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Extraction, Isolation, Characterization and Antioxidant Potential of Pure Compounds from Adonsonia digitata Leaf Extract Umaru, Hauwa A.; Umaru, Isaac John; Ahmed, Fasihuddin Badruddin
African Journal of Biochemistry and Molecular Biology Research Vol 1 No 1 (2024): African Journal of Biochemistry and Molecular Biology Research
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/ajbmbr.v1i1.3731

Abstract

Introduction: Adonsonia digitata L. (Malvaceae) commonly known as Baobab is a medicinal and nutritional plant. The plant parts are used to treat various ailments such as diarrhoea, malaria and microbial infections. It is reported that it is an excellent antioxidant due to its vitamin C content. Baobab has numerous biological properties including antimicrobial, antiviral, anti-oxidant and anti-inflammatory activities amongst others. Objective: The study involves extraction, Isolation, Characterisation of phytochemicals and eval_uation of antioxidant potential of the pure compounds. Methods: The dried leaf powder was subjected to rotary evaporator to obtain crude extract which was subjected to isolation using chromatography analysis and elucidation using NMR and FTIR. Antioxidant (IC50) potential was determined using 2,2-diphenyl-1- picryl-hydrazyl-hydrate (DPPH). Result: Phytochemical investigation of the Baobab leaf extract through isolation and characterization of a bioactive compound was observed. The leaf extract yielded three compounds characterised as D-Limonene, Thunbergol and (z)-2-Methyl-7-octadecene. Conclusion: The analysis of the chemical component reported identified compounds from Baobab leaf as; DLimonene; (1) Thunbergol (2) and Cis-2-Methyl-7-octadecene (3) with significant antioxidant potential. The chemical components were identified for the first times.
Extraction, Isolation, Characterization and Antioxidant Potential of Pure Compounds from Adonsonia digitata Leaf Extract Umaru, Hauwa A.; Umaru, Isaac John; Ahmed, Fasihuddin Badruddin
African Journal of Biochemistry and Molecular Biology Research Vol 1 No 1 (2024): African Journal of Biochemistry and Molecular Biology Research
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/ajbmbr.v1i1.3731

Abstract

Introduction: Adonsonia digitata L. (Malvaceae) commonly known as Baobab is a medicinal and nutritional plant. The plant parts are used to treat various ailments such as diarrhoea, malaria and microbial infections. It is reported that it is an excellent antioxidant due to its vitamin C content. Baobab has numerous biological properties including antimicrobial, antiviral, anti-oxidant and anti-inflammatory activities amongst others. Objective: The study involves extraction, Isolation, Characterisation of phytochemicals and eval_uation of antioxidant potential of the pure compounds. Methods: The dried leaf powder was subjected to rotary evaporator to obtain crude extract which was subjected to isolation using chromatography analysis and elucidation using NMR and FTIR. Antioxidant (IC50) potential was determined using 2,2-diphenyl-1- picryl-hydrazyl-hydrate (DPPH). Result: Phytochemical investigation of the Baobab leaf extract through isolation and characterization of a bioactive compound was observed. The leaf extract yielded three compounds characterised as D-Limonene, Thunbergol and (z)-2-Methyl-7-octadecene. Conclusion: The analysis of the chemical component reported identified compounds from Baobab leaf as; DLimonene; (1) Thunbergol (2) and Cis-2-Methyl-7-octadecene (3) with significant antioxidant potential. The chemical components were identified for the first times.
The Legalization of Abortion and Its Influence on Youth Sexual Behavior and the Catholic Church: A Case Study of Adamawa State Umaru, Isaac John; Akem, Ingwu Joseph; Asare, Solomon O.; Danjuma, Tyem Lawal; Yeboah, Genevieve A.; Salman, Julius Ishaya; Umaru, Hauwa A.; Ahmed, Maryam Usman
Kwaghe International Journal of Sciences and Technology Vol 3 No 1 (2026): Kwaghe International Journal of Sciences and Technology
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/kijst.v3i1.9401

Abstract

Although debates on abortion reform have intensified in Nigeria, limited attention has been paid to how partial legalization shapes youth perspectives and sexual and reproductive behaviors within specific sociocultural and religious contexts. This study examines how the limited legalization of abortion influences youth attitudes and behaviors in Adamawa State, with particular attention to demographic, cultural, and institutional factors, as well as the Catholic Church’s response to these changes. A qualitative approach was employed through interviews with health workers, clergy, and youths aged 18–25 from urban and rural areas of Adamawa State. Supplementary data were obtained from community forums, church outreach programs, and health service records, and the data were analyzed thematically to identify patterns in attitudes, behaviors, and institutional responses. The findings indicate a marked urban–rural divide, with urban youths reporting higher sexual activity, greater contraceptive use, and stronger support for reproductive autonomy. The study also found that the Catholic Church’s moral campaigns have had limited influence, particularly among urban youths who perceive religious teachings as less relevant to contemporary realities. In contrast, health workers were viewed as more trusted sources of guidance, while peers and media played a substantial role in shaping youth behavior. The study concludes that the evolving legal and cultural landscape in Adamawa State reflects a broader generational shift toward autonomy and informed decision-making among youths. These findings contribute to understanding the changing relationship between legal reform, religious influence, and youth reproductive behavior, and suggest that more balanced strategies integrating moral guidance, comprehensive education, and supportive policies are needed to promote healthy youth development in a changing society.
Impact of Distinct Carbon Substrates on the Proliferation of Antimicrobial-Producing Microbes Umaru, Isaac John; Danjuma, Tyem Lawal; Akem, Ingwu Joseph; Salman, Julius Ishaya; Ahmed, Maryam Usman; Umaru, Hauwa A.
Kwaghe International Journal of Sciences and Technology Vol 3 No 2 (2026): Kwaghe International Journal of Sciences and Technology
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/kijst.v3i2.9474

Abstract

Microbial production of antimicrobial compounds remains a fundamental area of biotechnology and pharmaceutical development, and its efficiency is strongly influenced by the carbon source available in the growth medium, which functions not only as an energy substrate but also as a regulator of microbial metabolism and secondary metabolite synthesis. This study aimed to evaluate the effects of five carbon sources—glucose, lactose, sucrose, starch, and glycerol—on microbial biomass yield, strain-specific growth preferences, metabolic compatibility, antimicrobial potency, inhibition zones, and bioactive metabolite production. Seven microbial strains, including Streptomyces, Bacillus, Pseudomonas, Actinomyces, and Clostridium, were cultured in media supplemented with each carbon source. Biomass yield was measured gravimetrically, growth rate indices were calculated on a scale of 0–10, antimicrobial potency was assessed using zone of inhibition assays against S. aureus, E. coli, P. aeruginosa, and K. pneumoniae, and metabolite yield was quantified in mg/L using spectrophotometric analysis. All experiments were conducted in triplicate. The findings showed that glucose produced the highest biomass yield and growth rates across all strains, with Bacillus and Pseudomonas each scoring 10. Lactose demonstrated selective effectiveness, particularly for Streptomyces, whereas sucrose supported moderate growth and selective antimicrobial activity. In contrast, starch and glycerol consistently resulted in low biomass production and minimal antimicrobial potency. The zone of inhibition results further confirmed that glucose and lactose were the most effective substrates, with inhibition zones exceeding 20 mm. Similarly, metabolite yield was highest with glucose (120 ± 5.4 mg/L) and lactose (115 ± 4.9 mg/L), while glycerol produced the lowest yield (30 ± 1.5 mg/L). The study concludes that carbon source selection plays a critical role in microbial proliferation and antimicrobial compound production, with glucose and lactose emerging as the most suitable substrates for broad-spectrum antimicrobial activity and high metabolite yield. These findings contribute practical evidence for optimizing fermentation strategies according to microbial metabolic profiles to enhance antimicrobial synthesis.