Product References
Fingolimod protects against neurovascular unit injury in a rat model of focal cerebral ischemia/reperfusion injury.
Neural regeneration research
Zhu XY,Ma TT,Li Y,Zhang MQ,Zhao L,Liang J,Min LQ
PA5-99415 was used in Immunohistochemistry to indicate that FTY-720 has promise as a new therapy for neurovascular protection and functional recovery after ischemic stroke.
Sat Apr 01 00:00:00 UTC 2023
Fingolimod protects against neurovascular unit injury in a rat model of focal cerebral ischemia/reperfusion injury.
Neural regeneration research
Zhu XY,Ma TT,Li Y,Zhang MQ,Zhao L,Liang J,Min LQ
PA5-99415 was used in Immunohistochemistry to indicate that FTY-720 has promise as a new therapy for neurovascular protection and functional recovery after ischemic stroke.
Sat Apr 01 00:00:00 UTC 2023
Fingolimod protects against neurovascular unit injury in a rat model of focal cerebral ischemia/reperfusion injury.
Neural regeneration research
Zhu XY,Ma TT,Li Y,Zhang MQ,Zhao L,Liang J,Min LQ
PA5-99415 was used in Immunohistochemistry to indicate that FTY-720 has promise as a new therapy for neurovascular protection and functional recovery after ischemic stroke.
Sat Apr 01 00:00:00 UTC 2023
Blood-Brain Barrier Rescue by Roflumilast After Transient Global Cerebral Ischemia in Rats.
Neurotoxicity research
Bonato JM,de Mattos BA,Oliveira DV,Milani H,Prickaerts J,de Oliveira RMW
PA5-99415 was used in Immunohistochemistry to investigate whether roflumilast confers BBB neuroprotection in the hippocampus after transient global cerebral ischemia (TGCI) in rats.
Tue Aug 01 00:00:00 UTC 2023
Cholesterol crystal formation is a unifying pathogenic mechanism in the development of diabetic retinopathy.
Diabetologia
Hammer SS,Dorweiler TF,McFarland D,Adu-Agyeiwaah Y,Mast N,El-Darzi N,Fortmann SD,Nooti S,Agrawal DK,Pikuleva IA,Abela GS,Grant MB,Busik JV
PA5-99415 was used in Immunocytochemistry to establish that cholesterol accumulation and CC formation are a unifying pathogenic mechanism in the development of diabetic retinopathy.
Fri Sep 01 00:00:00 UTC 2023
Inhibiting PI3K/Akt-Signaling Pathway Improves Neurobehavior Changes in Anti-NMDAR Encephalitis Mice by Ameliorating Blood-Brain Barrier Disruption and Neuronal Damage.
Cellular and molecular neurobiology
Gong Z,Lao D,Wu Y,Li T,Lv S,Mo X,Huang W
PA5-99415 was used in Immunohistochemistry and Western Blotting to show that the activation of PI3K/Akt, along with the changes in TJ-related proteins ZO-1 and Claudin-5, may be closely related to BBB damage and neurobehavior changes in anti-NMDAR encephalitis mice.
Sun Oct 01 00:00:00 UTC 2023
Inhibiting PI3K/Akt-Signaling Pathway Improves Neurobehavior Changes in Anti-NMDAR Encephalitis Mice by Ameliorating Blood-Brain Barrier Disruption and Neuronal Damage.
Cellular and molecular neurobiology
Gong Z,Lao D,Wu Y,Li T,Lv S,Mo X,Huang W
PA5-99415 was used in Immunohistochemistry and Western Blotting to show that the activation of PI3K/Akt, along with the changes in TJ-related proteins ZO-1 and Claudin-5, may be closely related to BBB damage and neurobehavior changes in anti-NMDAR encephalitis mice.
Sun Oct 01 00:00:00 UTC 2023