topicMangosteen Blood Pressure Meta-Analysis
claimAdvanced fabrication improved drug delivery, physicochemical properties, and healing outcomes.
evidence level1
citationFahrurroji A (2026)
sourceNatural Bioactive-Based Advanced Wound Dressings for Diabetic Wound Healing: A Systematic Review of Emerging Biomaterial Platforms.
topicMangosteen Blood Pressure Meta-Analysis
claimAt the molecular level, these systems modulated pathways such as NF-κB, PI3K/Akt, MAPK, VEGF, and TGF-β/Smad, contributing to reduced inflammation, oxidative stress suppression, enhanced angiogenesis, and extracellular matrix remodeling.
evidence level1
citationFahrurroji A (2026)
sourceNatural Bioactive-Based Advanced Wound Dressings for Diabetic Wound Healing: A Systematic Review of Emerging Biomaterial Platforms.
topicMangosteen Blood Pressure Meta-Analysis
claimRisk of bias assessment indicated unclear risks in randomization and blinding, although internal validity was generally acceptable Translational readiness remained limited (TRL 2-6), with hydrogels and nanosystems showing the highest potential, while 3D bioprinting faces scalability and regulatory challenges.
evidence level1
citationFahrurroji A (2026)
sourceNatural Bioactive-Based Advanced Wound Dressings for Diabetic Wound Healing: A Systematic Review of Emerging Biomaterial Platforms.
topicMangosteen Blood Pressure Meta-Analysis
claimBackground Diabetic ulcers are complex wounds that are difficult to treat due to persistent inflammation, excessive oxidative stress, impaired angiogenesis, and microbial infections that disrupt normal healing.
evidence level1
citationFahrurroji A (2026)
sourceNatural Bioactive-Based Advanced Wound Dressings for Diabetic Wound Healing: A Systematic Review of Emerging Biomaterial Platforms.