Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice

Sambiloto (Andrographis paniculata) contains andrographolide compounds, which have anti-inflammatory properties. On the other hand, catfish oil (Pangasius micronema Blkr.) contains DHA and EPA compounds known to be unsaturated fatty acids and have antiinflammatory properties. Sambiloto extracts and...

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Main Authors: Rinanda Al Rissa Rizki Hera, Meitasari Annisa Diyan, Sasongko Heru
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/pdf/2025/05/bioconf_icgrc2025_03011.pdf
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author Rinanda Al Rissa Rizki Hera
Meitasari Annisa Diyan
Sasongko Heru
author_facet Rinanda Al Rissa Rizki Hera
Meitasari Annisa Diyan
Sasongko Heru
author_sort Rinanda Al Rissa Rizki Hera
collection DOAJ
description Sambiloto (Andrographis paniculata) contains andrographolide compounds, which have anti-inflammatory properties. On the other hand, catfish oil (Pangasius micronema Blkr.) contains DHA and EPA compounds known to be unsaturated fatty acids and have antiinflammatory properties. Sambiloto extracts and catfish oil will be combined to determine the pharmacological effects caused by an acute toxicity test to determine the toxicity and LD50 value of the combination of extracts. This research is conducted experimentally, utilizing mice as test animals. The extract was administered for 14 days, and symptoms of toxicity were observed, including the number of animals that died, body weight, and the weight of the liver, kidneys, and heart. The data was then tested using the Thompson-Weil method and statistical tests using the oneway ANOVA test and continued with the Tukey post hoc test. The toxicity test results indicated toxicity symptoms at the highest dose, but the combination of extracts’ LD50 value was pseudo-LD50, implying that test animals could theoretically still receive the highest dose value. The statistical analysis revealed no significant differences in the body and organ weight of the mice, indicating that this research could still use the combination of the two extracts up to the highest dose.
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institution Kabale University
issn 2117-4458
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publishDate 2025-01-01
publisher EDP Sciences
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series BIO Web of Conferences
spelling doaj-art-ee7354805a6d40c9afe6c908c13cf1fb2025-02-05T10:43:07ZengEDP SciencesBIO Web of Conferences2117-44582025-01-011540301110.1051/bioconf/202515403011bioconf_icgrc2025_03011Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in miceRinanda Al Rissa Rizki Hera0Meitasari Annisa Diyan1Sasongko Heru2Department of Pharmacy, Vocational School, Universitas Sebelas MaretDepartment of Pharmacy, Vocational School, Universitas Sebelas MaretDepartment of Pharmacy, Vocational School, Universitas Sebelas MaretSambiloto (Andrographis paniculata) contains andrographolide compounds, which have anti-inflammatory properties. On the other hand, catfish oil (Pangasius micronema Blkr.) contains DHA and EPA compounds known to be unsaturated fatty acids and have antiinflammatory properties. Sambiloto extracts and catfish oil will be combined to determine the pharmacological effects caused by an acute toxicity test to determine the toxicity and LD50 value of the combination of extracts. This research is conducted experimentally, utilizing mice as test animals. The extract was administered for 14 days, and symptoms of toxicity were observed, including the number of animals that died, body weight, and the weight of the liver, kidneys, and heart. The data was then tested using the Thompson-Weil method and statistical tests using the oneway ANOVA test and continued with the Tukey post hoc test. The toxicity test results indicated toxicity symptoms at the highest dose, but the combination of extracts’ LD50 value was pseudo-LD50, implying that test animals could theoretically still receive the highest dose value. The statistical analysis revealed no significant differences in the body and organ weight of the mice, indicating that this research could still use the combination of the two extracts up to the highest dose.https://www.bio-conferences.org/articles/bioconf/pdf/2025/05/bioconf_icgrc2025_03011.pdf
spellingShingle Rinanda Al Rissa Rizki Hera
Meitasari Annisa Diyan
Sasongko Heru
Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice
BIO Web of Conferences
title Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice
title_full Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice
title_fullStr Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice
title_full_unstemmed Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice
title_short Acute toxicity test and lethal dose (LD50) from a combination of sambiloto extracts (Andrographis paniculate) and catfish oil (Pangasius micronema Blkr.) in mice
title_sort acute toxicity test and lethal dose ld50 from a combination of sambiloto extracts andrographis paniculate and catfish oil pangasius micronema blkr in mice
url https://www.bio-conferences.org/articles/bioconf/pdf/2025/05/bioconf_icgrc2025_03011.pdf
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