Scientific Focus: Understanding Polynucleotides: How DNA Fragments Regenerate Skin and Hair
n the ever-evolving world of aesthetic medicine, a deep understanding of the science behind new treatments is essential. At Mesglo Aesthetic Clinic in Marylebone, we believe in empowering our clients with knowledge. This article delves into the fascinating science of polynucleotides, exploring how these remarkable DNA fragments work to regenerate skin and hair at a cellular level.

The Molecular Basis of Polynucleotide Therapy

Polynucleotides are chains of nucleotides, the fundamental building blocks of DNA and RNA. In aesthetic medicine, we use highly purified polynucleotides derived from salmon DNA, which have a remarkable similarity to human DNA. This biocompatibility makes them a safe and effective tool for stimulating cellular regeneration.

ComponentFunction in Polynucleotide TherapyNucleotidesProvide the essential building blocks for DNA repair and synthesis.Phosphate GroupsEnhance cellular metabolism and energy transfer.Deoxyribose SugarsForm the structural backbone of the DNA fragments.Nitrogenous BasesFacilitate the precise pairing required for DNA replication and repair.

When introduced into the skin or scalp, these polynucleotides act as a signal for cellular regeneration, triggering a cascade of biological processes that lead to healthier, more youthful tissues. To explore our polynucleotide treatments, visit our Polynucleotide Face Treatment and Polynucleotide Hair Treatment pages.

Mechanisms of Action: A Deeper Dive

The regenerative power of polynucleotides stems from their ability to interact with our cells in two key ways: through the A2 receptor stimulation pathway and the salvage pathway. These intricate mechanisms work in synergy to promote tissue repair, reduce inflammation, and stimulate the production of essential proteins.

The A2 Receptor Stimulation Pathway: Igniting Angiogenesis

The A2A receptor, part of the adenosine receptor family, plays a crucial role in regulating inflammation and blood flow. https://mesglolondon.co.uk/?p=4311

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