Product References
The mechanosensitive Piezo1 channels contribute to the arterial medial calcification.
Frontiers in physiology
Szabó L,Balogh N,Tóth A,Angyal Á,Gönczi M,Csiki DM,Tóth C,Balatoni I,Jeney V,Csernoch L,Dienes B
MA5-32876 was used in Western Blotting to demonstrate the pivotal role of Piezo1 channels in arterial medial calcification.
Tue Nov 29 00:00:00 UTC 2022
The mechanosensitive Piezo1 channels contribute to the arterial medial calcification.
Frontiers in physiology
Szabó L,Balogh N,Tóth A,Angyal Á,Gönczi M,Csiki DM,Tóth C,Balatoni I,Jeney V,Csernoch L,Dienes B
MA5-32876 was used in Western Blotting to demonstrate the pivotal role of Piezo1 channels in arterial medial calcification.
Tue Nov 29 00:00:00 UTC 2022
The mechanosensitive Piezo1 channels contribute to the arterial medial calcification.
Frontiers in physiology
Szabó L,Balogh N,Tóth A,Angyal Á,Gönczi M,Csiki DM,Tóth C,Balatoni I,Jeney V,Csernoch L,Dienes B
MA5-32876 was used in Western Blotting to demonstrate the pivotal role of Piezo1 channels in arterial medial calcification.
Tue Nov 29 00:00:00 UTC 2022
Microglial amyloid beta clearance is driven by PIEZO1 channels.
Journal of neuroinflammation
Jäntti H,Sitnikova V,Ishchenko Y,Shakirzyanova A,Giudice L,Ugidos IF,Gómez-Budia M,Korvenlaita N,Ohtonen S,Belaya I,Fazaludeen F,Mikhailov N,Gotkiewicz M,Ketola K,Lehtonen Š,Koistinaho J,Kanninen KM,Hernández D,Pébay A,Giugno R,Korhonen P,Giniatullin R,Malm T
MA5-32876 was used in Immunocytochemistry-immunofluorescence to indicate that the compromised function of microglia in AD could be improved by controlled activation of PIEZO1 channels resulting in alleviated Aβ burden.
Wed Jun 15 00:00:00 UTC 2022
Microglial amyloid beta clearance is driven by PIEZO1 channels.
Journal of neuroinflammation
Jäntti H,Sitnikova V,Ishchenko Y,Shakirzyanova A,Giudice L,Ugidos IF,Gómez-Budia M,Korvenlaita N,Ohtonen S,Belaya I,Fazaludeen F,Mikhailov N,Gotkiewicz M,Ketola K,Lehtonen Š,Koistinaho J,Kanninen KM,Hernández D,Pébay A,Giugno R,Korhonen P,Giniatullin R,Malm T
MA5-32876 was used in Immunocytochemistry-immunofluorescence to indicate that the compromised function of microglia in AD could be improved by controlled activation of PIEZO1 channels resulting in alleviated Aβ burden.
Wed Jun 15 00:00:00 UTC 2022
Microglial amyloid beta clearance is driven by PIEZO1 channels.
Journal of neuroinflammation
Jäntti H,Sitnikova V,Ishchenko Y,Shakirzyanova A,Giudice L,Ugidos IF,Gómez-Budia M,Korvenlaita N,Ohtonen S,Belaya I,Fazaludeen F,Mikhailov N,Gotkiewicz M,Ketola K,Lehtonen Š,Koistinaho J,Kanninen KM,Hernández D,Pébay A,Giugno R,Korhonen P,Giniatullin R,Malm T
MA5-32876 was used in Immunocytochemistry-immunofluorescence to indicate that the compromised function of microglia in AD could be improved by controlled activation of PIEZO1 channels resulting in alleviated Aβ burden.
Wed Jun 15 00:00:00 UTC 2022
Microglial amyloid beta clearance is driven by PIEZO1 channels.
Journal of neuroinflammation
Jäntti H,Sitnikova V,Ishchenko Y,Shakirzyanova A,Giudice L,Ugidos IF,Gómez-Budia M,Korvenlaita N,Ohtonen S,Belaya I,Fazaludeen F,Mikhailov N,Gotkiewicz M,Ketola K,Lehtonen Š,Koistinaho J,Kanninen KM,Hernández D,Pébay A,Giugno R,Korhonen P,Giniatullin R,Malm T
MA5-32876 was used in Immunocytochemistry-immunofluorescence to indicate that the compromised function of microglia in AD could be improved by controlled activation of PIEZO1 channels resulting in alleviated Aβ burden.
Wed Jun 15 00:00:00 UTC 2022
Functional Characterization of Mechanosensitive Piezo1 Channels in Trigeminal and Somatic Nerves in a Neuron-on-Chip Model.
International journal of molecular sciences
Mikhailov N,Plotnikova L,Singh P,Giniatullin R,Hämäläinen RH
MA5-32876 was used in Immunocytochemistry-immunofluorescence to assess the functional expression of Piezo1 receptors using a conventional live calcium imaging setup equipped with a multibarrel application system and utilizing a microfluidic chip-based setup.
Tue Jan 25 00:00:00 UTC 2022
Mechanosensitive piezo1 calcium channel activates connexin 43 hemichannels through PI3K signaling pathway in bone.
Cell & bioscience
Zeng Y,Riquelme MA,Hua R,Zhang J,Acosta FM,Gu S,Jiang JX
MA5-32876 was used in Western Blotting to demonstrate regulation of Cx43 HCs opening in osteocytes through PI3K-Akt pathway by Piezo1, upon induction of mechanical stress of bone.
Thu Dec 01 00:00:00 UTC 2022
Three-Dimensionally Printed Ti2448 With Low Stiffness Enhanced Angiogenesis and Osteogenesis by Regulating Macrophage Polarization via Piezo1/YAP Signaling Axis.
Frontiers in cell and developmental biology
Tang Z,Wei X,Li T,Wu H,Xiao X,Hao Y,Li S,Hou W,Shi L,Li X,Guo Z
Published figure using PIEZO1 monoclonal antibody (Product # MA5-32876) in Immunocytochemistry
Tue Dec 07 00:00:00 UTC 2021
Three-Dimensionally Printed Ti2448 With Low Stiffness Enhanced Angiogenesis and Osteogenesis by Regulating Macrophage Polarization via Piezo1/YAP Signaling Axis.
Frontiers in cell and developmental biology
Tang Z,Wei X,Li T,Wu H,Xiao X,Hao Y,Li S,Hou W,Shi L,Li X,Guo Z
Published figure using PIEZO1 monoclonal antibody (Product # MA5-32876) in Immunocytochemistry
Tue Dec 07 00:00:00 UTC 2021
Shear-stress sensing by PIEZO1 regulates tendon stiffness in rodents and influences jumping performance in humans.
Nature biomedical engineering
Passini FS,Jaeger PK,Saab AS,Hanlon S,Chittim NA,Arlt MJ,Ferrari KD,Haenni D,Caprara S,Bollhalder M,Niederöst B,Horvath AN,Götschi T,Ma S,Passini-Tall B,Fucentese SF,Blache U,Silván U,Weber B,Silbernagel KG,Snedeker JG
MA5-32876 was used in Western Blotting to investigate the role of PIEZO1 in the adaptation of tendon muscles during shear-stress.
Wed Dec 01 00:00:00 UTC 2021
Adaptable pulsatile flow generated from stem cell-derived cardiomyocytes using quantitative imaging-based signal transduction.
Lab on a chip
Qian T,Gil DA,Contreras Guzman E,Gastfriend BD,Tweed KE,Palecek SP,Skala MC
MA5-32876 was used in Immunocytochemistry to discover that ECs differentiated under a long QT syndrome derived pathological pulsatile flow exhibit abnormal EC monolayer organization.
Wed Oct 21 00:00:00 UTC 2020