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Pemberdayaan Kelompok Petani Argowisata Banda Lonthoir Melalui Pelatihan Pembuatan Eco-enzyme Berbahan Dasar Limbah Kulit Pala Juen Carla Warella; Melda Yunita; Eka Astuti; Merry Patteilohy; Kezia Josawel Lesbatta
Agrokreatif: Jurnal Ilmiah Pengabdian kepada Masyarakat Vol. 11 No. 2 (2025): Agrokreatif Jurnal Ilmiah Pengabdian kepada Masyarakat
Publisher : Institut Pertanian Bogor

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29244/agrokreatif.11.2.266-275

Abstract

Organic waste is a major environmental and societal concern. This waste originates from households, agricultural industries, and livestock. Piles of organic waste that are not managed properly will cause water, soil, and air pollution. Banda Lonthoir Village is one of the areas that has not implemented proper processing and utilization of organic waste. This is because Banda Lonthoir Village is the largest producer of nutmeg in Maluku. The nutmeg plants that are utilized are seeds and mace, whereas nutmeg skin is usually made into sweets, and most of it is thrown away as organic waste. One solution for processing organic waste from nutmeg skin is to use eco-enzymes. This activity aims to provide education and training in creating eco-enzymes to the community so that they can increase their knowledge on how to manage nutmeg skin waste. The method of implementing this activity is to provide materials and training processes for making eco-enzymes. The target of this activity is the Nutmeg Garden Agrotourism Farmers Group and the Banda Lonthoir Village apparatus. The results of this activity show that the community is very enthusiastic and participates in listening to the material and making eco-enzymes, as well as asking questions related to the activities provided. The community was able to make eco-enzymes according to the procedure explained and ferment 10 L of eco-enzyme. The community gave a positive response and had an impact on increasing community knowledge regarding how to manage nutmeg skin waste into eco-enzymes that are beneficial for the community and the environment.
UJI IN SILLICO ANTIBAKTERI SENYAWA AKTIF KUERSETIN DAUN BINAHONG TERHADAP PROTEIN ClfB Staphylococcus aureus Kezia Josawel Lesbatta; Annisa R. Umanailo; Vallery I. A. Lumintang; Marta Dominika Lermatan; Yonna A. Kuay; Novellis V. Aponno; Andi Sri Dewi Anggraeni. M
JURNAL BIOSENSE Vol 9 No 1 (2026): Edisi Januari 2026
Publisher : Universitas PGRI Banyuwangi, Jalan Ikan Tongkol No 01, Telp (0333) 421593, 428592 Banyuwangi 68416

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36526/biosense.v9i1.7097

Abstract

Abstrak Resistensi antibiotik terhadap Staphylococcus aureus, khususnya strain Methicillin-Resistant Staphylococcus aureus (MRSA), merupakan tantangan besar dalam pengobatan infeksi bakteri. Salah satu protein virulensi penting dari S. aureus adalah Clumping factor B (ClfB), yang berperan dalam proses adhesi dan pembentukan biofilm pada jaringan inang. Penghambatan protein ini dapat menurunkan kemampuan kolonisasi bakteri, sehingga menjadi target potensial dalam pengembangan agen antibakteri baru. Penelitian ini bertujuan untuk mengevaluasi potensi kuersetin dari daun binahong (Anredera cordifolia) sebagai inhibitor alami terhadap protein ClfB secara in silico. Struktur tiga dimensi protein ClfB diperoleh dari Protein Data Bank (PDB), sedangkan struktur kuersetin diunduh dari basis data PubChem. Proses molecular docking dilakukan menggunakan SwissDock dengan analisis lanjutan melalui UCSF Chimera. Hasil docking menunjukkan bahwa kuersetin berikatan kuat pada kantong aktif ClfB dengan nilai afinitas energi sebesar −7,584 kcal/mol, menandakan kestabilan kompleks yang baik secara termodinamika. Interaksi yang terbentuk melibatkan residu asam amino polar seperti Ser, Glu, dan Asp serta residu nonpolar seperti Leu dan Val yang berkontribusi terhadap pengikatan stabil. Visualisasi struktur menunjukkan bahwa kuersetin menempati sisi aktif ClfB dan berpotensi menghambat fungsi adhesi protein tersebut. Berdasarkan hasil ini, kuersetin dari daun binahong berpotensi menjadi kandidat inhibitor alami ClfB yang dapat mengganggu proses kolonisasi S. aureus pada jaringan inang. Penelitian ini memberikan dasar ilmiah bagi pengembangan agen antibakteri berbasis bahan alam dalam upaya mengatasi resistensi antibiotik. Kata kunci: Staphylococcus aureus; ClfB; kuersetin; binahong; antibakteri. Abstrack Antibiotic resistance in Staphylococcus aureus, particularly Methicillin-Resistant Staphylococcus aureus (MRSA), poses a serious challenge to the treatment of bacterial infections worldwide. Clumping factor B (ClfB) is an important virulence protein of S. aureus that plays a crucial role in bacterial adhesion and biofilm formation on host tissues. Inhibition of this protein may reduce bacterial colonization and represents a promising target for novel antibacterial strategies. This study aimed to evaluate the potential of quercetin, an active compound derived from binahong leaves (Anredera cordifolia), as a natural inhibitor of the ClfB protein using an in silico approach. The three-dimensional structure of ClfB was obtained from the Protein Data Bank, while the molecular structure of quercetin was retrieved from the PubChem database. Molecular docking was performed using SwissDock, and the interaction analysis and visualization were conducted using UCSF Chimera. The docking results showed that quercetin exhibited a strong binding affinity toward the active site of ClfB, with a binding energy of −7.584 kcal/mol, indicating favorable thermodynamic stability of the ligand–protein complex. Several polar amino acid residues, including serine, glutamate, and aspartate, as well as nonpolar residues such as leucine and valine, were involved in stabilizing the interaction. Structural visualization confirmed that quercetin occupies the active pocket of ClfB, suggesting its ability to interfere with bacterial adhesion mechanisms. Overall, quercetin from binahong leaves demonstrates potential as a natural ClfB inhibitor and provides a scientific basis for the development of alternative antibacterial agents to address antibiotic resistance in Staphylococcus aureus and support future antimicrobial research. Keywords: Staphylococcus aureus; ClfB; quercetin; binahong; antibacterial.