# Kyoh® Rocket Leaf Extract Regulates Proliferation and VEGF and FGF7 Expression in Human Dermal Follicle Papilla Cells

**Authors:** Adal Mena-García, Justyna M. Meissner, David Pajuelo, María Inés Morán-Valero, Ana Cristos, Marina Díez-Municio, Jose Luis Mullor

PMC · DOI: 10.3390/molecules30071489 · Molecules · 2025-03-27

## TL;DR

A rocket leaf extract called Kyoh® promotes hair growth by boosting cell growth and key growth factors in hair follicle cells.

## Contribution

Kyoh® is shown to significantly upregulate VEGF and FGF7 gene expression in human dermal follicle papilla cells.

## Key findings

- Kyoh® increased VEGF expression by 60.7% after 4 hours and 267.3% after 24 hours.
- FGF7 expression increased by 50.3% after 4 hours and 244.3% after 24 hours with Kyoh® treatment.
- Kyoh® also increased NRF2 gene expression by 71.2%, suggesting an antioxidant effect.

## Abstract

Androgenetic alopecia is the most common cause of hair loss for women and men. Current treatments for androgenetic alopecia, such as those based on drugs like Minoxidil, Finasteride, or Dutasteride, have been associated with a variety of side effects, such as irritation, contact dermatitis, scalp pruritus, burning, etc. In this regard, plant extracts have emerged as promising alternatives to available chemical-based treatments for androgenetic alopecia given their efficacy, customer acceptability, and potentially minimized side effects. In this study, we evaluated the efficacy of Kyoh®, an extract from rocket leaves, as a treatment to improve the signs of androgenetic alopecia. We found that Kyoh® contained 2.1% total flavonoids, with kaempferol, quercetin, and isorhamnetin diglucosides being the most abundant. Additionally, Kyoh® showed a stimulating effect on the growth of human dermal follicle papilla cells in laboratory conditions. Most importantly, Kyoh® enhanced the gene expression of the hair growth-associated growth factors VEGF (Vascular Endothelial Growth Factor) and FGF7 (Fibroblast Growth Factor 7). Specifically, VEGF expression increased by 60.7% after 4 h and 267.3% after 24 h, while FGF7 expression increased by 50.3% after 4 h and 244.3% after 24 h, indicating both a rapid induction of gene expression and a sustained effect lasting at least one day. Moreover, Kyoh® increased the gene expression of NRF2 (Nuclear factor erythroid 2-related factor 2) by 71.2%, which encodes for a protein participating in the antioxidant response. Overall, our study shows that flavonol-rich rocket extract (Kyoh®) is a promising treatment for promoting hair growth, demonstrated by its proliferation-promoting effect, potential antioxidant priming, and induction of the expression of growth factors associated with hair growth and health.

## Linked entities

- **Genes:** VEGFA (vascular endothelial growth factor A) [NCBI Gene 7422], FGF7 (fibroblast growth factor 7) [NCBI Gene 2252], GABPA (GA binding protein transcription factor subunit alpha) [NCBI Gene 2551]
- **Chemicals:** Minoxidil (PubChem CID 4201), Finasteride (PubChem CID 57363), Dutasteride (PubChem CID 152945), kaempferol (PubChem CID 5280863), quercetin (PubChem CID 5280343), isorhamnetin (PubChem CID 5281654)
- **Diseases:** androgenetic alopecia (MONDO:0005339)
- **Species:** Homo sapiens (taxon 9606)

## Full-text entities

- **Genes:** NFE2L2 (NFE2 like bZIP transcription factor 2) [NCBI Gene 4780] {aka IMDDHH, NRF2, Nrf-2}, VEGFA (vascular endothelial growth factor A) [NCBI Gene 7422] {aka L-VEGF, MVCD1, VEGF, VPF}, FGF7 (fibroblast growth factor 7) [NCBI Gene 2252] {aka HBGF-7, KGF}
- **Diseases:** Androgenetic alopecia (MESH:D000505), contact dermatitis (MESH:D003877), pruritus (MESH:D011537), irritation (MESH:D001523)
- **Chemicals:** flavonoids (MESH:D005419), Dutasteride (MESH:D000068538), Finasteride (MESH:D018120), quercetin (MESH:D011794), kaempferol (MESH:C006552), flavonol (MESH:C041477), Kyoh (-), Minoxidil (MESH:D008914)
- **Species:** Homo sapiens (human, species) [taxon 9606]

## Full text

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## Figures

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## References

70 references — full list in the complete paper: https://tomesphere.com/paper/PMC11990418/full.md

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Source: https://tomesphere.com/paper/PMC11990418