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- Absolute Pig Telomere Length Quantification qPCR Assay Kit
Telomeres are repetitive nucleotide elements at the ends of chromosomes that protect chromosomes from degradation and genetic information loss. Normal diploid cells lose telomeres with each cell cycle. Telomere length, therefore, decreases over time and may predict lifespan. Telomere shortening has negative effects on health conditions and has been linked to many health issues including aging and cancer. Accurate and consistent quantification of telomere length is important in many aspects of cell biology such as chromosomal instability, DNA repair, senescence, apoptosis, cell dysfunctions, and oncogenesis.
ScienCell's Absolute Pig Telomere Length Quantification qPCR Assay Kit (APTLQ) is designed to directly measure the average telomere length of a pig cell population. The telomere primer set recognizes and amplifies telomere sequences. The single copy reference (SCR) primer set recognizes and amplifies a 100 bp-long region on pig chromosome 13, and serves as reference for data normalization. The reference genomic DNA sample with known telomere length serves as a reference for calculating the telomere length of target samples. The carefully designed primers ensure: (i) high efficiency for trustworthy quantification; and (ii) no non-specific amplification. Each primer set has been validated by qPCR with melt curve analysis and gel electrophoresis for amplification specificity and by template serial dilution for amplification efficiency.
Catalog No. | P8918 |
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Country of Manufacture | United States |
Product Code | APTLQ |
Size/Quantity | 100 reactions |
Product Use | APTLQ is for research use only. It is not approved for human or animal use, or for application in clinical or in vitro diagnostic procedures. |
Storage | Please refer to the product sheet |
Shipping Info | Dry ice |
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8.) Shirato K, Takanari J, Koda T, Sakurai T, Ogasawara J, Ohno H, Kizaki T. (2018) A standardized extract of Asparagus officinalis stem prevents reduction in heat shock protein 70 expression in ultraviolet-B-irradiated normal human dermal fibroblasts: an in vitro study. Environmental Health and Preventative Medicine. 23:40
ScienCell Research Laboratories (SRL) takes pride in being a resource for researchers all over the world. The publications listed here are not meant as an endorsement or confirmation of the reliability of the research methods. Our sole intention of sharing the research publications listed here is to provide research related insights and innovations of our products with other researchers.