Nisriyati Fiddina
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Aktivitas Antibakteri Ekstrak Metanol Bunga Teratai (Nymphaea pubescens Willd) Amalia Khairunnisa; Nashrul Wathan; Mia Fitriana; Fadlilaturrahmah Fadlilaturrahmah; Nisriyati Fiddina
Jurnal Pharmascience Vol 7, No 2 (2020): Jurnal Pharmascience
Publisher : Program Studi Farmasi FMIPA Universitas Lambung Mangkurat

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20527/jps.v7i2.8486

Abstract

Nymphaea pubescens Willd telah diketahui mempunyai efek antibakteri, terutama pada biji dan daunnya. Tetapi sampai saat ini bagian bunga dari tanaman tersebut belum dilakukan pengujian aktivitas antibakteri. Tujuan dari penelitian ini untuk melakukan skrining fitokimia, uji aktivitas antibakteri dan penentuan konsentrasi hambat minimum (KHM) dari ekstrak metanol bunga N. pubescens terhadap S. aureus dan E. coli. Proses ekstraksi bunga N. pubescens dimaserasi menggunakan pelarut metanol dengan perbandingan 1: 4 b/v. Metode pengujian yang digunakan ada dua yaitu metode difusi untuk pengujian aktivitas antibakteri dan metode dilusi untuk pengukuran konsentrasi hambat minimum (KHM). Hasil skrining fitokimia didapatkan bahwa ekstrak metanol bunga N. pubescens mengandung senyawa golongan fenolik, saponin dan flavonoid. Hasil pengujian aktivitas antibakteri menunjukkan bahwa ekstrak metanol bunga N.pubescens mampu menghambat S. aureus (diameter hambat 10 ± 0,29 mm) dan E.coli (diameter hambat 10,2 ± 0,50 mm). Konsentrasi hambat minimum dari ekstrak metanol bunga N. pubescens terhadap S.aureus sebesar 12,5% dan terhadap E.coli sebesar 25%. Dapat disimpulkan bahwa ekstrak metanol bunga N. pubescens memiliki aktivitas sebagai antibakteri. Nymphaea pubescens Willd has known to have antibacterial effects, especially on the seeds and leaves. However, until now the flower of the plant has not been tested for antibacterial activity. The purpose of this study was to perform phytochemical screening, antibacterial activity test and determine the minimum inhibitory concentration (MIC) of the methanol extract of N. pubescens flowers against S. aureus and E. coli. The process of extracting N. pubescens flowers is macerated using methanol as a solvent with a ratio of 1: 4 w / v. There are two test methods used, namely the diffusion method for testing antibacterial activity and the dilution method for measuring the minimum inhibitory concentration (MIC). The results of phytochemical screening showed that the methanol extract of N. pubescens flowers contained phenolic compounds, saponins, and flavonoids. The results of the antibacterial activity test showed that the methanol extract of N.pubescens flowers was able to inhibit S. aureus (inhibition diameter 10 ± 0.29 mm) and E. coli (inhibitory diameter 10.2 ± 0.50 mm). The minimum inhibitory concentration of the methanol extract of N. pubescens flowers against S.aureus was 12.5% and against E. coli was 25%. It can be concluded that the methanol extract of N. pubescens flowers has antibacterial activityKeywords: Nymphaea pubescens, lotus flower, methanol extract, antibacterial
Peran Bedaquiline dan Penggunaannya pada Tuberkulosis Resisten Obat : Sebuah Kajian Naratif Fiddina, Nisriyati; Yulistiani, Yulistiani
Jurnal Ilmu Farmasi dan Farmasi Klinik Vol 20, No 2 (2023)
Publisher : Universitas Wahid Hasyim Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31942/jiffk.v20i2.8505

Abstract

Tuberculosis, caused by infection with Mycobacterium tuberculosis, is still a global concern. The existence of resistance to the first line of anti-TB, namely isoniazid and rifampicin, is an urgent need for the development of new drugs that are effective and safe against tuberculosis. Bedaquiline has received approval from the FDA as a new anti-TB drug discovered to treat drug-resistant tuberculosis. This article aims to review the role of bedaquiline in the treatment of drug-resistant tuberculosis mechanisms, evidence, effectiveness, and adverse events. This narrative review uses a literature study approach by identifying various literature and research articles through databases as relevant references. Bedaquililine belongs to the diarylquinoline class inhibits ATP-synthase activity and suppresses the growth of active and dormant mycobacteria. Various clinical trials conducted previously have evaluated the use of bedaquiline-based regimens for the treatment of adults with drug-resistant tuberculosis. Bedaquiline-based regimens showed efficacy and were generally well tolerated in numerous studies. Currently, further evaluation is needed regarding its efficacy, safety, and tolerability in drug-resistant tuberculosis patients in Indonesia.