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Biology subjects

Zahedi, S.

Publications and source records attributed to Zahedi, S..

3 recordsLinked to original sources

High Incidence of Estrous Cycle Irregularities in Heterogeneous Stock (HS) Rats is Associated with Severe Cocaine Addiction-like Behaviors

Hormonal fluctuations throughout the estrous cycle have been hypothesized to influence drug-related behaviors. Preclinical models show that some cocaine-related behaviors are influenced by the estrous cycle. However, the extent to which the estrous cycle modulates cocaine self-administration in outbred heterogeneous stock (HS) rats, a population that captures human genetic diversity, is unknown. This study aimed to examine the relationship between estrous phases and cocaine self-administration behavior in HS rats using a model of extended access to cocaine self-administration. We focused on the escalation of intake, breaking point, and resistance to foot shock. Using vaginal swabbing and lavage techniques, we first characterized the relationship between estrous phase and cocaine intake. We then comprehensively evaluated estrous cycling patterns in young adult and adult HS rats, comparing them with Wistar rats. Contrary to our hypothesis, estrous phase showed no association with cocaine self-administration in HS rats. HS rats exhibited irregular estrous cycling with variability to the phase length, even in the absence of drug exposure, a phenomenon not observed in the Wistar strain. Irregular estrous cycle was associated with high cocaine-related behaviors. This study provides the first evidence that some female HS rats exhibit irregular estrous cycling. Moreover, rats with severe addiction-like behaviors had more instances of irregular cycling. These results demonstrate that, in HS rats, the estrous phase per se has no major influence on cocaine self-administration, but that the severity of addiction-like behaviors are associated with more irregularity of the estrus cycle. As HS rats gain popularity in behavioral and genome-wide studies, understanding these cycle disruptions is crucial as they may reveal genetic links into female vulnerability to drugs.

neuroscience↗

The assessment of therapeutic autophagy inhibition in NF1 mutated tumor cells

MAPK pathway activation is found across central nervous system tumors. Neurofibromin 1 (NF1) protein is a GTPase-activating protein and tumor suppressor that negatively regulates RAS protein activity. A NF1 loss of function mutation results in MAPK pathway upregulation and is associated with pediatric gliomas. We previously demonstrated autophagy inhibition improves tumor response to BRAF inhibition. Here we investigate the role of autophagy in NF1 cells in the presence or absence of MEK inhibition (MEKi). NF1 wild type (WT) and NF1 knockout (KO) (HSC1{lambda}, immortalized human Schwann) cells were evaluated. NF1 loss was confirmed, and cell growth was monitored by Incucyte. MAPK/ERK pathway upregulation and autophagy were evaluated via Western blot analysis and RAS pull-down. Effects of MEKi, autophagy inhibition (pharmacologic and genetic), and combination therapy were evaluated via short- and long-term growth assays. NF1 KO cells exhibited MAPK pathway upregulation and increased growth. Additionally, NF KO cells demonstrated increased autophagic activity. Loss of NF1 resulted in increased sensitivity to MEKi and autophagy inhibition alone and in combination. We also demonstrate that the autophagy inhibitor chloroquine (CQ) can improve MEKi sensitivity in a patient harboring a somatic mutation of NF1. This combination is currently being evaluated in clinical trial (NCT04201457).

cancer biology↗

Multi-pronged analysis of pediatric low-grade glioma reveals a unique tumor microenvironment associated with BRAF alterations

Pediatric low-grade gliomas (pLGG) comprise 35% of all brain tumors. Despite favorable survival, patients experience significant morbidity from disease and treatments. A deeper understanding of pLGG biology is essential to identify novel, more effective, and less toxic therapies. We utilized single cell RNA sequencing (scRNA-seq), spatial transcriptomics, and cytokine analyses to characterize and understand tumor and immune cell heterogeneity across pLGG. scRNA-seq revealed tumor and immune cells within the tumor microenvironment (TME). Tumor cell subsets revealed a developmental hierarchy with progenitor and mature cell populations. Immune cells included myeloid and lymphocytic cells. There was a significant difference between the prevalence of two major myeloid subclusters between pilocytic astrocytoma (PA) and ganglioglioma (GG). Bulk and single-cell cytokine analyses evaluated the immune cell signaling cascade with distinct immune phenotypes among tumor samples. KIAA1549-BRAF tumors appeared more immunogenic, secreting higher levels of immune cell activators and chemokines, compared to BRAF V600E tumors. Spatial transcriptomics revealed the differential gene expression of these chemokines and their location within the TME. A multi-pronged analysis of pLGG demonstrated the complexity of the pLGG TME and differences between genetic drivers that may influence their response to immunotherapy. Further investigation of immune cell infiltration and tumor-immune interactions is warranted. Key pointsO_LIThere is a developmental hierarchy in neoplastic population comprising of both progenitor-like and mature cell types in both PA and GG. C_LIO_LIA more immunogenic, immune activating myeloid population is present in PA compared to GG. C_LIO_LIFunctional analysis and spatial transcriptomics show higher levels of immune mobilizing chemokines in KIAA1549-BRAF fusion PA tumor samples compared to BRAF V600E GG samples. C_LI Importance of the StudyWhile scRNA seq provides information on cellular heterogeneity within the tumor microenvironment (TME), it does not provide a complete picture of how these cells are interacting or where they are located. To expand on this, we used a three-pronged approach to better understand the biology of pediatric low-grade glioma (pLGG). By analyzing scRNA-seq, secreted cytokines and spatial orientation of cells within the TME, we strove to gain a more complete picture of the complex interplay between tumor and immune cells within pLGG. Our data revealed a complex heterogeneity in tumor and immune populations and identified an interesting difference in the immune phenotype among different subtypes.

cancer biology↗