Publications by authors named "Hui Fen Zhao"

Background: We aim to establish a gestational diabetes mellitus (GDM) mouse model with mice fed with a high-fat diet (HFD) in comparison with pregnant mice with normal blood glucose levels to investigate the role of intestinal microbiota in the development of HFD-induced GDM.

Methods: We divided healthy 6-week-old female C57BL mice into an HFD-induced GDM group and a normal diet group. Their bacterial flora and metabolites in intestinal fecal exosomes were co-analyzed using 16 s multi-region sequencing and compared.

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Article Synopsis
  • Gestational diabetes mellitus (GDM) is a common metabolic disorder during pregnancy that can negatively affect both the mother and the baby due to complications that may arise during this period.
  • * The condition involves complex mechanisms, including insulin resistance and β-cell dysfunction, with metabolic reprogramming playing a key role in maintaining metabolic balance.
  • * Limited research exists on how metabolic reprogramming is linked to GDM, hence the need for reviews to explore this relationship for developing new treatment strategies to improve maternal health and lower the risk of GDM.
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Recently, an engineered Homeobox-nucleoporin fusion gene, NUP98-HOXA10HD or NA10HD, was reported to expand and maintain murine hematopoietic stem cells (HSCs). We postulated that NA10HD would increase the number of human γ-globin-expressing cells to therapeutic levels. We developed a double gene lentiviral vector encoding both human γ-globin and NA10HD, which was used to transduce human peripheral blood CD34 cells and increased engraftment 2- to 2.

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Objective: To summarize the treatment outcomes of orbital adenoid cystic carcinoma and to evaluate prognostic factors.

Method: A retrospective case series study was performed on 75 patients with orbital adenoid cystic carcinoma treated from 1991 to 2006.

Results: The 2- and 5-year local recurrence rate of solid type orbital adenoid cystic carcinoma was significantly higher than that of the adeno-tubiform type [2-year, 85% (17/20) vs 23.

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Use of RNA interference (RNAi) as a reverse genetics tool for silencing genes in mammalian cells is achieved by in vitro transfection of small interfering RNAs (siRNAs). For a target gene, several siRNAs must be designed according to the empirical rules. We demonstrated that functional short hairpin RNAs (shRNAs) could be synthesized in Escherichia coli and delivered directly via bacterial invasion to the near entirety of a mammalian cell population to trigger RNAi.

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A mammalian two-hybrid system was developed for high-throughput screening of compounds that disrupt specific protein-protein interactions. The existing mammalian systems are unsatisfactory for drug screening due to nonregulated expression of interacting proteins. To construct a tightly regulated system, the tetracycline repressor was fused with the inhibitory KRAB domain as a suppressor.

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Regulated expression of transgenes in mammals is an important technique in both functional genomic studies and clinical applications. Here we describe a regulated gene expression system for mammals, based on coumarin-switched dimerization of the bacterial DNA gyrase B subunit (GyrB). The transactivator was constructed by fusing the GyrB activator to the bacterial lambda repressor-binding domain.

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