Results 161 to 170 of about 19,768,754 (339)
The collection of twelve papers in this special issue address the broad issue of risk factors and aggression using a variety of theoretical perspectives, data sources, and methodologies, doing so in a cross-national context.
Piquero, Alex R., Piquero, AR
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A Special Issue in Honor of the 55th Birthday of Dumitru Baleanu
It is a Special Issue in the Honor of the 55th Birthday of Professor Dumitru Baleanu.
Fahd Jarad
doaj
IGFBP4 knockdown (KD) impairs preadipocyte proliferation and is associated with IGF1R protein downregulation and attenuated AKT phosphorylation. The mechanisms by which IGFBP4 KD influences the IGF1R/AKT signaling pathway involve newly synthesized proteins and lysosomal degradation pathways. Created in BioRender.
Yujia Guo +6 more
wiley +1 more source
ECLAC Notes Nº 53. Special Issue
Special Issue: 50th Anniversary of the Latin American and Caribbean Demographic Centre (CELADE) - ECLAC Population Division. A Region Where Fewer Children Are Born. Challenges and Opportunities of Moving Elsewhere. Opinion by ECLAC's Executive Secretary,
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Editorial. Letter of the Guest Editors to Readers
Editorial to the special issue "Recruitment, Education and Retention of Teachers: Issues and Challenges in the Eastern/Central Europe, the Caucasus, Central Asia and Mongolia".
Gita Steiner-Khamsi, Elena Lenskaya
doaj
The cytoskeleton‐mediated transport of mitochondria via tunnelling nanotubes restores respiration, increases ATP production, rescues cells from apoptosis, activates the AKT/mTOR signalling pathway, promotes cell migration and invasiveness, contributes to cancer progression and treatment resistance.
Stanislava Martínková, Jan Trnka
wiley +1 more source
Repair of neuronal DNA damage in Alzheimer's disease by KCL‐286. (A) Amyloid‐β oligomers and plaques impair neuronal DNA repair pathways, leading to DNA double‐strand breaks and glial activation. (B) KCL‐286 activates RARβ/RXR signalling via retinoic acid response elements (RAREs), associated with increased BRCA1 expression, enhanced DNA repair and ...
Natasha Hill +6 more
wiley +1 more source
Ionomycin suppresses cancer cell growth by disrupting mitochondrial transcription
In this study, we identify a new function for the selective Ca2+ ionophore, ionomycin, as an inhibitor of mitochondrial transcription. Both total and nascent RNA analyses revealed that ionomycin treatment reduces the transcription of mitochondrial genes.
Lishen Wang +10 more
wiley +1 more source

