Cellular epigenetic changes

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release : 2023-06-26

Linda Partridge, the founding director of Max Planck Institute of Aging, Germany, and other five authoritative scientists updated and improved the Cellular senescence logo based on the aging research in the past 10 years, and published an authoritative review of "12 aging logos" on the top scientific journal Cell, providing theoretical support for anti-aging product research and development for K2LT'S!

The field of aging research has identified 12 markers that represent common characteristics of aging in different organisms. Identification of epigenetic changes: cellular epigenetic changes

Epigenetics is a science that studies how behavior, environment and phenotype change gene activity and expression. Unlike genetic variations, epigenetic modifications are usually reversible and do not alter DNA sequence. Epigenetics specifically refers to the absence of changes in the DnA sequence, while genetic expression undergoes heritable changes.



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We worked with key Opinion leader and customers to build a comprehensive product line based on their suggestions, helping researchers get the best results in the latest epigenetic technologies (such as ChiIP seq, ChiIC/CUT&RUN seq and CUT&Tag seq). Our goal is to empower all scientists in this field, whether they are conducting basic Epigenetics research or Epigenetics research in the context of tumors and other diseases.

The completion of the Human Genome Project and the progress of the new generation sequencing technology reveal that genomic DNA has much less control over biological processes and disease states than initially thought. Epigenetic factors actually determine how DNA is translated, the strict regulation of DNA structure, and thus control which genes are expressed at what time. Multiple epigenetic factors work together to coordinate the basic cellular processes from developmental processes to cell death pathways. Any dysfunction of these factors will disrupt the regulation of the genome, lead to errors in cell processes, and lead to cancer, autoimmune disorders, Nervous system disease, infertility and other diseases.



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Explanation again: Epigenetics refers to the genetic sequence of DNA that remains unchanged, but gene expression undergoes heritable changes. This change is the change of other Genetic material in the cell except for genetic information, and this change can be stably transmitted during development and cell proliferation.

For example, a genome sequence is like a cake, which determines its existence as a cake, and various epigenetic phenomena are like decorations on a cake or fruits embedded in it. More and more studies have shown that this more refined modification is quite important, and incorrect epigenetic modifications may lead to the occurrence of diseases and even death. If moldy fruits are used to frame a cake, the cake will also suffer.

Through research, it has been found that dietary and lifestyle habits have a significant impact on genes; Moreover, the changed parts are more likely to be passed on to the next generation during future fertility, and even the dietary and lifestyle habits of the eighth generation of ancestors may affect the genes of future generations. For example, the traditional Eastern food soybean contains methyl elements, which can also lead to obesity due to epigenetic inheritance of the ingredients to the next generation.



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In order to understand all aspects of biology or disease, it is necessary to study the possible epigenetic factors that may play a role. K2 Changshou Technology has produced cell epigenetic change capsules, where epigenetic changes are modifiable and can affect gene expression. Over time, the Epigenome becomes dysfunctional, leading to genes that should be turned off being turned on, and vice versa.

Epigenetic modification depends on non genetic changes in chromosome structure, DNA Decorator pattern or RNA transcription level. These cells can be used to correct genetic diseases, or repair and regenerate tissue and organ damage caused by trauma or disease. Cellular epigenetic change capsules can prevent changes in cellular genetic appearance.

Product efficacy:

Preventing changes in cellular genetic appearance*

Intercellular communication through soluble factors*

Stable DNA sequence changes*

Although the genome acquired by each person is unchangeable, the Epigenome is different. Epigenetic modification can enable individuals to quickly adapt to environmental changes without the need to alter their genomes.

The 12 major anti-aging signs of K2 longevity technology: change of intercellular communication, Cellular senescence, runaway nutrition induction, loss of protein homeostasis, prohibition of megaautophagy, ecological imbalance, epigenetic changes, genomic instability, mitochondrial dysfunction, stem cell failure, telomere depletion, chronic inflammation; Apply cutting-edge life technology to provide consumers with safe and efficient pure natural, anti-cell aging high-tech products. Intelligent combination+technological formula, significantly improving human lifespan.

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