February 2024 in “Journal of the American Academy of Dermatology” Vascular patterns in dermoscopy help tell apart malignant and benign skin tumors.
29 citations
,
May 2023 in “Cell”
December 2024 in “JURNAL ANALIS LABORATORIUM MEDIK” Diabetic wounds heal slower than healthy wounds.
1 citations
,
December 1996 in “Cell Biology and Toxicology” 6 citations
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June 2024 in “Biofabrication” A small 3D skin model helps study how immune cells move in the skin.
October 2025 in “Research Square (Research Square)” Enhancing blood vessel interactions with hair cells may help treat hair loss and skin aging.
March 2026 in “ACS Applied Materials & Interfaces” MCP@G improves diabetic wound healing by reducing stress and promoting tissue repair.
245 citations
,
April 2009 in “Circulation Research” CD133+ cells help heal diabetic ulcers by promoting blood vessel growth and activating Wnt signaling.
20 citations
,
February 2003 in “Facial Plastic Surgery” Treat adult facial vascular anomalies with lasers, surgery, or observation, depending on the patient's specific condition.
January 2026 in “Advances in Dermatology and Allergology” Alopecia areata may be linked to changes in small blood vessels.
11 citations
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January 2013 in “Indian Journal of Endocrinology and Metabolism” Skin problems are common in people with diabetes and controlling blood sugar can reduce these issues.
6 citations
,
July 2023 in “Diabetology” Autologous micrografts significantly improve wound healing in diabetic conditions by speeding up tissue regeneration and reducing inflammation.
9 citations
,
February 2025 in “Journal of Nanobiotechnology” Biomimetic nanovesicles can speed up diabetic wound healing by regulating immune cell behavior and metabolism.
24 citations
,
March 2010 in “Journal of Cellular Biochemistry” Nestin-expressing blood vessels help skin transplants survive and heal.
7 citations
,
March 2015 in “The American Journal of the Medical Sciences” Finasteride helps reduce blood vessel growth in diabetic rat kidneys.
January 2025 in “Advances in Dermatology and Allergology” Micro-needling helps deliver substances deeper into the skin and promotes skin repair.
April 2026 in “Scientific Reports” Capillary and dermal papilla interactions are vital for hair growth and aging, with potential for treating hair loss.
2 citations
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November 2019 in “BMC urology” The junction of the inner and outer prepuce with good blood flow is ideal for surgical flaps.
September 2019 in “Research Square (Research Square)” Micro-CT helps identify suitable areas for surgical procedures based on blood vessel distribution in hypospadias-affected rats.
October 2019 in “Research Square (Research Square)” The junction of the inner and outer prepuce with good blood flow is best for vascular pedicle flaps.
December 2009 in “Saengmyeong gwahag hoeji/Saengmyeong gwahak hoeji” Thymosin β4 and VEGF are important for blood vessel formation in many organs.
25 citations
,
March 2008 in “Surgical Neurology” New techniques for treating scalp blood vessel malformations are effective and can have good cosmetic results.
1 citations
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April 1998 in “PubMed” December 2009 in “생명과학회지” Thymosin β4 and VEGF are important for organ function and may help with blood vessel formation.
Hair follicles influence blood vessels during hair growth, suggesting potential treatments for hair growth issues.
December 2021 in “Indian Journal of Dermatology, Venereology and Leprology” Men with androgenetic alopecia, or hair loss, often have abnormal blood flow in their small blood vessels, which might be linked to inflammation and stress.
January 2024 in “Srpski arhiv za celokupno lekarstvo” Long-term diabetes, smoking, and poor blood sugar control increase the risk of artery disease in diabetic retinopathy patients.
Multiphoton microscopy helps understand and improve vitiligo treatments by visualizing skin cell changes.
36 citations
,
February 1998 in “Journal of Anatomy” Fibre optic confocal imaging can visualize skin layers, blood vessels, and nerves in live mice.
60 citations
,
February 2015 in “Biomaterials” A surface with VEGF can specifically capture endothelial cells from flowing fluids.