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Profil bibliographique

Hongping Ge

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

4Publications signalées
19Citations signalées
5Affiliations récentes

Les institutions déclarées

Les domaines associés

Dermatologic Treatments and ResearchBone Tissue Engineering MaterialsWound Healing and TreatmentsElectrospun Nanofibers in Biomedical ApplicationsSkin Protection and Aging

Les publications récentes

2026 article OpenAlex

pH-Responsive Hydrogel-Mediated Transdermal Co-delivery of Triamcinolone Acetonide and 5-Fluorouracil for Hypertrophic Scar Treatment via Regulating Macrophage Polarization and Exerting Antifibrotic Effects

Shisheng Chen, Yuanyuan Hu, Hongping Ge, Lin Fan et autres

Hypertrophic scar (HS) is a fibrotic disorder caused by imbalanced tissue repair after skin injury. Its core features include persistent inflammation and excessive collagen deposition. Current clinical treatments are limited by poor efficacy, severe local adverse reactions, and low transdermal delivery efficiency …

cn (code pays fourni par la source)

0 citations ACS Applied Materials & Interfaces
2026 article OpenAlex

Cuprorivaite as a Multifunctional Material for Hypertrophic Scar Modulation with Intrinsic Photothermal Enhancement

Hongping Ge, S Chen, Chenle Dong, Tongyue Yang et autres

Hypertrophic scarring remains a challenging clinical problem because of its multifactorial pathology involving reduced apoptosis, excessive collagen deposition, aberrant fibroblast migration, and sustained inflammation. Here, we report Cuprorivaite as a multifunctional biomaterial for hypertrophic scar modulation with intrinsic photothermal enhancement. Through sustained …

cn, th (code pays fourni par la source)

0 citations ACS Applied Materials & Interfaces
Accès ouvert 2025 article OpenAlex

A bioadhesive sustained-release films for in situ therapy of oral ulcers

Hongping Ge, Jing Yu, Pan Li, Lifang Zhang et autres

A multifunctional adhesive electrospun BG/HPMC film delivers BG-derived bioactive ions (Si, Ca, Na, P) to the oral ulcer site, creating a biomimetic microenvironment. This enables synergistic antimicrobial, pro-proliferative (epithelial/endothelial), ROS-scavenging, and anti-inflammatory effects, accelerating ulcer re-epithelialization. The study demonstrates the effectiveness of …

cn (code pays fourni par la source)

1 citation Materials & Design
Accès ouvert 2024 article OpenAlex

A New Strategy to Inhibit Scar Formation by Accelerating Normal Healing Using Silicate Bioactive Materials

Zhaowenbin Zhang, Chen Fan, Q. N. Xu, Feng Guo et autres

Inspired by the scar-free wound healing in infants, an anti-scar strategy is proposed by accelerating wound healing using silicate bioactive materials. Bioglass/alginate composite hydrogels are applied, which significantly inhibit scar formation in rabbit ear scar models. The underlining mechanisms include stimulation of …

cn (code pays fourni par la source)

18 citations Advanced Science

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