Literature DB >> 16412751

Spatial differences in biologic activity of large uterine leiomyomata.

Jian-Jun Wei1, Xing-Min Zhang, Luis Chiriboga, Herman Yee, Mary A Perle, Khush Mittal.   

Abstract

OBJECTIVE: To evaluate the growth pattern of the large uterine leiomyomata (ULM), we examined the spatial gene distributions, vessel density, proliferative activity, and hyaline degeneration.
DESIGN: Tissue sections from three-dimensional large ULM, matched myometrium, and small ULM were collected and microarrayed. The spatial difference of the tumor activity was mapped in large ULM.
SETTING: University clinical research laboratory. PATIENT(S): Hysterectomy specimens from 7 patients with large (>10 cm) ULM and 3 patients with large (>10 cm) uterine leiomyosarcomas. INTERVENTION(S): Tissue microarray analysis by the immunohistochemistry. MAIN OUTCOME MEASURE(S): Selected gene products, vessel density, and the percentage of hyaline degeneration were all scored in tissue cores/sections of large and small ULM against matched myometrium. RESULT(S): We found that there was a spherical spatial difference of the tumor activities in large ULM. The tumor region next to the periphery, the most biologically active zone, demonstrated higher levels of gene expression, a higher density of vessels, a higher proliferative rate and a lower level of hyaline degeneration. The large ULM have higher levels of gene products (except for estrogen and progesterone receptors) than small ULM. CONCLUSION(S): In comparison of the spatial patterns of the gene activity between the large ULM and the large uterine leiomyosarcoma, the large ULM illustrate a growth pattern of nutritional dependence.

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Year:  2006        PMID: 16412751     DOI: 10.1016/j.fertnstert.2005.07.1294

Source DB:  PubMed          Journal:  Fertil Steril        ISSN: 0015-0282            Impact factor:   7.329


  10 in total

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7.  Relaxin increases elastase activity and protease inhibitors in smooth muscle cells from the myometrium compared with cells from leiomyomas.

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10.  Evidence of biomechanical and collagen heterogeneity in uterine fibroids.

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  10 in total

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