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8篇 您的检索式:作者名="Mauro MC"
    题名 作者 年代 出处 被引量
1STI571: a paradigm of new agents for cancer therapeutics显示文摘 O'Dwyer M Heinrich MC 2002J Clin Oncol2002,20,1:1
2STI571:a paradigm of new agents for cancer therapeutics显示文摘Mauro MJ O'Mwyer M Heinrich MC et a1 2002J Clin Oncol2002,20,1:1
3High efficiency regeneration of grapevine plants transferd with the GFLV coat protein gene显示文摘Mauro MC Toutain S Walter B 1995Plant Sei1995,112,:1
4Determination of melamine infeed: Validation of a gas chromatographymass spectrometry method according to 2004/882/CE regulation 显示文摘Squadrone S Ferro GL Marchis D Mauro C Palmegiano P AmatoG Poma Genin E Abete MC 2010Food Control2010,21,:1
5STI571: A paradigm of new agents for cancer therapeutics显示文摘Mauro MJ O'Dwyer M Heinrich MC 2002J Clin Oncol2002,20,1:1
6High efficiency regeneration of grapevine plants transferd with the GFLV coat protein gene显示文摘Mauro MC Toutain S Walter B 1995Plant Sci1995,112,:1
7Knockdown of cyclin - dependent kinase inhibitors induces cardiomyocyte re - entry in the cell cycle显示文摘Di Stefano V Mauro G Capogrossi MC 2011J Biol Chem2011,286,10:1
8New approaches to increase intestinal length: Methods used for intestinal regeneration and bioengineering显示文摘Inadequate absorptive surface area poses a great challenge to the patients suffering a variety of in-testinal diseases causing short bowel syndrome. To date, these patients are managed with total parenteral nutrition or intestinal transplantation. However, these carry significant morbidity and mortality. Currently, by emergence of tissue engineering, anticipations to utilize an alternative method to increase the intestinal absorptive surface area are increasing. In this paper, we will review the improvements made over time in attempting elongating the intestine with surgical techniques as well as using intestinal bioengineering. Performing sequential intestinal lengthening was the preliminary method applied in humans. However, these methods did not reach widespread use and has limited outcome. Subsequent experimental methods were developed utilizing scaffolds to regenerate intestinal tissue and organoids unit from the intestinal epithelium. Stem cells also have been studied and applied in all types of tissue engineering. Biomaterials were utilized as a structural support for naive cells to produce bio-engineered tissue that can achieve a near-normal anatomical structure. A promising novel approach is the elongation of the intestine with an acellular biologic scaffold to generate a neoformed intestinal tissue that showed, for the first time, evidence of absorption in vivo. In the large intestine, studies are more focused on regeneration and engineering of sphincters and will be briefly reviewed. From the review of the existing literature, it can be concluded that significant progress has been achieved in these experimental methods but that these now need to be fully translated into a pre-clinical and clinical experimentation to become a future viable therapeutic option.Ali Shirafkan Mauro Montalbano Joshua Mc Guire Cristiana Rastellini Luca Cicalese 2016World Journal of Transplantation2016,6,1:0
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