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Nombre del producto
Anti-Mn-SOD Antibody, Upstate®, from rabbit
biological source
rabbit
conjugate
unconjugated
antibody form
purified immunoglobulin
antibody product type
primary antibodies
clone
polyclonal
species reactivity
mouse, bovine, human, rat
should not react with
canine
packaging
antibody small pack of 25 μg
manufacturer/tradename
Upstate®
technique(s)
immunohistochemistry (formalin-fixed, paraffin-embedded sections): suitable
western blot: suitable
isotype
IgG
NCBI accession no.
UniProt accession no.
shipped in
ambient
target post-translational modification
unmodified
Quality Level
Gene Information
human ... SOD2(6648)
Categorías relacionadas
1 of 4
Este artículo | S5069 | 07-403-I | S5569 |
|---|---|---|---|
| species reactivity mouse, bovine, human, rat | species reactivity rat, human | species reactivity human, mouse, rat | species reactivity rat, human |
| biological source rabbit | biological source rabbit | biological source rabbit | biological source rabbit |
| antibody form purified immunoglobulin | antibody form affinity isolated antibody | antibody form affinity isolated antibody | antibody form IgG fraction of antiserum |
| clone polyclonal | clone polyclonal | clone polyclonal | clone polyclonal |
| UniProt accession no. | UniProt accession no. | UniProt accession no. | UniProt accession no. |
| Gene Information human ... SOD2(6648) | Gene Information human ... SOD2(6648) | Gene Information human ... SOD1(6647) | Gene Information human ... SOD2(6648) |
Analysis Note
L6 cell lysate, rat brain tissue extract.
Western Blot Analysis:
0.5-2 μg/mL of this antibody detected MnSOD in RIPA lysates of rat L6 RIPA cells. 1-4 μg/mL of a previous lot detected MnSOD in RIPA lysates of human MCF-7, A431 and rat L6 RIPA cells.
Application
10 μg/mL of a previous lot detected MnSOD in paraffin embedded rat brain tissue sections.
Biochem/physiol Actions
General description
Immunogen
Other Notes
Physical form
Legal Information
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Contenido relacionado
"Redox reactions are powerful chemical processes that involve the reduction and oxidation of proteins and metabolites found in living things. The mechanisms that regulate them are key to maintaining homeostasis and the balance between good health and disease pathology. Oxidative stress is the state where the delicate balance of redox biology is upset, and the pathology of oxidative stress are the cellular consequences to such an imbalance."
"Aging: getting older, exhibiting the signs of age, the decline in the physical (and mental) well-being over time, leading to death. Since the beginning of time, man has been obsessed with trying to slow down, stop, or even reverse the signs of aging. Many have gone as far as experimenting with nutritional regimens, eccentric exercises, fantastic rituals, and naturally occurring or synthetic wonder-elements to evade the signs of normal aging. Biologically speaking, what is aging? And what does the latest research tell us about the possibility of discovering the elusive “fountain of youth”? Many advances in our understanding of aging have come from systematic scientific research, and perhaps it holds the key to immortality. Scientifically, aging can be defined as a systems-wide decline in organismal function that occurs over time. This decline occurs as a result of numerous events in the organism, and these events can be classified into nine “hallmarks” of aging, as proposed by López-Otin et al. (2013). Several of the pathologies associated with aging are a direct result of these events going to extremes and may also involve aberrant activation of proliferation signals or hyperactivity. The hallmarks of aging have been defined based on their fulfillment of specific aging related criteria, such as manifestation during normal aging, acceleration of aging if experimentally induced or aggravated, and retardation of aging if prevented or blocked, resulting in increased lifespan. The nine hallmarks of aging are genomic instability, telomere attrition, epigenetic alterations, loss of proteostasis, deregulated nutrient sensing, mitochondrial dysfunction, cellular senescence, stem cell exhaustion, and altered intercellular communication. The biological processes underlying aging are complex. By understanding the hallmarks in greater detail, we can get closer to developing intervention strategies that can make the aging process less of a decline, and more of a recline."
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