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<title>School of Pure, Applied and Health Sciences</title>
<link>http://hdl.handle.net/123456789/6743</link>
<description/>
<pubDate>Thu, 13 Aug 2026 03:46:01 GMT</pubDate>
<dc:date>2026-08-13T03:46:01Z</dc:date>
<item>
<title>Sperm-disrupting activity of a root bark fraction of Flueggea virosa (Roxb. ex willd.) royle uncovered using LC-MS/MS profiling and functional evaluation</title>
<link>http://hdl.handle.net/123456789/19834</link>
<description>Sperm-disrupting activity of a root bark fraction of Flueggea virosa (Roxb. ex willd.) royle uncovered using LC-MS/MS profiling and functional evaluation
Kehongo M. Nyanguru, Caroline Maina, Mutiat Ibrahim, James Kuria, Ephantus Ndirangu, Sospeter Ngoci Njeru, Abdullahi Abdulraheem, Edwin Murungi, Moses Obimbo, Adeyemi O. Aremu, Aloys Mosima Osano, Samwel Cheruiyot, Margaret O. Ilomuanya, Peter Waweru Mwangi, Elizabeth Kigondu
Introduction: While Flueggea virosa (Roxb. Ex Willd.) Royle root bark is&#13;
traditionally used in several parts of East Africa for fertility regulation, its&#13;
contraceptive potential has not been systematically investigated. Given the&#13;
paucity of safe, reversible, non-hormonal contraceptives for women, this study&#13;
evaluated a root bark fraction for sperm-disrupting, intravaginal contraceptive&#13;
activity using functional assays and a rabbit proof-of-concept model.&#13;
Methods: Following extraction and fractionation of authenticated root bark, the&#13;
resulting extracts were evaluated for cytotoxicity in Vero cells and for disruption of&#13;
human sperm functions by ascertaining immobilization, revival, viability, cervical&#13;
mucus penetration and acrosin-related activity. Thereafter, chemical profiling of&#13;
the most active fraction was performed using liquid chromatography-tandem&#13;
mass spectrometry (LC-MS/MS) for descriptive annotation. Moreover, in vivo&#13;
contraceptive efficacy and short-term local safety (10 days) were determined&#13;
after intravaginal administration of the fraction in rabbits by histological&#13;
examination of cervicovaginal tissues.&#13;
Results: The methanolic fraction (KBLM) demonstrated the strongest activity,&#13;
completely immobilizing sperm, abolishing sperm revival after washing, markedly&#13;
reducing sperm viability, strongly inhibiting cervical mucus penetration and&#13;
suppressing acrosin-related activity at 1.62 mg/mL. In a rabbit proof-ofconcept experiment, a single intravaginal dose prevented pregnancy at all&#13;
tested concentrations (3.9, 7.8, and 15.6 mg/mL). Besides, repeated&#13;
OPEN ACCESS&#13;
EDITED BY&#13;
Maša Knez Marevci,&#13;
University of Maribor, Slovenia&#13;
REVIEWED BY&#13;
Tushar Dhanani,&#13;
Florida Agricultural and Mechanical&#13;
University, United States&#13;
Parasuraman S,&#13;
AIMST University, Malaysia&#13;
*CORRESPONDENCE&#13;
Kehongo M. Nyanguru,&#13;
kehongo@mmarau.ac.ke,&#13;
kehongomoses1995@gmail.com&#13;
Elizabeth Kigondu,&#13;
m_kigondu@yahoo.com,&#13;
ekigondu@kemri.go.ke&#13;
RECEIVED 20 March 2026&#13;
REVISED 11 June 2026&#13;
ACCEPTED 15 June 2026&#13;
PUBLISHED 01 July 2026&#13;
CITATION&#13;
Nyanguru KM, Maina C, Ibrahim M, Kuria J,&#13;
Ndirangu E, Njeru SN, Abdulraheem A,&#13;
Murungi E, Obimbo M, Aremu AO,&#13;
Osano AM, Cheruiyot S, Ilomuanya MO,&#13;
Mwangi PW and Kigondu E (2026) Spermdisrupting activity of a root bark fraction of&#13;
Flueggea virosa (Roxb. ex willd.) royle&#13;
uncovered using LC-MS/MS profiling and&#13;
functional evaluation.&#13;
Front. Pharmacol. 17:1835308.&#13;
doi: 10.3389/fphar.2026.1835308&#13;
COPYRIGHT&#13;
© 2026 Nyanguru, Maina, Ibrahim, Kuria,&#13;
Ndirangu, Njeru, Abdulraheem, Murungi,&#13;
Obimbo, Aremu, Osano, Cheruiyot,&#13;
Ilomuanya, Mwangi and Kigondu. This is&#13;
an open-access article distributed under&#13;
the terms of the Creative Commons&#13;
Attribution License (CC BY). The use,&#13;
distribution or reproduction in other&#13;
forums is permitted, provided the original&#13;
author(s) and the copyright owner(s) are&#13;
credited and that the original publication&#13;
in this journal is cited, in accordance with&#13;
accepted academic practice. No use,&#13;
distribution or reproduction is permitted&#13;
which does not comply with these terms.&#13;
Frontiers in Pharmacology 01 frontiersin.org&#13;
intravaginal exposure for 10 days revealed absent-to-mild cervicovaginal changes.&#13;
Chemical fingerprinting putatively annotated flavonoid-, tannin-, and phenolicrelated features, including catechin, quercetin derivatives, rutin, corilagin, and&#13;
kaempferol glycosides, as prominent features of KBLM.&#13;
Conclusion: Our findings have demonstrated the sperm disruption activity of the&#13;
methanolic fraction of F. virosa root bark. The observed disruption of multiple&#13;
sperm functions, observed efficacy in a rabbit model and absent-to-mild shortterm local tissue changes support additional preclinical investigations of the extract&#13;
geared towards further functional characterization, extended safety testing,&#13;
standardization, and potential formulation of an intravaginal contraceptive.
</description>
<pubDate>Wed, 01 Jul 2026 00:00:00 GMT</pubDate>
<guid isPermaLink="false">http://hdl.handle.net/123456789/19834</guid>
<dc:date>2026-07-01T00:00:00Z</dc:date>
</item>
<item>
<title>The IPBES invasion‑management framework supports informed decision‑making for managing biological invasions</title>
<link>http://hdl.handle.net/123456789/19832</link>
<description>The IPBES invasion‑management framework supports informed decision‑making for managing biological invasions
Chika Egawa, Sankaran K. V., Andy W. Sheppard, Evangelina Schwindt, Llewellyn C. Foxcroft, Sonia Vanderhoeven, Lora Peacock, Maria L. Castillo, Rafael D. Zenni, Jana Müllerová, Ana Isabel González Martínez, John K. Bukombe, Wyclife Wanzala,  Dongang C. Mangwa, Tom August, Helen E. Roy,  Aníbal Pauchard, Peter Stoett, Tanara Renard Truong
The Intergovernmental Science-Policy&#13;
Platform on Biodiversity and Ecosystem Services&#13;
(IPBES) Thematic Assessment Report on Invasive&#13;
Alien Species and Their Control presents a “conceptual diagram of management-invasion continuum”, introducing a versatile framework to support&#13;
decision-making on the management of biological&#13;
invasions. Drawing on an extensive synthesis of current knowledge, this IPBES invasion-management&#13;
framework has been developed to broaden the scope&#13;
of existing invasion curves—which primarily overlay&#13;
generic management objectives onto a sigmoid curve&#13;
depicting the expansion of the afected area over&#13;
time—and to illustrate the applicability of the concept of efective management at diferent stages of the&#13;
biological invasion process. To introduce the IPBES&#13;
invasion-management framework to a wider audience,&#13;
this paper explains the features of the framework&#13;
and defnes the invasion-stage-based management&#13;
approaches and the potential outcomes envisaged therein. Refecting the currently limited management&#13;
options for biological invasions in marine and other&#13;
connected-water systems, unlike in terrestrial and&#13;
closed-water systems, the IPBES invasion-management framework clearly distinguishes between these&#13;
two groups of systems. For each, it presents management approaches including three key factors that decision-makers should consider concurrently: management objectives, targets, and actions. This framework&#13;
supports informed decision-making in the management of biological invasions in all ecosystems.
</description>
<pubDate>Wed, 01 Apr 2026 00:00:00 GMT</pubDate>
<guid isPermaLink="false">http://hdl.handle.net/123456789/19832</guid>
<dc:date>2026-04-01T00:00:00Z</dc:date>
</item>
<item>
<title>Phytochemical profling, spectroscopic characterization, and acaricidal activity of Tephrosia vogelii leaf extract from Laikipia county, Kenya</title>
<link>http://hdl.handle.net/123456789/19831</link>
<description>Phytochemical profling, spectroscopic characterization, and acaricidal activity of Tephrosia vogelii leaf extract from Laikipia county, Kenya
John Wamumwe Mwangi, James Ndiritu,  Bakari Chaka
This study aimed to profle the phytochemical profling constituents, characterize the&#13;
functional groups spectroscopically, and evaluate the acaricidal activity of Tephrosia&#13;
vogelii leaf extract from Laikipia County, Kenya. Ultrasound assisted sequential extraction&#13;
using n-hexane, chloroform, and ethanol was employed to obtain crude leaf extracts,&#13;
followed by qualitative phytochemical screening, FTIR and GC–MS analysis, and AAS&#13;
based heavy metal quantifcation. The ethanol extract was further tested for acaricidal&#13;
activity against Rhipicephalus sanguineus using adult and larval immersion tests. Results&#13;
revealed a rich spectrum of bioactive compounds, including favonoids and rotenoids,&#13;
saponins, alkaloids, terpenoids, phenols, and glycosides, with deguelin and tephrosin&#13;
identifed as key acaricidal agents. FTIR and GC–MS showed characteristic peaks at&#13;
3446.79  cm⁻&#13;
1&#13;
 (O–H/N–H), 1743.65  cm⁻&#13;
1&#13;
 (C=O lactone), and 1535.34  cm⁻&#13;
1&#13;
 (aromatic&#13;
C=C), consistent with rotenoid and favonoid structures. AAS detected elevated levels of&#13;
heavy metals such as Fe, Mn, and Hg, exceeding WHO limits. Biologically, the ethanol&#13;
extract produced up to 99.74% larval mortality at 40–50 mg/mL (LC₅₀=8.58 mg/mL) and&#13;
strongly inhibited egg laying (20.03% at 40 mg/mL). The study concludes that Tephrosia&#13;
vogelii from Laikipia is a promising natural source of bioactive phytochemicals with potent&#13;
acaricidal activity against Rhipicephalus sanguineus (R. sanguineus). It is recommended&#13;
that future work focus on purifcation and fractionation of the ethanol extract to isolate key&#13;
rotenoids and favonoids and develop standardized, environmentally safe formulations for&#13;
tick control in livestock and integrated pest-management programs.
</description>
<pubDate>Fri, 01 May 2026 00:00:00 GMT</pubDate>
<guid isPermaLink="false">http://hdl.handle.net/123456789/19831</guid>
<dc:date>2026-05-01T00:00:00Z</dc:date>
</item>
<item>
<title>Forensic Authentication of Paracetamol Using FTIR and UV–Vis Spectroscopy Coupled with Similarity Metrics</title>
<link>http://hdl.handle.net/123456789/19830</link>
<description>Forensic Authentication of Paracetamol Using FTIR and UV–Vis Spectroscopy Coupled with Similarity Metrics
Kipronoh Theophilus Korir, Jared O. Gwaro, Duke Oeba
The global circulation of counterfeit and substandard medicines poses a serious threat to public&#13;
health and challenges forensic science in generating reliable evidence. Paracetamol, a widely used&#13;
analgesic and antipyretic, is among the most frequently falsified drugs in low- and middle-income&#13;
countries. This study employed Ultraviolet-Visible (UV-Vis) and Fourier Transform Infrared (FTIR)&#13;
spectrophotometry to authenticate paracetamol (PAR). The specific objectives were to examine active pharmaceutical ingredients, and to identify unknown components in paracetamol PAR1–&#13;
PAR4 samples were analyzed against a certified reference standard. FTIR spectra were obtained&#13;
using potassium bromide pelletization, while UV–Vis spectra were recorded by dissolving the&#13;
sample in methanol and phosphate buffer, followed by dilution with distilled water. The data&#13;
obtained were evaluated by Pearson correlation coefficients (r) and Euclidean distance (ED).&#13;
Results showed that PAR1 (r ≥ 0.99, ED = 0.051) and PAR3 (r = 0.9983, ED = 0.0389) matched&#13;
the standard and were classified as authentic. In contrast, PAR2 (r = 0.992, ED = 0.084) exhibited&#13;
a shifted amide band with reduced absorbance, while PAR4 (r = 0.991, ED = 0.089) showed&#13;
weakened O–H bands confirming suspect and counterfeit status, respectively. This work addresses&#13;
a key forensic gap by introducing quantitative, pharmacopeia-compliant thresholds for paracetamol&#13;
authentication. The novelty lies in combining FTIR and UV–Vis spectra with similarity metrics to&#13;
deliver objective and legally defensible authentication of paracetamol. The protocol strengthens&#13;
scientific reliability while offering a scalable, low-cost tool for surveillance and regulatory&#13;
enforcement in regions most affected by counterfeit medicines.
</description>
<pubDate>Wed, 01 Oct 2025 00:00:00 GMT</pubDate>
<guid isPermaLink="false">http://hdl.handle.net/123456789/19830</guid>
<dc:date>2025-10-01T00:00:00Z</dc:date>
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