August 2026 in “Journal of Genome Biotechnology and Genetics” This review found that while forensic DNA phenotyping and health applications for pigmentation genetics show potential, factors like phenotype definition and population diversity present challenges to accurate genotype-to-appearance predictions.
July 2026 in “Materials Today Bio” This review examines the design and applications of DNA hydrogels in regenerative medicine, discussing their potential for tissue repair in areas like bone and skin, and their role in tumor therapy, while providing insights into their molecular design and construction strategies.
March 2026 in “The Journal of Steroid Biochemistry and Molecular Biology” This study found that mice lacking both vitamin D and calcium-sensing receptors in epidermal keratinocytes are predisposed to developing squamous cell carcinoma as they age, due to impaired oxidative stress response and reduced DNA repair capabilities.
January 2026 in “Frontiers in Bioscience-Landmark” This study reported that, in a laboratory setting, araliadiol derived from Centella asiatica activated antioxidant pathways, mitigating urban particulate matter-induced oxidative stress and skin damage.
December 2025 in “Clinical Cosmetic and Investigational Dermatology” This study highlights the potential of ZDHHC17 methylation as a biomarker or therapeutic target in addressing skin aging, offering new insights into its molecular mechanisms.
November 2025 in “Journal of Investigative Dermatology” This study found that UVB exposure led to visible tanning and distinct DNA methylation changes in pigmentation genes in tan-capable skin but not in non-tan skin, highlighting GNAS as a potentially UVB-responsive gene.
September 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” This study developed a partially automated protocol utilizing hair follicles for DNA extraction in marmosets, achieving reliable whole genome sequencing with low chimerism, offering an efficient alternative to blood for genetic studies in non-human primates.
September 2025 in “Frontiers in Genetics” This study developed a non-invasive, partially automated protocol for extracting high-quality DNA from hair follicles of marmosets, significantly reducing chimerism rates compared to blood, and proving reliable for whole genome sequencing in low-input DNA scenarios.
September 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” In this study, researchers developed a non-invasive, partially automated protocol for extracting DNA from marmoset hair follicles, resulting in high-quality whole genome sequencing with low chimerism levels, making it a reliable method compared to blood DNA sequencing in these primates.
July 2025 in “Journal of Investigative Dermatology” BrdU speeds up hair follicle aging and reduces hair quality.
March 2025 in “American Journal of Medical Genetics Part A” In this study, researchers found that mosaic PLCD1 hotspot variants, even without the recognized germline "risk allele," may be a rare but significant genetic cause of nevus trichilemmocysticus, warranting DNA testing and sensitive sequencing technologies for accurate diagnosis.
March 2025 in “Benha Journal of Applied Sciences” In this study using C57BL/6 mice, the researchers observed that combining minoxidil with exosomes and DNA polynucleotides improved hair follicle density and promoted gene expression linked to hair growth, suggesting enhanced hair growth potential over minoxidil alone.
January 2025 in “BioMed Research International” This study highlights the role of abnormal DNA methylation in skin disorders such as atopic dermatitis and psoriasis, suggesting these epigenetic changes may serve as biomarkers and targets for potential treatments.
This study found that DNA methylation may regulate the differential expression of the BMP7 gene in Hu sheep lamb skin of different patterns, and it influences the proliferation and cell cycle of dermal papilla cells, with demethylation treatment increasing BMP7 expression and cell proliferation.
In this study, 20% whale oil applied to mice was observed to promote hair growth more effectively than a control or 3% minoxidil, showing increased hair follicles and thicker subcutaneous tissue.
In this study using female mice, researchers observed that topical application of 20% whale oil was more effective in promoting hair growth compared to a standard 3% minoxidil solution, with additional findings suggesting reduced stress- and inflammation-related responses with whale oil.
February 2024 in “New phytologist” This study reported that during wheat polyploidization, decreased DNA methylation and specific hypomethylated promoters were associated with altered gene transcription, contributing to root hair elongation and improved nitrate uptake, highlighting the role of epigenetic regulation in enhancing crop traits.
January 2024 in “GeroScience” This review explores how radiation-induced hair graying can be used as a model to study the mechanisms behind hair graying, focusing on cellular senescence and potential therapeutic targets to address age-related changes. Results are not provided.
January 2024 in “International Journal of Sciences” In this study, researchers reconstituted the face of Bayard, a historical French knight, using cranial characteristics, DNA analyses for skin, eye, and hair traits, and digital analysis of his portrait.
May 2023 in “Skin research and technology” This study found that WD-aptamer increased β-catenin expression and promoted human hair follicle dermal papilla cell proliferation by interfering with the CXXC5-Dvl1 interaction in the Wnt signaling pathway.
April 2023 in “The journal of investigative dermatology/Journal of investigative dermatology” In this study, researchers found that the loss of SETDB1 in epidermal keratinocytes led to altered chromatin states, increased ERV expression, and activation of immune responses, while inhibiting these effects with certain antiviral drugs reduced skin inflammation and hair loss in a mouse model.
April 2023 in “The journal of investigative dermatology/Journal of investigative dermatology” This study found that DNA-damaged hair follicle stem cells in mouse models do not show typical senescent markers but are dynamically expelled to maintain tissue health and prevent hair loss.
April 2023 in “The journal of investigative dermatology/Journal of investigative dermatology” In this study, the ablation of Tet2/Tet3 genes in mouse skin epithelial cells led to altered hair shape and length, highlighting their role in regulating hair follicle gene expression and chromatin structure.
January 2023 in “Advanced Biology” This study observed that DNA methylation dynamics, including global hypermethylation and site-specific changes, influenced gene expression associated with immune activation and PI3K-Akt signaling during esophageal tissue regeneration with acellular grafts.
January 2023 in “Türkiye klinikleri adli tıp ve adli bilimler dergisi” This review discusses forensic DNA phenotyping, focusing on male pattern baldness and its prediction through SNP markers, but reports no new results.
January 2023 in “Biocell” The study found that safflower extract may help protect human follicle dermal papilla cells from cisplatin-induced damage, suggesting its potential as an adjuvant in chemotherapy to mitigate hair follicle cell damage.
December 2022 in “IntechOpen eBooks” This paper discusses forensic DNA phenotyping, emphasizing its ability to infer visible traits from biological samples without reference samples, but notes ethical and legal concerns related to its use.
September 2022 in “International Journal of Health Sciences (IJHS)” This study examined the relationship between zinc status and DNA oxidative damage in patients with hair loss in Duhok, Kurdistan Region-Iraq, highlighting the potential role of zinc deficiency in hair loss.
July 2022 in “Postepy biochemii” This review discusses the current state of research on genetic markers for predicting human phenotypic traits from DNA samples for forensic purposes and reports no new experimental findings.
July 2022 in “The journal of investigative dermatology/Journal of investigative dermatology” This study demonstrated that Tet2 and Tet3 enzymes are crucial for controlling gene expression related to hair differentiation in mice, suggesting DNA demethylation could be a new method for managing hair growth.