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Effects of cadmium on the glial architecture in lizard brain
2956PDF: 776HTML: 364 -
Expression of nestin, parvalbumin and otoferlin during cochlear development in the mouse: an immunofluorescence study
484PDF: 366Supplementary: 27HTML: 7 -
Expression of S100β during mouse cochlear development
1297PDF: 317Supplementary: 46HTML: 6 -
PARP-1 protein expression in glioblastoma multiforme
3073PDF: 1208HTML: 1790 -
ECRG4 expression in normal rat tissues: expression study and literature review
2844PDF: 1129Supplementary: 362HTML: 1011 -
2D vs 3D morphological analysis of dorsal root ganglia in health and painful neuropathy
2819PDF: 1611Video 1: 224Video 2: 267HTML: 22 -
Forever particles: histochemistry in the plasticene age
794PDF: 415HTML: 38 -
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Senescence-associated ß-galactosidase staining over the lifespan differs in a short- and a long-lived fish species
2017PDF: 1040Supplementary: 98HTML: 91 -
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Combination of tolvaptan and valsartan improves cardiac and renal functions in doxorubicin-induced heart failure in mice
1479PDF: 814Supplementary: 105HTML: 31 -
5XFAD MOUSE MODEL: INVESTIGATING BRAIN IRON IMBALANCE AND MITOCHONDRIAL FEATURES’ ALTERATION Mezzanotte M1, Chicote J1, Scimia N1, Riganti C2, Porporato PE3 and Stanga S1 | 1Neuroscience Institute Cavalieri Ottolenghi, Department of Neuroscience Rita Levi Montalcini, University of Turin, Italy; 2Department of Oncology, Oncological Pharmacology Lab, University of Turin, Italy; 3Department of Molecular Biotechnology and Health Sciences, Molecular Biotechnology Center, University of Turin, Italy
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Is there still room for novelty, in histochemical papers?
2674PDF: 693HTML: 279 -
WT1 expression in the human fetus during development
2151PDF: 800HTML: 981 -
Excitatory Amino Acid Transporter 5 is widely expressed in peripheral tissues
2888PDF: 724Supplementary: 230HTML: 433 -
Management of autofluorescence in formaldehyde-fixed myocardium: choosing the right treatment
1742PDF: 903Supplementary: 115HTML: 25 -
CRAFTING THE MICROVASCULAR CANVAS: BIOENGINEERED MATERIALS OR NATIVE EXTRACELLULAR MATRIX FOR THE CENTRAL NERVOUS SYSTEM De Luca C1, Virtuoso A1, Cirillo G1, De Angelis F1, Guedán A2, Maduna T3, Morin A4, Sepulveda Diaz J4, Vlachos A3,5,6, Panetsos F7, Pérez-Rigueiro J8 and Papa M1,9 | 1Laboratory of Morphology of Neuronal Networks and Systems Biology, Department of Mental and Physical Health and Preventive Medicine, University of Campania Luigi Vanvitelli, Naples, Italy; 2Bioactive Surfaces S.L., Madrid, Spain; 3Department of Neuroanatomy, Institute of Anatomy and Cell Biology, Faculty of Medicine, University of Freiburg, Freiburg, Germany; 4Microfluidics Innovation Center, Paris, France; 5Center for Basics in Neuromodulation (NeuroModulBasics), Faculty of Medicine. University of Freiburg, Freiburg, Germany 6Center BrainLinks-BrainTools, University of Freiburg, Freiburg, Germany; 7Universidad Complutense de Madrid, Madrid, Spain 8Universidad Politécnica de Madrid, Spain; 9SYSBIO Centre of Systems Biology ISBE-IT, Milan, Italy
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