Powermasher II
Procedures & Protocol
Research Articles
Generation of a polyclonal antibody against the CsPiezo and Western blot analysis
Cat. No. FNK-893002
Size 1 piece
NIH NSN# 664000N179130
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Supplier cat# |
Description |
HS Code |
Country Of Origin |
|
FNK-893002 |
POWERMASHER II |
382200 |
Japan |
Power Masher II
Spins 100 RPM and ONE SPEED setting
Pestle motor for BioMasher II, III, V, & SP
Disposable Homogenizer BioMasher
Disposable Homogenizer the "BioMasher" - The best way for homogenizing your samples -
This is a Pestle Motor for BioMasher II & III, V, & SP. It needs two (size) AA batteries (Accessories).
The Best Way for Homogenizing Your Samples
Disposable Homogenizer the "BioMasher"
The Best Way for Homogenizing Your Samples
BioMasher Series Comparison
Small to Large Size Tissues, Plants, Cell Pellets, Frozen Samples
- FAST TISSUE GRINDING to HOMOGENIZE
- DISPOSABLE & Premium Certified Plastics
- AUTOCLAVABLE & STERILIZED
- Multiple Types for various experimental designs
For more information about BioMasher products, please click "Go" button for BioMasher I - V and BioMasher SP
Appropriate Sample Type for BioMasher series
| Lab# | BioMasher I | BioMasher II | BioMasher III | BioMasher V | BioMasher SP |
|---|---|---|---|---|---|
| Soft Tissue | Excellent | Excellent | Excellent | Excellent | Excellent |
| Hard Tissue | Not good | Excellent | Excellent | Excellent | Excellent |
| Yeast | Not appropriate | Not appropriate | Not appropriate | Not appropriate | Not appropriate |
| Culture Cell | Not good | Not appropriate | Not good | Not good | Not appropriate |
| Product | Features | Procedure |
|---|---|---|
BioMasher - I![]() |
* Two types of pestle (with O-ring or without O-ring) are available. * For soft tissue samples: * For hard tissue samples: |
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BioMasher - II![]() |
* The combination of texture both pestle and inside of tube, homogenization efficiency is highly increased. * Centrifuge is not required. * Put samples into tube and insert pestle. Grinding samples by pestle by hand or motorized rotator named "Power Masher II". *Please see the handling video here |
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BioMasher - III![]() |
*Technology of BioMasher- I and II are combined. * Put samples into filter tube and insert pestle. Grinding samples by pestle by hand or motorized rotator named "Power Masher II". After that, centrifuge at 6,000 to 10,000 x g for 10 to 30 sec. *Please see the handling video from here. |
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BioMasher - V![]() |
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BioMasher - SP![]() |
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Power Masher II![]() |
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Reference
- Lu, S., Bland, D. M., Dahlstrom, E., Redekar, N., Guizzo, M. G., Barbian, K., ... & Ribeiro, J. M. (2025). An insight into the draft genome of the Oriental rat flea, Xenopsylla cheopis, together with its Wolbachia endosymbiont. BMC Genomics, 26(1), 621.
- Johnson, J. A. G., Liu, H., Höger, U., Rogers, S. M., Sivapalan, K., French, A. S., & Torkkeli, P. H. (2021). Mechanotransduction channel Piezo is widely expressed in the spider, Cupiennius salei, mechanosensory neurons and central nervous system. Scientific Reports, 11(1), 7994.
- Korcari, A., Muscat, S., McGinn, E., Buckley, M. R., & Loiselle, A. E. (2022). Depletion of Scleraxis-lineage cells during tendon healing transiently impairs multi-scale restoration of tendon structure during early healing. PLOS ONE, 17(10), e0274227.
- Ruiz-López, M. J., Cebrián-Camisón, S., Irisarri, I., Magallanes, S., Martínez-de la Puente, J., Figuerola, J., ... & Brown, T. (2026). ERGA-BGE Genomes of Culex laticinctus, Culex modestus, Culex perexiguus, and Culex theileri: Unveiling the Genomes of the Key Vectors of West Nile Virus in the Mediterranean Basin. Genome Biology and Evolution, 18(2), evaf245.
- Edgecombe, G. D., Crowley, L. M., Telfer, M. G., et al. (2025). The genome sequence of the club-tailed millipede, Cylindroiulus punctatus (Leach, 1816). Wellcome Open Research, 10, 256. https://doi.org/10.12688/wellcomeopenres.24251.1
- Crowley, L. M., Broad, G. R., McCulloch, J., et al. (2024). The genome sequence of an ichneumonid wasp, Pimpla contemplator (Muller, 1776). Wellcome Open Research, 9, 647. https://doi.org/10.12688/wellcomeopenres.23303.1
- Colom, R. L., O’Brien, M., et al. (2025). The genome sequence of the red fox, Vulpes vulpes (Linnaeus, 1758). Wellcome Open Research, 10, 13. https://doi.org/10.12688/wellcomeopenres.23516.1
- Yeh, S. I., Ho, T. C., Chu, T. W., Chen, S. L., Ou, R., & Tsao, Y. P. (2025). OBM1701 Alleviates Choroidal Neovascularization in Experimental Animals Via Suppressing the Expression of HIF-1α in Retinal Pigment Epithelial Cells. Translational Vision Science & Technology, 14(8), 21. https://doi.org/10.1167/tvst.14.8.21
- Pohjoismaki, J., Mutanen, M., Wright, C. J., et al. (2025). The genome sequence of the Poplar Admiral, Limenitis populi (Linnaeus, 1758) (Lepidoptera: Nymphalidae). Wellcome Open Research, 10, 438. https://doi.org/10.12688/wellcomeopenres.24725.2
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Oomen, R. A., Cariani, A., Chavarie, L., et al. (2025). The genome sequence of Atlantic Bluefin Tuna, Thunnus thynnus (Linnaeus, 1758). Wellcome Open Research, 10, 163. https://doi.org/10.12688/wellcomeopenres.23971.1
















































