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1.
Article in Chinese | WPRIM | ID: wpr-338995

ABSTRACT

<p><b>OBJECTIVE</b>To study angiogenesis patterns in the edematous area and the center of human astrocytomas by histological observation, and to reveal histological basis of vasculogenic mimicry.</p><p><b>METHOD</b>Tissue samples were drawn from the tumor center and the edematous area in 51 patients with human astrocytomas during operation MR and were examined by CD34 endothelial marker periodic acid-Schiff (PAS) dual staining.</p><p><b>RESULTS</b>Vessels or capillaries stained by both PAS and CD34 were found in edematous areas of human astrocytomas. Besides vessels or capillaries stained by both PAS and CD34, vasculogenic mimicries (PAS-positive and CD34-negative tubes containing red blood cells and lined by neoplastic cells), PAS-positive and CD34-negative tubes containing red blood cells and without cells around, PAS-positive and partial CD34-positive vessels or capillaries, and PAS-positive and CD34-negtive vessels or capillaries were detected in the center of tumor of 4 human glioblastomas.</p><p><b>CONCLUSIONS</b>Vasculogenic mimicries in the center of some high-grade astrocytomas may be caused by blood capillary dysplasia, while angiogenesis patterns are vessels or capillaries in the edematus area and the center of most human astrocytomas.</p>


Subject(s)
Adolescent , Adult , Aged , Child , Female , Humans , Male , Middle Aged , Young Adult , Antigens, CD34 , Astrocytoma , Pathology , Brain , Pathology , Brain Edema , Pathology , Brain Neoplasms , Pathology , Neovascularization, Pathologic , Pathology
2.
Chinese Journal of Neuromedicine ; (12): 278-281, 2009.
Article in Chinese | WPRIM | ID: wpr-1032716

ABSTRACT

Objective To study the expression of cathepsin D (CathD) in the central, peripheral and edematous areas of human astrocytomas and its clinical implications. Methods Forty-one patients with astrocytomas showing clear boundaries between the tumor area and the edematous area but without tumor necrosis or cystic degeneration as shown by magnetic resonance imaging (MRI) were divided into recurrent group (13 patients) and non-recurrent group (28 patients). Surgical specimens of the tissues in the central, peripheral and edematous areas of the tumor were obtained according to MR images using FLAIR sequence for detecting CathD expression with immunohistochemistry Results Normal brain tissues had virtually no or low CathD expression. Positive CathD expression was found in the central, peripheral and edematous areas of the astrocytomas, and the expression was significantly higher in the peripheral area (2.610±0.945) than in the central area (10.780±1.557) of the tumor (P<0.05). Patients in the recurrent group had more intense CathD expression in the peripheral area of the tumor than those in the non-recurrent group (11.539±1.127 vs 10.429±1.620, P<0.05), but in the central area of the tumor, the expression was comparable between the two groups (P>0.05). Conclusion Obvious CathD expression in the peripheral and edematous areas of the astrocytomas may suggest the likeliness of potential astrocytoma infiltration in these areas. The relative low CathD expression of CathD in the central area of the tumor indicates almost total degradation of the extracellular matrix as a result of early tumor invasion. CathD expression in the peripheral and edematous areas of the astrocytomas may serve as an indicator of tumor recurrence.

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