17 citations
,
January 2024 in “Journal of Materials Chemistry B” Magneto-responsive biocomposites help heal wounds faster and better.
17 citations
,
April 2022 in “Bioactive Materials” Continuous microfluidic processes can help scale up microtissue production for industrial and clinical use.
The device applies substances directly to body tissues, improving cell transplant and treatment processes.
May 2013 in “Proceedings of SPIE” Researchers created a system that accurately aligns laser beams automatically.
39 citations
,
November 2015 in “Nanomedicine” Improved Finasteride delivery for hair loss treatment.
12 citations
,
March 2023 in “Pharmaceutics” Gas-propelled dissolving microneedles improve drug loading and delivery efficiency.
33 citations
,
June 2022 in “Materials Today Bio” Injectable biomaterials show promise for treating spinal degeneration but need better design for effective use.
The EMG-to-force model accurately predicts hip muscle forces during walking.
6 citations
,
January 2025 in “Journal of Materials Chemistry B” Liposome-composite hydrogel microspheres are promising for safe, controlled drug delivery.
14 citations
,
December 2024 in “Pharmaceutics” Hydrogel microneedles offer a promising, minimally invasive way to treat diseases like cancer and hair loss, but need improvements in strength and standardization.
3 citations
,
March 2024 in “arXiv (Cornell University)” The new AI system improves remote skin condition diagnosis and access to care.
November 2025 in “Indian Journal of Dermatology” Home-based dermatology devices offer convenient and affordable skincare but require careful use due to potential risks.
67 citations
,
January 2022 in “Theranostics” Advanced nanocarrier and microneedle drug delivery methods are more effective, safer, and less invasive for treating skin diseases.
11 citations
,
August 2022 in “Green Chemical Engineering” Engineered polypeptide-based systems can improve cancer treatment by targeting specific sites and reducing side effects.
15 citations
,
June 2021 in “Journal of Genetic Engineering and Biotechnology” Biomaterials can improve non-viral gene delivery by enhancing DNA uptake and reducing toxicity.
January 2026 in “Advanced Healthcare Materials” The new bioreactor improves skin grafts by evenly stretching cells and monitoring conditions for better growth.
Organoids can sustainably produce advanced materials with superior properties, offering solutions to global challenges.
39 citations
,
September 2019 in “Materials & Design” Combinatorial drug treatments are more effective than single drugs for cancer therapy.
April 2026 in “SSRN Electronic Journal” January 2026 in “Regenerative Biomaterials” Advanced hydrogels can autonomously deliver drugs to treat radiation skin injuries, but challenges remain for clinical use.
May 2024 in “International journal of medicine and psychology.” Employee motivation now focuses more on personal safety, job security, and material incentives.
September 2015 in “Fluids and Barriers of the CNS” Three skull models were found most useful for testing hydrocephalus valve programming.
January 2025 in “Repository of the Academy's Library (Library of the Hungarian Academy of Sciences)” Robotic surgery improves patient safety and surgical quality.
November 2024 in “Communities in ADDI (University of the Basque Country)” Antisense oligonucleotides show promise for treating Myotonic Dystrophy type I.
Polydopamine is promising for personalized medicine and biomedical technology due to its strong adhesion and biocompatibility.
16 citations
,
April 2000 in “Journal of Investigative Dermatology” The AVET system effectively delivers genes to human keratinocytes and may help treat skin diseases.
1 citations
,
June 2015 in “Journal of anatomy” A compound named ZCZ90 can increase muscle spindle firing, potentially helping treat muscle spasms and hypertension.
Contractile hydrogels help wounds heal faster and with less scarring.
5 citations
,
August 2005 in “Anatomy and Embryology” Rat skin has a linear system of nerve fibers linked to hair follicles and muscles.