Localization of Janusin mRNA in the Central Nervous System of the Developing and Adult Mouse

1993 ◽  
Vol 5 (4) ◽  
pp. 299-310 ◽  
Author(s):  
Eva Sabine Wintergerst ◽  
Babette Fuss ◽  
Udo Bartsch
1988 ◽  
Vol 5 (4) ◽  
pp. 273-298 ◽  
Author(s):  
Miyuki Yamamoto ◽  
Patricia Marshall ◽  
Lisa M. Hemmendinger ◽  
Anne B. Boyer ◽  
Verne S. Caviness

1999 ◽  
Vol 63 (2) ◽  
pp. 351-365 ◽  
Author(s):  
Sandrine Dabernat ◽  
Monique Larou ◽  
Karine Massé ◽  
Tomas Hökfelt ◽  
Guy Mayer ◽  
...  

eLife ◽  
2020 ◽  
Vol 9 ◽  
Author(s):  
Lihong Zhan ◽  
Li Fan ◽  
Lay Kodama ◽  
Peter Dongmin Sohn ◽  
Man Ying Wong ◽  
...  

Microglia are the resident myeloid cells in the central nervous system (CNS). The majority of microglia rely on CSF1R signaling for survival. However, a small subset of microglia in mouse brains can survive without CSF1R signaling and reestablish the microglial homeostatic population after CSF1R signaling returns. Using single-cell transcriptomic analysis, we characterized the heterogeneous microglial populations under CSF1R inhibition, including microglia with reduced homeostatic markers and elevated markers of inflammatory chemokines and proliferation. Importantly, MAC2/Lgals3 was upregulated under CSF1R inhibition, and shared striking similarities with microglial progenitors in the yolk sac and immature microglia in early embryos. Lineage-tracing studies revealed that these MAC2+ cells were of microglial origin. MAC2+ microglia were also present in non-treated adult mouse brains and exhibited immature transcriptomic signatures indistinguishable from those that survived CSF1R inhibition, supporting the notion that MAC2+ progenitor-like cells are present among adult microglia.


2021 ◽  
Vol 15 ◽  
Author(s):  
Ilaria Balbo ◽  
Francesca Montarolo ◽  
Enrica Boda ◽  
Filippo Tempia ◽  
Eriola Hoxha

ELOVL5 (Elongase of Very-Long Fatty Acid 5) gene encodes for an enzyme that elongates long chain fatty acids, with a marked preference for polyunsaturated molecules. In particular, it plays an essential role in the elongation of omega-3 and omega-6 fatty acids, precursors for long-chain polyunsaturated fatty acids (PUFAs). Mutations of ELOVL5 cause the spino-cerebellar ataxia type 38 (SCA38), a rare autosomal neurological disease characterized by gait abnormality, dysarthria, dysphagia, hyposmia and peripheral neuropathy, conditions well represented by a mouse model with a targeted deletion of this gene (Elovl5–/– mice). However, the expression pattern of this enzyme in neuronal and glial cells of the central nervous system (CNS) is still uninvestigated. This work is aimed at filling this gap of knowledge by taking advantage of an Elovl5-reporter mouse line and immunofluorescence analyses on adult mouse CNS sections and glial cell primary cultures. Notably, Elovl5 appears expressed in a region- and cell type-specific manner. Abundant Elovl5-positive cells were found in the cerebellum, brainstem, and primary and accessory olfactory regions, where mitral cells show the most prominent expression. Hippocampal pyramidal cells of CA2/CA3 where also moderately labeled, while in the rest of the telencephalon Elovl5 expression was high in regions related to motor control. Analysis of primary glial cell cultures revealed Elovl5 expression in oligodendroglial cells at various maturation steps and in microglia, while astrocytes showed a heterogeneous in vivo expression of Elovl5. The elucidation of Elovl5 CNS distribution provides relevant information to understand the physiological functions of this enzyme and its PUFA products, whose unbalance is known to be involved in many pathological conditions.


2019 ◽  
Author(s):  
Lihong Zhan ◽  
Peter Dongmin Sohn ◽  
Yungui Zhou ◽  
Yaqiao Li ◽  
Li Gan

ABSTRACTMicroglia are the resident myeloid cells in the central nervous system (CNS). The majority of microglial population relies on Csf1r signaling for survival and maintenance. However, a small subset of microglia in the murine brain can survive without Csf1r signaling, and reestablishes homeostasis after Csf1r signaling returns. Using single-cell RNA-seq, we characterized the heterogeneous microglial populations under Csf1r inhibition, including microglia lacking homeostatic markers and populations with elevated markers of monocytes, granulocytes and dendritic cells. Importantly, Mac2 is distinctively expressed in a subset of Csf1r-independent microglia cells, which were highly proliferative and shared striking similarities with those of microglial progenitors in yolk sac and early embryos. Lineage-tracing revealed that the Mac2+ population is of microglial origin and does not come from periphery monocytes. In non-treated mouse brains, Mac2+ microglia exhibited progenitor transcriptomic signature indistinguishable from those survived csf1r inhibition, supporting Mac2+ progenitor-like cells are present among homeostatic microglia.


Author(s):  
Gladys Harrison

With the advent of the space age and the need to determine the requirements for a space cabin atmosphere, oxygen effects came into increased importance, even though these effects have been the subject of continuous research for many years. In fact, Priestly initiated oxygen research when in 1775 he published his results of isolating oxygen and described the effects of breathing it on himself and two mice, the only creatures to have had the “privilege” of breathing this “pure air”.Early studies had demonstrated the central nervous system effects at pressures above one atmosphere. Light microscopy revealed extensive damage to the lungs at one atmosphere. These changes which included perivascular and peribronchial edema, focal hemorrhage, rupture of the alveolar septa, and widespread edema, resulted in death of the animal in less than one week. The severity of the symptoms differed between species and was age dependent, with young animals being more resistant.


Author(s):  
John L.Beggs ◽  
John D. Waggener ◽  
Wanda Miller ◽  
Jane Watkins

Studies using mesenteric and ear chamber preparations have shown that interendothelial junctions provide the route for neutrophil emigration during inflammation. The term emigration refers to the passage of white blood cells across the endothelium from the vascular lumen. Although the precise pathway of transendo- thelial emigration in the central nervous system (CNS) has not been resolved, the presence of different physiological and morphological (tight junctions) properties of CNS endothelium may dictate alternate emigration pathways.To study neutrophil emigration in the CNS, we induced meningitis in guinea pigs by intracisternal injection of E. coli bacteria.In this model, leptomeningeal inflammation is well developed by 3 hr. After 3 1/2 hr, animals were sacrificed by arterial perfusion with 3% phosphate buffered glutaraldehyde. Tissues from brain and spinal cord were post-fixed in 1% osmium tetroxide, dehydrated in alcohols and propylene oxide, and embedded in Epon. Thin serial sections were cut with diamond knives and examined in a Philips 300 electron microscope.


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