3 citations
,
January 2022 in “Biomaterials Science” The dressing can track joint movement and speed up healing of joint wounds.
9 citations
,
December 2024 in “Nano Research” A protein-based hydrogel helps heal diabetic wounds and repair nerves.
Microneedles could revolutionize pediatric medicine by offering painless drug delivery, but more development is needed.
June 2026 in “Precision medicine and engineering.” The hydrogel dressing RD@PVA helps heal diabetic wounds by reducing stress and improving blood vessel growth.
21 citations
,
June 1983 in “Pediatric clinics of North America/The Pediatric clinics of North America” Zinc is vital for skin health and overall body functions, and deficiency can cause serious health issues.
April 2024 in “The Egyptian Journal of Hospital Medicine” Microneedling effectively helps deliver skin medications and is expected to improve with more research.
The new biomimetic skin heals wounds faster and better than traditional treatments, without scarring.
July 2026 in “Chemical Engineering Journal” January 2026 in “Advanced Science” A new wound dressing helps heal diabetic wounds faster by reducing inflammation and promoting tissue growth.
131 citations
,
May 2015 in “Experimental Dermatology” Microneedles help improve skin appearance and deliver skin treatments effectively, but safety concerns need more research and regulation.
January 2024 in “Journal of chemical health risks” The bio-patch promotes faster, scarless wound healing.
October 2023 in “Research Square (Research Square)” The new composite scaffold may effectively treat chronic and deep wounds.
March 2025 in “Wound Repair and Regeneration” The hydrogel scaffold improved skin flap healing and reduced inflammation.
A stem cell-derived matrix speeds up healing of diabetic skin wounds.
The new microneedle system effectively delivers minoxidil for hair regrowth with minimal side effects.
October 2025 in “Materials Today Bio” Axolotl-derived skin scaffolds may help heal wounds better by reducing scarring.
34 citations
,
May 2021 in “Journal of Nanobiotechnology” The 3D electrospun fibrous sponge is promising for tissue repair and healing diabetic wounds.
August 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” Optimized microneedles promote hair regrowth better than minoxidil without safety risks.
The new microneedle system safely delivers finasteride through the skin to treat hair loss.
9 citations
,
March 2023 in “Biomimetics” New materials that better mimic natural skin structure could improve healing, especially for chronic wounds.
7 citations
,
June 2017 in “The Journal of Dermatology” 39 citations
,
April 2022 in “Biomedical Materials” A special gel helps heal skin wounds without scars by calming the immune response.
January 2022 in “Social Science Research Network” A new patch that releases quercetin, copper, and zinc ions under the skin can effectively treat hair loss by promoting hair follicle regeneration.
1 citations
,
May 2024 in “Advanced Functional Materials” The artificial skin promotes better wound healing and skin regeneration.
Combining microneedling with platelet-rich plasma enhances skin repair and collagen production but may not offer significant extra benefits.
January 2025 in “Journal of Materials Chemistry B” The microneedle patch with CuxO nanozymes effectively promotes hair growth for treating hair loss.
June 2024 in “Annals of the College of Medicine Mosul/Annals of the College of Medecine” Microneedling safely improves skin by boosting collagen and elastin, helping with scars, stretch marks, and other skin issues.
12 citations
,
September 2023 in “Polymers” The hydrogel speeds up skin wound healing effectively.
May 2026 in “Journal of Nanobiotechnology” A new peptide delivered through microneedles can effectively promote hair regrowth.
6 citations
,
July 2017 in “Plastic surgical nursing : official journal of the American Society of Plastic and Reconstructive Surgical Nurses” Microneedling is effective for skin rejuvenation and various skin issues, but more research is needed to confirm its safety and effectiveness.