AmpleLab

2dDR Deoxyribose Serum 2% | Hair & Scalp Support

£34.99
£34.99
AmpleLab

2dDR Deoxyribose Serum 2% | Hair & Scalp Support

£34.99
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2% Concentration 20mg/mL Glycol-Free Made in the UK

AmpleLab's 2dDR serum is formulated at 2% (20mg/ml) in a glycol-free hyaluronic acid base, made in the UK. A full-strength, single-active formula, clearly dosed and built for targeted use on the hair and scalp, with no unnecessary carriers or fillers.

A sugar molecule found naturally in DNA, 2dDR (2-Deoxy-D-Ribose) is gaining attention for its ability to support circulation around the hair follicle, targeting angiogenesis, one of the biological processes most closely tied to sustained hair growth. Literature links it to endothelial cell stimulation, VEGF upregulation, and follicle activity in models of androgenic alopecia.

Research References

Selected publications and full ingredient breakdown listed below.

2%
Concentration
20mg/mL
Active per mL
1g
Active per bottle
50mL
Volume
A naturally occurring sugar found in DNA, 2dDR has attracted research interest for its ability to stimulate angiogenesis, the formation of new blood vessels.

Hair follicles depend on active perifollicular circulation to sustain the growth phase, and research links 2dDR to endothelial cell stimulation and VEGF upregulation. Angiogenesis is one of several pathways proposed to explain minoxidil's effects on hair growth.

Its broader research profile extends to direct application on hair follicles, with topical use (Anjum et al., 2024) linked to increased follicle activity and vascularisation.
2-Deoxy-D-Ribose
CAS 533-67-5
C5H10O4
ANGIOGENESISSCALP CIRCULATIONTopicalGlycol-Free
HAIR REGROWTH
Stimulation of hair regrowth in an animal model of androgenic alopecia using 2-deoxy-D-ribose
Anjum MA et al.  ·  2024
PubMed
ANGIOGENESIS
Assessment of the angiogenic potential of 2-deoxy-D-ribose using in vitro dynamic and static models
Dikici S et al.  ·  2020
PubMed
ANGIOGENESIS
Thymidine phosphorylase, 2-deoxy-D-ribose and angiogenesis
Brown NS & Bicknell R  ·  1998
PubMed
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