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Kartini Hasballah
Department of Pharmacology, Faculty of Medicine, Universitas Syiah Kuala, Banda Aceh, Indonesia

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Development and preclinical evaluation of an Aceh kelulut honey-based hydrocolloid dressing for wound healing Muhammad IA. Putra; Khairan Khairan; Izza Chairani; Binawati Ginting; Kartini Hasballah; Reno K. Kamarlis; Mudatsir Mudatsir; Syamsul Rizal; Mirnasari Amirsyah; Muhammad Diah
Narra J Vol. 6 No. 2 (2026): August 2026
Publisher : Narra Sains Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52225/narra.v6i2.3121

Abstract

Honey has long been used in wound care because of its antibacterial and anti-inflammatory properties, while hydrocolloid dressings provide a moist and protective environment that supports tissue repair. This study aimed to evaluate the macroscopic and microscopic effects of an Aceh kelulut honey–based hydrocolloid dressing on wound healing in mice. Twenty-seven healthy male mice (Mus musculus) were assigned to three groups: control treated with 0.9% NaCl, pure Aceh kelulut honey (KH), and Aceh kelulut honey–based hydrocolloid (KHHC). Two full-thickness excisional wounds, each 4 mm in diameter, were created on the dorsal skin of each mouse. Wound diameter was measured daily for 14 days. Histopathological evaluation was performed on days 3, 7, and 14 to assess neutrophil and macrophage counts, epithelialization ratio, myofibroblast ratio, and collagen fiber density. The KHHC group showed faster macroscopic wound closure than the KH and control groups. Significant differences were observed among groups in neutrophil count, macrophage count, epithelialization ratio, myofibroblast ratio, and collagen fiber density. KHHC reduced inflammatory cell infiltration, increased myofibroblast ratio, and enhanced collagen fiber density, suggesting accelerated wound contraction and tissue remodeling. However, epithelialization was lower in the KHHC group during the early healing phase. These findings indicate that Aceh kelulut honey–based hydrocolloid dressing may improve several key aspects of wound healing, particularly inflammation control, wound contraction, and collagen deposition. Further studies are required to optimize the formulation and clarify its effect on reepithelialization.
Antibacterial, antioxidant, and SucAla3-based anti-aging activities of Johar flower extract (Cassia siamea Lamk.) Kartini Hasballah; Murniana Murniana; Muhammad Diah; Renzavaldy Rusly; Yosi Fadlia; Usratul Amna; Muhammad NRR. Husni
Narra X Vol. 3 No. 3 (2025): December 2025
Publisher : Narra Sains Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.52225/narrax.v3i3.236

Abstract

Cassia siamea flowers are recognized for their diverse secondary metabolites, including flavonoids, triterpenoids, and steroids, which have been linked to various therapeutic properties. Although previous studies have primarily focused on the pharmacological activities of C. siamea leaves, bark, or crude extracts, evidence regarding the bioactivity of its flower extracts—particularly those obtained through sequential solvent partitioning—remains limited. The aim of this study was to investigate the antibacterial, antioxidant, and anti-aging potential of C. siamea flower extracts obtained through sequential solvent extraction. The extracts were prepared by maceration with methanol, followed by partitioning with n-hexane and ethyl acetate. Antibacterial activity was assessed using the agar well diffusion method against Staphylococcus aureus and Escherichia coli. Antioxidant activity was determined using the 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay. Anti-aging properties were evaluated through elastase inhibition assays, with the reduction of SucAla3 formation used as an indicator. Phytochemical profiling of the extracts was conducted using chromatography–mass spectrometry (GC–MS). The findings revealed that the ethyl acetate extract exhibited the highest antibacterial activity, with inhibition zones of 8.08±0.84 mm and 7.38±0.33 mm against S. aureus and E. coli, respectively. Antioxidant analysis showed the methanol extract to be the most effective (IC50=66.76 µg/mL), followed by the methanol partition (IC50=75.97 µg/mL). The methanol extract demonstrated significant elastase inhibition, achieving 97.53% activity (IC50=13.89 µg/mL). GC–MS analysis identified two compounds as the major phytocomponents of the methanolic extract, namely octadecanoic acid, 2-(2-hydroxyethoxy)ethyl ester and tetradecanoic acid. In conclusion, C. siamea flower extracts have therapeutic potentials, particularly as antibacterial, antioxidant, and anti-aging agents.