Author name: Kristen Hartman

Structural and functional defects of the respiratory neural system in the medulla and spinal cord of Pax6 mutant rats.

Ikeda K, Onimaru H, Inada H, Tien Lin S, Arata S, Osumi N (2019) Structural and functional defects of the respiratory neural system in the medulla and spinal cord of Pax6 mutant rats. Brain Res Bull 152:107-116. doi: 10.1016/j.brainresbull.2019.07.007 PMID: 31301380 Objective: To determine whether the respiratory center in the medulla functions normally in Pax6 […]

Structural and functional defects of the respiratory neural system in the medulla and spinal cord of Pax6 mutant rats. Read More »

Neuroprotective effects of exercise on the morphology of somatic motoneurons following the death of neighboring motoneurons.

Chew C, Sengelaub DR (2019) Neuroprotective effects of exercise on the morphology of somatic motoneurons following the death of neighboring motoneurons. Neurorehabil Neural Repair 33(8):656-667. doi: 10.1177/1545968319860485 Objective: To explore whether exercise shows the same neuroprotective effect on induced dendritic atrophy as that seen with androgen treatment. Summary: Exercise following neural injury exerts a protective

Neuroprotective effects of exercise on the morphology of somatic motoneurons following the death of neighboring motoneurons. Read More »

MALAT1 overexpression promotes the proliferation of human periodontal ligament stem cells by upregulating fibroblast growth factor 2.

Chen P, Huang Y, Wang Y, Li S, Chu H, Rong M (2019) MALAT1 overexpression promotes the proliferation of human periodontal ligament stem cells by upregulating fibroblast growth factor 2. Exp Ther Med 18(3):1627-1632. doi: 10.3892/etm.2019.7748 PMID: 31410118 Usage: western (1:1300) Related Products: Fibroblast Growth Factor Rabbit Polyclonal, mammalian (Cat. #AB-07)

MALAT1 overexpression promotes the proliferation of human periodontal ligament stem cells by upregulating fibroblast growth factor 2. Read More »

Upregulation of proBDNF in the mesenteric lymph nodes in septic mice.

Wang Z, Wu J-L, Zhong F, Liu Y, Yu Y-Q, Sun J-J, Wang S, Li H, Zhou X-F, Hu Z-L, Dai R-P (2019) Upregulation of proBDNF in the mesenteric lymph nodes in septic mice. Neurotox Res 36(3):540-550. doi: 10.1007/s12640-019-00081-3 PMID: 31278527 Objective: To characterize the expression pattern of proBDNF in mesenteric lymph nodes (MLNs) after

Upregulation of proBDNF in the mesenteric lymph nodes in septic mice. Read More »

3D reconstruction of the neurovascular unit reveals differential loss of cholinergic innervation in the cortex and hippocampus of the adult mouse brain.

Nizari S, Carare RO, Romero IA, Hawkes CA (2019) 3D reconstruction of the neurovascular unit reveals differential loss of cholinergic innervation in the cortex and hippocampus of the adult mouse brain. Front Aging Neurosci 11:172. doi: 10.3389/fnagi.2019.00172 Objective: To further characterize the effect of the loss of cholinergic innervation on the NVU (neurovascular unit) in

3D reconstruction of the neurovascular unit reveals differential loss of cholinergic innervation in the cortex and hippocampus of the adult mouse brain. Read More »

Nitric oxide donor molsidomine promotes retrieval of object recognition memory in a model of cognitive deficit induced by 192 IgG-saporin.

Hernández-Melesio MA, Alcaraz-Zubeldia M, Jiménez-Capdeville ME, Martínez-Lazcano JC, Santoyo-Pérez ME, Quevedo-Corona L, Gerónimo-Olvera C, Sánchez-Mendoza A, Ríos C, Pérez-Severiano F (2019) Nitric oxide donor molsidomine promotes retrieval of object recognition memory in a model of cognitive deficit induced by 192 IgG-saporin. Behav Brain Res 366:108-117. doi: 10.1016/j.bbr.2019.03.031 Objective: To analyze the potential of a NO

Nitric oxide donor molsidomine promotes retrieval of object recognition memory in a model of cognitive deficit induced by 192 IgG-saporin. Read More »

Targeting p75 LNGFr neurons

Latest research using 192-IgG-SAP to eliminate p75-positive neurons. Nitric Oxide Donor Molsidomine Promotes Retrieval of Object Recognition Memory in a Model of Cognitive Deficit Induced by 192 IgG-Saporin. (2019). Behav Brain Res, 366 108-117. Hernández-Melesio MA, Alcaraz-Zubeldia M, Jiménez-Capdeville ME, Martínez-Lazcano JC, Santoyo-Pérez ME, Quevedo-Corona L, Gerónimo-Olvera C, Sánchez-Mendoza A, Ríos C, & Pérez-Severiano F.

Targeting p75 LNGFr neurons Read More »

Disrupted compensatory response mediated by Wolfram syndrome 1 protein and corticotrophin-releasing hormone family peptides in early-onset intrahepatic cholestasis pregnancy

Xu T, Zhou Z, Liu N, Deng C, Huang G, Zhou F, Liu X, Wang X (2019) Disrupted compensatory response mediated by Wolfram syndrome 1 protein and corticotrophin-releasing hormone family peptides in early-onset intrahepatic cholestasis pregnancy. Placenta 83:63-71. doi: 10.1016/j.placenta.2019.06.378 PMID: 31477210 Usage: Western (1:1000) Related Products: Corticotropin Releasing Hormone Rabbit Polyclonal (Cat. #AB-02)

Disrupted compensatory response mediated by Wolfram syndrome 1 protein and corticotrophin-releasing hormone family peptides in early-onset intrahepatic cholestasis pregnancy Read More »

Targeting Stem Cells

Stem cell research has great potential to understand, treat and cure diseases.  By watching stem cells mature into cells in bones, heart muscle, nerves, and other organs and tissue, researchers can determine how diseases and conditions develop.  Here are some recent publications that use ATS products to advance research involving stem cells. Figure Legend.  Non-genotoxic conditioning for hematopoietic stem cell transplantation

Targeting Stem Cells Read More »

Targeting Glioblastoma

Glioblastoma, or glioblastoma multiforme (GBM), is a rare disease, with a global incidence of <10 per 100,000 people; the prognosis is very poor.  Here are a couple of recent studies testing targeted saporin therapies. Integrin α10, a Novel Therapeutic Target in Glioblastoma, Regulates Cell Migration, Proliferation, and Survival. Munksgaard Thorén M, Chmielarska Masoumi K, Krona C,

Targeting Glioblastoma Read More »

Shopping Cart
Scroll to Top