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  • Bentham Science Publishers Ltd.  (2)
  • Chen, Siwei  (2)
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  • Bentham Science Publishers Ltd.  (2)
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  • 1
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2022
    In:  Current Pharmaceutical Design Vol. 28, No. 25 ( 2022-07), p. 2113-2125
    In: Current Pharmaceutical Design, Bentham Science Publishers Ltd., Vol. 28, No. 25 ( 2022-07), p. 2113-2125
    Abstract: The efficacy of a traditional anticancer drug is challenged by adverse effects of the drug, including its nonspecific bio-distribution, short half-life, and side effects. Dendrimer-based targeted drug delivery system has been considered a promising strategy to increase targeting ability and reduce adverse effects of anti-cancer drugs. Objective: This study analyzed the feasibility of whether the anticancer drug 5-fluorouracil (5-FU) could be delivered by functionalized fifth-poly(amidoamine) (PAMAM) with the peptide WP05 and the acetic anhydride to the liver cancer cells, reducing the toxicity of the PAMAM and improving the targeting property of 5-FU during delivery. Methods: The functionalized PAMAM-based nanoformulation (WP05-G5.0NHAC-FUA) was fabricated through an amide condensation reaction to improve the therapeutic efficacy of 5-Fluorouracil (5-FU) in hepatocellular carcinoma (HCC). The physicochemical structure, particle size, zeta potential, stability, and in vitro release characteristics of WP05-G5.0NHAC-FUA were evaluated. In addition, the targeting, biocompatibility, anti-proliferation, and anti-migration of WP05-G5.0NHAC-FUA were investigated. The anti-tumor effect of WP05-G5.0NHAC-FUA in vivo was evaluated by constructing xenograft tumor models of human hepatoma cells (Bel-7402) implanted in nude mice. Results: The resultant WP05-G5.0NHAC-FUA displayed spherical-like nanoparticles with a size of 174.20 ± 3.59 nm. Zeta potential and the drug loading of WP05-G5.0NHAC-FUA were 5.62 ± 0.41mV and 28.67 ± 1.25%, respectively. Notably, the optimized 5-FU-loaded formulation showed greater cytotoxicity with an IC50 of 30.80 ± 4.04 μg/mL than free 5-FU (114.93 ± 1.43 μg/mL) in Bel-7402 cancer liver cells, but a significantly reduced side effect relative to free 5-FU in L02 normal liver cells. In vivo animal study further confirmed efficient tumor accumulation and enhanced therapeutic efficiency. Conclusion: The developed nanoformulation is a promising platform for the targeting delivery of 5-FU and provides a promising solution for improving the efficacy of hepatocellular carcinoma chemotherapy.
    Type of Medium: Online Resource
    ISSN: 1381-6128
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2022
    SSG: 15,3
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  • 2
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2019
    In:  Current Stem Cell Research & Therapy Vol. 14, No. 3 ( 2019-04-29), p. 230-238
    In: Current Stem Cell Research & Therapy, Bentham Science Publishers Ltd., Vol. 14, No. 3 ( 2019-04-29), p. 230-238
    Abstract: Characterization of the fate changes of stem cells is essential to understand the roles of certain stem cells both during development and in diseases, such as cancer. In the past two decades, more and more importance has been paid to the studies of in vivo lineage tracing, because they could authentically reveal the differentiation, migration and even proliferation of stem cells. However, specific genetic tools have only been developed until recently. Objective: To summarize the progresses of genetic tools for specific lineage tracing with emphasis on their applications in investigating the stem cell niche signals. Results: Three major genetic strategies have been reviewed according to the development of technique, particularly the advantages and disadvantages of individual methods. Conclusion: In vivo specific lineage tracing of stem cells could be achieved by comprehensive application of multiple genetic tools.
    Type of Medium: Online Resource
    ISSN: 1574-888X
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2019
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