Peptides are one of the most frequently mentioned active ingredients today in skincare for mature and demanding skin — alongside retinol and hyaluronic acid. In this guide, we explain what peptides are, how they work on the skin, what types exist, and how the different categories differ — from classic signal peptides, through copper peptides, to bioactive marine peptides, the foundation of Larens' proprietary Biopeptide Complex technology.
Peptides are short chains of amino acids linked by peptide bonds — put simply, they're "fragments" of larger proteins such as collagen or elastin. In the body they perform signalling and structural functions: they tell cells what processes to trigger, or they serve directly as tissue building blocks.
In cosmetology, peptides are used mainly for their ability to:
It's worth distinguishing peptides right away from related but different ingredients: amino acids are the single "building blocks" that make up peptides and proteins, collagen and hydrolysed collagen are much longer chains (proteins or their fragments), and peptides sit somewhere in between — short enough to penetrate into the epidermis, yet complex enough to carry a specific biological signal.
The mechanism of action depends on the type of peptide, but most work at the level of cellular signalling rather than — as with, say, hyaluronic acid — at the level of hydration or plumping. In simplified terms:
This is why peptides are sometimes called "biomimetics" — they imitate the natural signals the body sends to itself in response to skin damage, without actually damaging the tissue.
It's worth stressing: the effectiveness of a given peptide depends on its structure, concentration, form of application (spray, serum, cream), and stability within the specific cosmetic formula. That's why, when evaluating a product, looking at the full INCI list and stated concentrations matters more than the marketing name of the ingredient.
Cosmetics use several main peptide categories, differing in structure and mechanism of action.
The most classic group — their job is to "instruct" fibroblasts to increase collagen and elastin production. This group includes Matrixyl (Palmitoyl Pentapeptide-4 / Palmitoyl Tripeptide-1). Full article →
Peptides bound to copper ions (the best known is GHK-Cu). Copper acts as a cofactor in many of the skin's enzymatic processes, including collagen synthesis. Full article →
Peptides that act similarly to neurotransmitters, limiting excessive facial muscle tension. An example is Acetyl Hexapeptide-8 (Argireline). Full article →
Designed to structurally and functionally imitate the skin's natural biological signals. A broad category covering some signal peptides and neuropeptides. Full article →
Peptides obtained from fish collagen hydrolysates, distinguished by their natural origin. This is the category behind Biopeptide Complex technology. Full article →
Peptides and collagen are closely related, but they're not the same thing. Collagen is a long-chain structural protein that builds skin, tendons and cartilage. Collagen peptides form through hydrolysis (breakdown) of collagen into shorter fragments — which is why they penetrate the epidermal barrier more easily and can act as a biological signal rather than merely as a building material.
In practice, this means a cosmetic containing "collagen peptides" doesn't deliver ready-made collagen to the skin in the form it exists in tissue — it delivers a signal intended to prompt the skin's own fibroblasts to increase collagen production.
Similarly to collagen, some peptides (elastin peptides / peptides supporting elastogenesis) are meant to support the production of elastin — the protein responsible for skin's elasticity and resilience. Elastin regenerates much more slowly than collagen, which is why ingredients supporting its synthesis are especially important in the care of mature skin losing firmness.
Peptides and retinol are two different anti-ageing mechanisms that can be seen as complementary rather than competing:
| Feature | Peptides | Retinol |
|---|---|---|
| Mechanism | cellular signalling, fibroblast stimulation | accelerated epidermal renewal, regulation of gene expression |
| Speed of results | usually slower, but gradual | usually a faster visible change in skin texture |
| Irritation risk | generally low | higher, especially at the start |
| Used together | yes, common practice | yes, often in the same routine (morning/evening or alternating) |
There's no single answer to "which is better" — the choice depends on skin condition, tolerance, and skincare goals. A well-designed routine often combines both types of ingredients.
Hyaluronic acid works primarily at the level of hydration — it binds water in the epidermis, giving a plumping and nourishing effect. Peptides work at the level of biological signalling, supporting long-term rebuilding of skin structure. These are also complementary ingredients — many formulas (including Larens peptide products) combine peptides with hyaluronic acid in one formula, to achieve both a hydrating and a regenerating effect.
Serum is the most common form of peptide application, since it allows a high concentration of the active ingredient in a relatively light formula. Within this category, it's worth distinguishing:
When choosing a peptide serum, it's worth checking: the full INCI (not just the marketing name), the concentration and position of the peptide on the ingredient list, the form of application, and the product's pH (too-high pH can reduce the stability of some peptides).
A product's marketing name ("peptide serum", "multi-peptide complex") tells you little about its actual peptide content. To assess the composition, it's worth checking a few things on the INCI list:
Mature skin loses firmness and density mainly due to slowing natural collagen and elastin synthesis and the accumulation of damage related to UV exposure and chronological ageing processes. Because peptides work at the level of cellular signalling that stimulates fibroblasts, they're often a recommended ingredient for skincare targeting this group of needs.
In practice, this means peptides tend to appear in several forms at once in a mature-skin routine:
Effects of using peptides in mature skin care are usually described in terms of improved firmness, elasticity, and overall skin condition — they should not, however, be attributed medical effects or compared to invasive or injectable treatments.
In the Larens range, bioactive peptides appear under the name Biopeptide Complex — a proprietary technology based on bioactive marine peptides obtained from fish collagen hydrolysates (according to the official Nutrivi catalogue: silver carp, grass carp, Atlantic salmon). The technology is protected by patents PL206813 and US7285638, and its inventor is Prof. Andrzej Frydrychowski. In manufacturer studies using the SIRCOL method (Medical University of Wrocław, 2012), a 671% increase in collagen synthesis was recorded; the technology also received a silver medal at the Brussels Eureka invention fair in 2006.
The flagship product using this technology is Biopeptide Serum Spray (pH 3.0–4.0) — a full description of the technology, its mechanism of action, and a comparison with other peptide types (Matrixyl, Argireline, Copper Tripeptide-1) can be found in a dedicated guide: Biopeptide Complex — what it is and how it works →
The above data comes from manufacturer materials (official Nutrivi catalogue, patent documentation) and is presented as manufacturer information, not independent clinical verification.
Content prepared: August 2026. Content requires periodic review in line with INCI and manufacturer material updates.