Background: Two competitive concepts of umbilical cord blood (UCB) banking are currently available: either allogeneic UCB is donated to a public bank or autologous cells are stored in a private bank. Allogeneic-autologous hybrid banking is a new concept that combines these two approaches. However, acceptance of hybrid UCB banking among potential donors is unknown to date.
Study Design And Methods: In a prospective survey, we aimed to establish the acceptance of the hybrid banking model among actual and potential UCB donors in Switzerland. The study groups consisted of parents and pregnant women with or without children. As control group, women at reproductive ages were investigated.
Results: The majority of participants agreed fundamentally with UCB donation, and overall acceptance of private banking was 47%. If a possibility for hybrid banking were to be made available, 49% would opt for such a public-private model and only 13% would choose private banking alone. Among the proponents of hybrid banking, a majority of participants chose donor cell splitting over the sequential banking mode. Fifty-six percent of responders wished prior notification before the release of their donated UCB to a foreign recipient.
Conclusions: This is the first study which compared the acceptance of allogeneic, autologous, and hybrid allogeneic-autologous UCB banking in different target groups. We demonstrated that hybrid cord blood banking is the preferred model of banking among actual and potential UCB donors. With increasing demand for UCB in the future, health care providers should therefore consider offering hybrid banking as a viable storage option.
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http://dx.doi.org/10.1111/j.1537-2995.2012.03921.x | DOI Listing |
Sci Rep
December 2024
School of Civil Engineering, Chongqing Three Gorges University, Chongqing, 404100, China.
Runoff fluctuations under the influence of climate change and human activities present a significant challenge and valuable application in constructing high-accuracy runoff prediction models. This study aims to address this challenge by taking the Wanzhou station in the Three Gorges Reservoir area as a case study to optimize various prediction models. The study first selects artificial neural network (ANN) and support vector machine (SVM) as the base models.
View Article and Find Full Text PDFVavilovskii Zhurnal Genet Selektsii
November 2024
Institute of Cytology and Genetics of the Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russia.
Synthetic intergeneric amphydiploids and genome-substituted wheat forms are an important source for transferring agronomically valuable genes from wild species into the common wheat (Triticum aestivum L.) genome. They can be used both in academic research and for breeding purposes as an original material for developing wheat-alien addition and substitution lines followed by translocation induction with the aid of irradiation or nonhomologous chromosome pairing.
View Article and Find Full Text PDFPLoS One
December 2024
Offshore Oil Engineering Co., Ltd., Engineering Company, Tianjin, China.
The application of flexible risers has led to increased production of fluid contents in the marine industry. This paper presents the design challenges of a flexible riser subjected to internal pressure under deep-water conditions, at a water depth of 2000 m. Parametric variations with extensive dynamic analysis were carried out.
View Article and Find Full Text PDFBio Protoc
December 2024
College of Life Sciences, Wuhan University, Wuhan, China.
The quality of cellular products used in biological research can impact the accuracy of results. Epstein-Barr virus (EBV) is a latent virus that spreads extensively worldwide, and cell lines used in experiments may carry EBV and pose an infection risk. The presence of EBV in a single cell line can contaminate other cell lines used in the same laboratory, affecting experimental results.
View Article and Find Full Text PDFInt J Mol Sci
November 2024
Centre for Bioinnovation, University of the Sunshine Coast, Sippy Downs, QLD 4556, Australia.
RNA interference (RNAi)-based biotechnology has been previously implemented in decapod crustaceans. Unlike traditional RNAi methodologies that investigate single gene silencing, we employed a multigene silencing approach in decapods based on chimeric double-stranded RNA (dsRNA) molecules coined 'gene blocks'. Two dsRNA constructs, each targeting three genes of the crustacean hyperglycaemic hormone (CHH) superfamily of neuropeptides, were produced: Type II construct targeting Molt-inhibiting hormone 1 (MIH1), MIH-like 1 (MIHL1), and MIHL2 isoforms and Type I construct targeting ion transport peptide (ITP; a putative hybrid of CHH and MIH) and CHH and CHH-like (CHHL) isoforms.
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