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Zahra, F. T.

Publications and source records attributed to Zahra, F. T..

2 recordsLinked to original sources

Cholecystokinin input from the anterior cingulate cortex to the lateral periaqueductal gray mediates nocebo pain behavior in mice

The nocebo effect, the evil twin of the better-known placebo effect, in which anticipation of harm worsens pain and other symptoms, is increasingly thought to be responsible for poor clinical outcomes. In humans, nocebo hyperalgesia (i.e., increased pain sensitivity) is blocked by proglumide, a cholecystokinin (CCK) receptor antagonist. Yet, the neural circuitry underlying nocebo hyperalgesia remains unidentified, largely due to a lack of appropriate animal models. Independently, our two laboratories developed unique animal models of CCK-dependent nocebo hyperalgesia in which the expectation of pain was elicited by environmental or social cues. We find that both nocebo paradigms share a neural circuit involving CCK release from neurons projecting from the anterior cingulate cortex to the lateral periaqueductal gray. This previously unrecognized pathway could represent a promising target for therapeutic interventions in pain-related disorders. One-Sentence SummaryPain expectations, whether environmentally conditioned or socially transmitted, are mediated by a shared neural circuit involving cholecystokinin (CCK) projections from the anterior cingulate cortex (ACC) to the lateral periaqueductal gray (PAG).

neuroscience↗

Tumor-induced endothelial RhoA activation mediates tumor cell transendothelial migration and metastasis

Abstract/SummaryThe endothelial barrier plays an active role in transendothelial tumor cell migration during metastasis, however, the endothelial regulatory elements of this step remain obscure. Here we show that endothelial RhoA activation is a determining factor during this process. Breast tumor cell-induced endothelial RhoA activation is the combined outcome of paracrine IL-8-dependent and cell-to-cell contact {beta}1 integrin-mediated mechanisms, with elements of this pathway correlating with clinical data. Endothelial-specific RhoA blockade or in vivo deficiency inhibited the transendothelial migration and metastatic potential of human breast tumor and three murine syngeneic tumor cell lines, similar to the pharmacological blockade of the downstream RhoA pathway. These findings highlight endothelial RhoA as a potent, universal target in the tumor microenvironment for anti-metastatic treatment of solid tumors.

physiology↗