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Garcia-Moreno, D.

Publications and source records attributed to Garcia-Moreno, D..

2 recordsLinked to original sources

SPINT1 regulates the aggressiveness of skin cutaneous melanoma and its crosstalk with tumor immune microenvironment

Skin cutaneous melanoma (SKCM) is the deadliest form of skin cancer and while incidence rates are declining for most cancers, they have been steadily rising for SKCM worldwide. Serine protease inhibitor, kunitz-type, 1 (SPINT1) is a type II transmembrane serine protease inhibitor that has been shown to be involved in the development of several types of cancer. We report here a high prevalence of SPINT1 genetic alterations in SKCM patients and their association with altered tumor immune microenvironment and poor patient survival. We used the unique advantages of the zebrafish to model the impact of SPINT1 deficiency in early transformation, progression and metastatic invasion of SKCM. Our results reveal that Spint1a deficiency facilitates oncogenic transformation, regulates the tumor/immune microenvironment crosstalk, accelerates the onset of SKCM and promotes metastatic invasion. Notably, Spint1a deficiency is required at both cell autonomous and nonautonomous levels to enhance invasiveness of SKCM. These results suggest the relevance of clinical intervention on this signaling pathway for precision SKCM medicine.\n\nSummary statementA zebrafish model shows that Spint1a deficiency facilitates oncogenic transformation, regulates the tumor/immune microenvironment crosstalk, accelerates the onset of SKCM, and promotes metastatic invasion in cell autonomous and non-autonomous manners.

cancer biology

Olfactory sensory neurons mediate ultra-rapid antiviral immune responses in teleosts in a TrkA-dependent manner

The nervous system is known to regulate host immune responses. However, the ability of neurons to detect danger and initiate immune responses at barrier tissues is unclear. Vertebrate olfactory sensory neurons (OSNs) are located in direct contact with the external environment and therefore directly exposed to pathogens. Here, we report that nasal delivery of rhadboviruses induced apoptosis in crypt OSNs in rainbow trout olfactory organ (OO) via the interaction of the OSN TrkA receptor with viral glycoprotein. This signal resulted in pro-inflammatory responses in the OO and dampened inflammation in the olfactory bulb (OB). CD8+ cells infiltrated the OO within minutes of nasal viral delivery and this response was abrogated when TrkA was blocked. Infiltrating CD8+ cells originated from the microvasculature surrounding the OB and not the periphery. Ablation of crypt neurons in zebrafish resulted in increased susceptibility to rhabdoviral challenge. Our results, therefore, indicate a novel function for OSNs as a first layer of pathogen detection in vertebrates.

immunology