文献信息 RETRACTED

Heparin-binding growth factor 1 induces the formation of organoid neovascular structures in vivo.

期刊 Proceedings of the National Academy of Sciences of the United States of America
发表日期 1989
DOI -
PMID 2479012
原始摘要

One of the promises of modern molecular biology has been the opportunity to use genetically modified human cells in a patient to permanently restore inborn errors of metabolism. Although it has been possible to introduce genes into mammalian cells and to control their expression, it has proven difficult to introduce mammalian cells as carriers of the modified genetic information into hosts. The successful implantation of selective cells cannot be achieved without adequate vascular support, an essential step toward integration and reconstitution of a new biological function. Although a partial solution to this problem has been found by inducing specific site-directed neovessel formation using heparin-binding growth factor 1 (HBGF-1) adsorbed to a collagen matrix, these implants function for only a short period (weeks). We now report the formation of organoid neovascular structures using polytetrafluoroethylene fibers coated with collagen and HBGF-1 implanted in the peritoneal cavity of the rat. The organoid structures contained readily visible vascular lumina and nonvascular structures that resemble nerve tissue. It was also possible to demonstrate that the vascular system on the implant is continuous with the vascular tree of the host. This feature was used to demonstrate that the organoid structures are capable of sustaining the biological function of implanted normal rat hepatocytes over long periods of time (months) in the homozygous Gunn rat, thereby facilitating future applications involving the delivery of new genetic information.

撤稿信息
撤稿日期 1992-Aug-15
撤稿期刊 Proceedings of the National Academy of Sciences of the United States of America
发布机构 United States
通知PMID 1502206
撤稿通知标题:
Heparin-binding growth factor 1 induces the formation of organoid neovascular structures in vivo
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研究领域
基础医学
文章类型
原创研究(Original Research)
研究方法
动物模型实验
疾病/条件
高胆红素血症
数据来源
实验室自产(Lab-generated)
撤稿原因
无法确定
撤稿类型
撤稿(Full Retraction)
研究机构
Genetic Therapy, Inc., Gaithersburg, MD 20878
国家/地区
美国
资助来源
NHLBI NIH HHS HL32348 (HL); NHLBI NIH HHS HL35627 (HL)
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