanghai Key Lab of Chemical Assessment and Sustainability, School of Chemical Science and Engineering, Tongji University, Shanghai, 200092, People's Republic of China.
Compared with Zn, the current mainly reported charge carrier for zinc hybrid capacitors, small-hydrated-sized and light-weight NH is expected as a better one to mediate cathodic interfacial electrochemical behaviors, yet has not been unraveled. Here we propose an NH-modulated cationic solvation strategy to optimize cathodic spatial charge distribution and achieve dynamic Zn/NH co-storage for boosting Zinc hybrid capacitors. Owing to the hierarchical cationic solvated structure in hybrid Zn(CFSO)-NHCFSO electrolyte, high-reactive Zn and small-hydrate-sized NH(HO) induce cathodic interfacial Helmholtz plane reconfiguration, thus effectively enhancing the spatial charge density to activate 20% capacity enhancement.
View Article and Find Full Text PDFJ Chem Theory Comput
January 2025
Laboratory of Medicinal Chemistry, Rega Institute for Medicinal Research, Herestraat 49, Box 1030, Leuven B-3000, Belgium.
Synthetic nucleic acids, also defined as xenobiotic nucleic acids (XNAs), opened an avenue to address the limitations of nucleic acid therapeutics and the development of alternative carriers for genetic information in biotechnological applications. Two related XNA systems of high interest are the α-l-threose nucleic acid (TNA) and (3'-2') phosphonomethyl threosyl nucleic acid (tPhoNA), where TNAs show potential in antisense applications, whereas tPhoNAs are investigated for their predisposition toward orthogonal genetic systems. We present predictions on helical models of TNA and tPhoNA chemistry in homoduplexes and in complex with native ribose chemistries.
View Article and Find Full Text PDFCurr Protoc
January 2025
Myriad Genetic Laboratories, Inc., Salt Lake City, Utah.
Balanced translocation carriers experience elevated reproductive risks, including pregnancy loss and children with anomalies due to generating chromosomally unbalanced gametes. While understanding the likelihood of producing unbalanced conceptuses is critical for individuals to make reproductive decisions, risk estimates are difficult to obtain as most balanced translocations are unique. To improve reproductive risk estimates, Drs.
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