Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Background: Advanced intercellular communication is a known oncogenic factor. In the central nervous system, Connexin-43 (Cx43) forms this junctional networking. Moreover, it correlates with the proliferation rate, and thus behavior, of gliomas. We assessed the expression of Cx43 and its relationship to Ki67 in other common central nervous system tumors.

Methods: The expression of Cx43 and Ki67 were assessed in formalin-fixed paraffin embedded samples of human brain metastases, meningiomas, and neurinomas using immunohistochemistry. Neurinomas and meningiomas were jointly evaluated due to similar non-malignant behavior.

Results: A total of 14 metastases of different extracerebral carcinomas, 6 meningiomas, and 10 neurinomas were evaluated. Five (36%) metastases and 5 (31%) meningiomas/neurinomas showed minor expression, whereas 6 (43%) metastases and 2 (13%) meningiomas/neurinomas showed no Cx43 expression at all. In 3 (21%) metastases and 9 (56%) meningiomas/neurinomas, moderate or strong expression of Cx43 was identified. The higher expression of Cx43 in meningiomas and neurinomas directly correlated with Ki67, r = 0.53 ( = 0.034). For metastases no significant correlation was found. Mitotic index in meningiomas/neurinomas correlated with Ki67 expression, r = 0.74 ( < 0.001), but did not show statistically significant correlation with Cx43 expression in these tumors.

Conclusions: The expression of Cx43 as a marker of cell-to-cell networking exposed a significant correlation with the Ki67-defined proliferation index in case of primary central nervous system neuroectodermal neoplasms. However, it does not seem to play a comparable role in metastases with extracerebral origin.

Download full-text PDF

Source
http://dx.doi.org/10.1177/03936155221143138DOI Listing

Publication Analysis

Top Keywords

expression cx43
16
central nervous
12
nervous system
12
meningiomas neurinomas
12
expression
8
correlated ki67
8
cx43
6
metastases
6
ki67
5
relationship connexin-43
4

Similar Publications

The therapeutic mechanisms of Shenwu Yizhi Capsule (SWYZC), a widely used treatment for vascular dementia (VD), remain unclear. This study integrated network pharmacology and experimental methods to elucidate the effects and mechanisms of SWYZC on cognitive function in VD rats. A VD model was established via bilateral common carotid artery occlusion (2-VO).

View Article and Find Full Text PDF

Skeletal patterning relies on a complex network of molecular and genetic regulators. However, our understanding of pathways governing joint placement and morphogenesis remains incomplete. Prior studies in have demonstrated that medially located Cx43 mediated gap junctional intercellular communication (GJIC) inhibits joint formation by the adjacent lateral skeletal precursor cells, and thereby determines skeletal patterning in the teleost regenerating fin.

View Article and Find Full Text PDF

Unlabelled: Ca signaling and its regulation are important for endothelial cell (EC) functions, including local blood flow control, mechanotransduction, and barrier function. Yet the spatiotemporal organization of Ca activity and its regulation across a vascular plexus is poorly understood in an mammalian context, largely due to technical barriers. To overcome this gap in knowledge, we developed an approach to resolve Ca activity with single cell resolution in the skin vasculature of live adult mice by multi-photon imaging.

View Article and Find Full Text PDF

Connexin 43 (Cx43) plays a crucial role in maintaining synchronous contraction in the heart. However, it remains unclear whether Cx43 directly influences the contractile force and synchrony of entire cardiac tissues. Previously, we successfully developed human-induced pluripotent stem cell (hiPSC)-derived cardiac tissues capable of directly measuring both the contractile force of the entire tissue and cellular synchrony within it.

View Article and Find Full Text PDF

Liver fibrosis is a major pathological process leading to cirrhosis and liver failure, posing a significant global health challenge. Rutaecarpine has potential benefits in liver disease and is an agonist of TRPV1. This study aimed to explore the potential mechanism by which rutaecarpine alleviates liver fibrosis.

View Article and Find Full Text PDF