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11 pages, 3083 KB  
Article
Establishment of a Stable Anopheles melas Laboratory Colony for the First Time and Characterization of Its Pyrethroid Resistance Profile in Senegal
by Mohamed Abderemane Nourdine, Pape Cheikh Sarr, Abdoulaye Niang, Assane Ndiaye, Lina Ibrahim Abdallah, Idrissa Yèro Sarr, Lassana Konaté, Ousmane Faye, Oumar Gaye, Ellen M. Dotson, El Hadji Amadou Niang and Ousmane Sy
Insects 2026, 17(8), 763; https://doi.org/10.3390/insects17080763 - 25 Jul 2026
Viewed by 588
Abstract
In Senegal, scaling up vector control has significantly reduced malaria, but coastal transmission remains a challenge due to secondary vectors like Anopheles melas. This exophilic and zoophilic species evades conventional indoor interventions, yet its bionomics and insecticide resistance profiles remain poorly characterized [...] Read more.
In Senegal, scaling up vector control has significantly reduced malaria, but coastal transmission remains a challenge due to secondary vectors like Anopheles melas. This exophilic and zoophilic species evades conventional indoor interventions, yet its bionomics and insecticide resistance profiles remain poorly characterized due to difficulties in laboratory colonization. Anopheles melas larvae were collected from brackish breeding sites in Mbine Coly (Mbour District). A laboratory colony was established from 26 PCR-confirmed founder females and stabilized up to the F17 generation by optimizing water salinity (10 g/L) and transitioning to communal oviposition. Standardized WHO tube bioassays were conducted on generations F2 to F9 to evaluate susceptibility to pyrethroids, organophosphates, and carbamates, alongside synergist tests using 4% piperonyl butoxide (PBO). The colony showed confirmed resistance to alpha-cypermethrin (81.7% mortality) and suspected resistance to deltamethrin (91.3%) and permethrin (94.3%). Pre-exposure to PBO fully restored susceptibility to deltamethrin and permethrin (100%), and significantly increased alpha-cypermethrin mortality to 96.3% (p < 0.001). While metabolic resistance typically involves multiple enzyme families including cytochrome P450s, glutathione S-transferases (GSTs), and esterases, these synergist results demonstrate a predominant role of cytochrome P450-mediated detoxification pathways in this population. Moderate-intensity resistance was confirmed for alpha-cypermethrin at 5× diagnostic doses. Conversely, the population was 100% susceptible to pirimiphos-methyl and bendiocarb. This study reports the successful long-term colonization of a wild An. melas strain for the first time and provides the first comprehensive evidence of multi-insecticide resistance in this population. The presence of high-intensity, metabolic pyrethroid resistance strongly justifies the immediate deployment of next-generation PBO-LLINs and the integration of organophosphates or carbamates in indoor residual spraying rotations to manage resistance in coastal Senegal. Full article
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16 pages, 1154 KB  
Article
RNAi-Mediated Knockdown of the Sodium Channel Auxiliary Subunit TipE Increases Pyrethroid-Associated Mortality and Reveals Metabolic Transcriptional Responses in Megalurothrips usitatus
by Likui Wang, Siqing Zhang, Linlin Yuan, Weiwei Wu, Huihui Wu, Zhengke Peng, Pei Liang, Kun Zhang and Shaoying Wu
Genes 2026, 17(8), 854; https://doi.org/10.3390/genes17080854 - 24 Jul 2026
Viewed by 333
Abstract
Background: The bean flower thrips, Megalurothrips usitatus, is a destructive agricultural pest with increasing resistance to pyrethroid insecticides. Most mechanistic studies emphasize mutations in the pore-forming voltage-gated sodium channels α-subunit, whereas the contribution of insect-specific sodium-channel auxiliary subunits remains unclear. Methods [...] Read more.
Background: The bean flower thrips, Megalurothrips usitatus, is a destructive agricultural pest with increasing resistance to pyrethroid insecticides. Most mechanistic studies emphasize mutations in the pore-forming voltage-gated sodium channels α-subunit, whereas the contribution of insect-specific sodium-channel auxiliary subunits remains unclear. Methods: We used dsRNA feeding, pyrethroid bioassays, RNA sequencing, and RT-qPCR validation to evaluate the role of temperature-induced paralytic E (TipE) in M. usitatus. Results: The optimized RNAi condition was 400 μg/mL of dsTipE for 48 h, which reduced TipE expression by 32.55%. TipE knockdown increased adult mortality after exposure to λ-cyhalothrin and permethrin, indicating increased pyrethroid-associated susceptibility under laboratory conditions. Transcriptome sequencing identified 205 differentially expressed genes, with enrichment in metabolism-related pathways. RT-qPCR confirmed reduced expression of CYP307a1, an ecdysteroid-biosynthesis-related P450 gene, and SCD, a lipid-metabolism gene, while Nav α-subunit transcript abundance did not change significantly. Conclusions: These results identify TipE as an auxiliary-subunit factor associated with pyrethroid susceptibility in M. usitatus and provide a transcriptome-based working model linking sodium-channel auxiliary regulation with endocrine- and lipid-metabolism-related responses. This study expands the candidate space for pyrethroid resistance research beyond Nav α-subunit mutations, although the causal roles of CYP307a1 and SCD require further validation. Full article
(This article belongs to the Special Issue Genetic and Molecular Mechanisms of Insect Resistance)
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12 pages, 1403 KB  
Article
Acaricidal Activity of Liquid Culture Filtrates from Nematophagous Fungi Against Rhipicephalus microplus Ticks
by Oscar Guadalupe Barrón-Bravo, Pedro Mendoza-de Gives, César Andrés Ángel-Sahagún, Ricardo Avilés-Ruiz, Rubén D. Garza-Cedillo, José L. Arispe-Vázquez, Juan Patishtan-Pérez and Gustavo Pérez-Anzúrez
Pathogens 2026, 15(7), 772; https://doi.org/10.3390/pathogens15070772 - 22 Jul 2026
Viewed by 419
Abstract
Rhipicephalus microplus ticks harm cattle health and productivity. Frequent use of ixodicides can result in resistant tick populations and environmental contamination, as residues enter soil. Nematophagous (NF) and entomopathogenic fungi (EF) are natural enemies of nematodes and insect pests. This study tested the [...] Read more.
Rhipicephalus microplus ticks harm cattle health and productivity. Frequent use of ixodicides can result in resistant tick populations and environmental contamination, as residues enter soil. Nematophagous (NF) and entomopathogenic fungi (EF) are natural enemies of nematodes and insect pests. This study tested the in vitro lethal effects of liquid culture filtrates (LCFs) from selected NF on R. microplus. Fungi were grown in Czapek-Dox broth for 30 days at room temperature to obtain LCFs, which were tested using the immersion method. Experimental groups included: (1) Arthrobotrys musiformis, (2) Purpureocillium lilacinum, (3) Flavocillium subprimulinum, (4) Lecanicillium psalliotae, (5) ixodicide mixture (permethrin and chlorpyrifos), (6) negative control (water), and (7) negative control (Czapek-Dox broth). Differences in tick mortality among filtrate treatments starting on day 10 were observed. Filtrates from L. psalliotae and A. musiformis caused the highest mortality, with A. musiformis reaching 40% and L. psalliotae 33.3% on days 14, 16, and 18 (p < 0.01). We anticipated that combining ixodicides would lead to substantial tick mortality; however, the ixodicidal compounds (chlorpyrifos and permethrin) resulted in 33.3% mortality by day 18, which was similar to that observed for L. psalliotae during the same period. Filtrates from P. lilacinum and F. subprimulinum had no effect. The ixodicide treatment led to a significant reduction in oviposition, averaging 69.8% (p < 0.05). LCFs of selected NF could be used against either nematodes or R. microplus ticks. Full article
(This article belongs to the Section Parasitic Pathogens)
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18 pages, 797 KB  
Article
Evaluation of Insecticide Resistance in Aedes albopictus Population from Algiers, Algeria
by Rym Bouledroua, Amira Nebbak, Nicolas Gomez, Zakaria Abdellahoum, Mustapha Mounir Bouhenna, Slimane Boukraa, Khaldoun Bachari, Philippe Parola, Sébastien Briolant and Lionel Almeras
Insects 2026, 17(7), 696; https://doi.org/10.3390/insects17070696 - 4 Jul 2026
Viewed by 625
Abstract
Since its first detection in 2010, Aedes albopictus has spread across northern Algeria, where vector control relies on the use of chemical insecticides. This study aimed to evaluate the susceptibility of Ae. albopictus populations from Algiers to commonly used larvicides and adulticides, as [...] Read more.
Since its first detection in 2010, Aedes albopictus has spread across northern Algeria, where vector control relies on the use of chemical insecticides. This study aimed to evaluate the susceptibility of Ae. albopictus populations from Algiers to commonly used larvicides and adulticides, as well as to characterize the underlying resistance mechanisms. Eggs were collected from three sites in Algiers. The susceptibility of larvae to temephos and Bacillus thuringiensis israelensis (Bti), as well as that of adults to permethrin, deltamethrin, malathion, and bendiocarb was evaluated using WHO bioassays. Genotyping of knockdown resistance (kdr) mutations was performed via PCR and sequencing. Metabolic resistance mechanisms were investigated using CDC bottle bioassays. The larvae were found to be susceptible to temephos and Bti. Bioassays on adults demonstrated susceptibility to deltamethrin, suspected resistance to permethrin, and resistance to malathion and bendiocarb. Genotyping revealed low frequencies of heterozygous kdr mutations (V1016G, I1532T, F1534C/S). Synergist assays highlighted the key role of esterases in malathion resistance, a minimal involvement of glutathione S-transferases and an unexpected antagonistic effect of cytochrome P450 monooxygenases. Although larvicides remain effective, resistance to organophosphates, carbamates, as well as suspected resistance to permethrin, has been detected. Esterase-mediated metabolic resistance and kdr mutations may contribute to this profile. These findings highlight the need for resistance monitoring and integrated vector control to ensure sustainable control of Ae. albopictus. Full article
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12 pages, 1023 KB  
Article
Evaluating the Usability, Durability, and Effectiveness of Permethrin-Treated Uniforms and Metofluthrin Spatial Repellent in Preventing Mosquito Bites in the Laos Military
by Parat Boonyarangka, Pheutsapha Sonthilath, Sidhartha Chaudhury, Virasack Banouvong, Worachet Kuntawunginn, Siriporn Sornsakrin, Bounor Taobouathong, Thavone Sinhthapaseuth, Utaiwan Srichairatanakul, Montri Arsanok, Chanthalone Khamkong, Latsamee Lattavong, Raweewan Srisawat, Tharinee Saleepochn, Witcha Imaram, Alyssa Mann, Erica J. Lindroth, Bouasy Hongvanthong, James Jones and Krisada Jongsakul
Trop. Med. Infect. Dis. 2026, 11(5), 142; https://doi.org/10.3390/tropicalmed11050142 - 19 May 2026
Viewed by 912
Abstract
While vector control methods have successfully reduced malaria rates worldwide, such methods are not always suitable for military use. We evaluated the usability, durability, and effectiveness of permethrin-treated uniforms and metofluthrin spatial repellent in preventing mosquito bites among soldiers in the Laos People’s [...] Read more.
While vector control methods have successfully reduced malaria rates worldwide, such methods are not always suitable for military use. We evaluated the usability, durability, and effectiveness of permethrin-treated uniforms and metofluthrin spatial repellent in preventing mosquito bites among soldiers in the Laos People’s Army that were deployed on a 12-week field exercise. The study enrolled 173 subjects into four different groups: (1) metofluthrin-only, (2) permethrin-treated uniforms, (3) metofluthrin with permethrin-treated uniforms, and (4) a control group. We measured efficacy through self-reported survey responses and a serological test for antibodies to Anopheles salivary antigens and assessed the durability of permethrin treatment over the 12-week exercise. We found that soldiers given metofluthrin and permethrin-treated uniforms were 72% and 46% more likely to report decreased mosquito bites compared to those in the control group and that soldiers with permethrin-treated uniforms had significantly lower (p < 0.05) antibody levels to the Anopheles SG6 salivary antigen. Mass spectrometry analysis revealed that treated uniforms still contained a significant permethrin concentration that showed 50 to 100% mosquito mortality. Overall, our findings show that both metofluthrin and permethrin-treated uniforms were well-tolerated and led to significantly fewer reported mosquito bites, and that permethrin, in particular, was found to be durable throughout the 12-week field exercise and effective in reducing mosquito bite exposure, underscoring its value in military applications. Full article
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20 pages, 651 KB  
Review
A Serotoninomic Framework for Reproductive and Integrative Toxicology: Molecular, Neurochemical, and Behavioural Perspectives on Permethrin Exposure
by Francisco Jiménez-Trejo, Liliana Carmona-Aparicio, Elvia Coballase-Urrutia, Katia L. Jiménez-García, Cristian Arriaga-Canon and Luis A. Herrera
Toxics 2026, 14(5), 365; https://doi.org/10.3390/toxics14050365 - 24 Apr 2026
Viewed by 1639
Abstract
Serotoninomics, a nascent emerging discipline within the field of omics, provides a transdisciplinary framework for understanding reproductive toxicology via serotonergic signalling. This research investigates the neuroendocrine effects of permethrin, a commonly used pyrethroid insecticide often considered to pose a low risk to humans, [...] Read more.
Serotoninomics, a nascent emerging discipline within the field of omics, provides a transdisciplinary framework for understanding reproductive toxicology via serotonergic signalling. This research investigates the neuroendocrine effects of permethrin, a commonly used pyrethroid insecticide often considered to pose a low risk to humans, and positions it as a model compound for evaluating reproductive susceptibility beyond conventional endocrine endpoints. It is hypothesized that serotonin, traditionally examined in neuropsychiatric contexts, plays an essential role in gonadal function, hormonal regulation, and emotional resilience. Although permethrins are generally regarded as safe, acute exposure may subtly interfere with serotonergic pathways, potentially resulting in molecular, biochemical, behavioural, and reproductive alterations. These effects could extend beyond immediate exposure, including during gestation, considering permethrins’ ability to cross the placental barrier and influence foetal development. By synthesizing evidence across molecular, organismal, and environmental domains, we advocate for a serotonergic approach to facilitate a more comprehensive assessment of risk and resilience. We emphasize the importance of fostering a transdisciplinary dialogue to redefine reproductive health through the perspectives of serotonergic vulnerability and systemic resilience. Full article
(This article belongs to the Special Issue Neuronal Injury and Disease Induced by Environmental Toxicants)
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17 pages, 2186 KB  
Article
Preliminary Results on the Efficacy of Gel Microencapsulated Acaricides in the Control of Tick Infestations in Dairy Cows and Their Impact on Milk Yield
by Anna K. Kucharska, Stanisław Kościelny, Jerzy Kowal, Stanisław Łapiński, Anna Wyrobisz-Papiewska, Michał Patrzałek and Marcin W. Lis
Animals 2026, 16(7), 1075; https://doi.org/10.3390/ani16071075 - 1 Apr 2026
Cited by 1 | Viewed by 664
Abstract
The castor bean tick (Ixodes ricinus) is a widespread European ectoparasite and vector of multiple diseases that can impair cattle health and productivity. This study evaluated whether a single application of a gel microencapsulated acaricide (α-cypermethrin and permethrin) reduces I. ricinus [...] Read more.
The castor bean tick (Ixodes ricinus) is a widespread European ectoparasite and vector of multiple diseases that can impair cattle health and productivity. This study evaluated whether a single application of a gel microencapsulated acaricide (α-cypermethrin and permethrin) reduces I. ricinus infestation in dairy cows and affects milk yield. Twenty cows were allocated to treated and control groups; treated animals received one spray at the start of the grazing season, and tick counts were recorded daily for 196 days with monthly milk-yield measurements. Two activity peaks were observed (June and September–October) with reduced abundance in July–August; all control cows were parasitised, with daily counts of 1–18 ticks (median = 2). During the first month after treatment, the acaricide reduced tick numbers by around 80% versus controls (p < 0.001); efficacy declined over the ensuing months, and differences were negligible after about five months. No adverse effect on milk yield was detected (p = 0.38), and seasonal variation (p < 0.0001) and lactation stage (p < 0.001) were the primary determinants of production. Primiparous and young cows, as well as cows in mid-to-late lactation, tended to show higher levels of tick infestation. A single application of the gel microencapsulated product provided a significant reduction in tick burden during the first month after treatment in grazing dairy cows, without a negative impact on milk production, supporting its use in endemic areas. Full article
(This article belongs to the Section Veterinary Clinical Studies)
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14 pages, 274 KB  
Opinion
Magistral Galenic Preparations in Modern Dermatology: Our Top 10 Picks for Bridging Therapeutic Gaps
by Edoardo Cammarata, Elia Esposto, Laura Cristina Gironi, Elisa Zavattaro and Paola Savoia
Medicina 2026, 62(3), 559; https://doi.org/10.3390/medicina62030559 - 17 Mar 2026
Viewed by 1486
Abstract
Background/Objectives: Topical treatment efficacy is fundamentally dependent on effective delivery of the active pharmaceutical ingredient and its compatibility with the compromised skin barrier. Many commercially available industrial formulations contain poorly tolerated excipients or lack essential therapeutic combinations, frequently leading to complex polypharmacy and [...] Read more.
Background/Objectives: Topical treatment efficacy is fundamentally dependent on effective delivery of the active pharmaceutical ingredient and its compatibility with the compromised skin barrier. Many commercially available industrial formulations contain poorly tolerated excipients or lack essential therapeutic combinations, frequently leading to complex polypharmacy and reduced patient adherence. In contrast, magistral galenic preparations offer a degree of therapeutic personalization unmatched by standardized products, positioning the compounding laboratory as a strategic resource in dermatological care. This analysis aims to identify and evaluate ten indispensable magistral formulations selected based on their high clinical frequency and the absence of equivalent, globally available commercial alternatives. Materials and Methods: Each formulation was according to four strategic pillars: (i) dosage customization, (ii) excipient modification (removing allergens like parabens or fragrances), (iii) synergistic ingredient association, and (iv) vehicle optimization. The dermatological conditions addressed include pediatric scabies, melasma, hidradenitis suppurativa, and autoimmune mucosal diseases. Key selections include Kligman’s formula for hyperpigmentation and personalized trichological preparations. Results: The identified “top 10” magistral formulation reveals significant gaps within the standardized pharmaceutical market. In pediatric scabies (specifically patients < 15 kg), benzyl benzoate and precipitated sulfur demonstrate superior efficacy over permethrin, addressing emerging resistance patterns. For acute inflammatory dermatoses, Hoffmann Paste and Lime Liniment provide effective protective barriers while neutralizing local acidity. Antiseptic and astringent solutions, including Burow’s and Silver Nitrate (AgNO3) offer targeted mechanisms and biocidal activity, often absent in standardized topicals. Furthermore, specialized adhesive oral pastes for autoimmune conditions minimizing systemic absorption and associated risks. Conclusions: Magistral compounding represents a cornerstone of precision medicine in dermatology enabling tailored therapies that bridge critical gaps left by standardized formulations, particularly in complex cases and vulnerable populations. Full article
(This article belongs to the Section Dermatology)
14 pages, 1968 KB  
Article
Updated Adulticide Susceptibility Status of Florida Populations of Aedes aegypti (Linnaeus, 1762)
by Casey Parker-Crockett, Ana L. Romero-Weaver, Edwin R. Burgess, Troy J. Fedirko, Sierra M. Schluep, Leigh Ketelsen, Chelsea Dorsainvil, Natalie L. Kendziorski, Kyle J. Kosinski, Shelley A. Whitehead, Raquel Lima de Souza, Daviela Ramirez, Saul Lozano and Eva A. Buckner
Pathogens 2026, 15(3), 251; https://doi.org/10.3390/pathogens15030251 - 27 Feb 2026
Viewed by 1151
Abstract
Insecticide resistance in Aedes aegypti (Linnaeus, 1762) poses a major challenge for vector control programs, undermining the effectiveness of chemical tools to mitigate both nuisance biting and the transmission of vector-borne diseases. Previous studies have documented widespread resistance to multiple adulticide active ingredients [...] Read more.
Insecticide resistance in Aedes aegypti (Linnaeus, 1762) poses a major challenge for vector control programs, undermining the effectiveness of chemical tools to mitigate both nuisance biting and the transmission of vector-borne diseases. Previous studies have documented widespread resistance to multiple adulticide active ingredients across Florida, particularly pyrethroids, along with high prevalence of knockdown resistance (kdr) mutations. Continued resistance monitoring is essential for guiding treatment decisions and detecting shifts in susceptibility over time. In collaboration with mosquito control programs across Florida, we assessed the susceptibility of 78 Ae. aegypti populations to up to six active ingredients, conducting 396 independent CDC bottle bioassays and calculating hazard ratios relative to a susceptible Ae. aegypti strain. For pyrethroids, 24 h post-exposure mortality was used to evaluate phenotypic recovery from knockdown. Hazard ratios revealed Ae. aegypti populations were more susceptible to organophosphate adulticide active ingredients, while the lowest hazard ratios, indicating higher resistance, were observed for sumithrin, deltamethrin, etofenprox, and permethrin, respectively. Evidence of knockdown resistance and recovery after 24 h was present across all pyrethroid exposures, with the highest levels following treatment with etofenprox and sumithrin. These findings confirm that pyrethroid resistance remains a significant barrier to Ae. aegypti control and provide updated, operationally relevant resistance data that can complement existing guidance and support evidence-based vector management strategies. Full article
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13 pages, 901 KB  
Article
Effects of Pharmacological and Agrochemical Endocrine Disruptors on Human Sperm Mitochondrial Respiration: Evidence from Ex Vivo Bioenergetic Profiling
by Graziana Assalve, Paola Lunetti, Vincenzo Zara and Alessandra Ferramosca
J. Xenobiotics 2026, 16(1), 31; https://doi.org/10.3390/jox16010031 - 9 Feb 2026
Viewed by 709
Abstract
Background: Human exposure to endocrine-disrupting chemicals (EDCs) is increasingly linked to male reproductive dysfunction, but underlying mechanisms remain unclear. This study aimed to evaluate how selected pharmacological (dihydroxyflutamide, 2OH-FTA; bicalutamide, BIC) and agrochemical (lindane, βHCH; permethrin, PERM; mancozeb, MNZ; tributyltin oxide, TBTO) EDCs [...] Read more.
Background: Human exposure to endocrine-disrupting chemicals (EDCs) is increasingly linked to male reproductive dysfunction, but underlying mechanisms remain unclear. This study aimed to evaluate how selected pharmacological (dihydroxyflutamide, 2OH-FTA; bicalutamide, BIC) and agrochemical (lindane, βHCH; permethrin, PERM; mancozeb, MNZ; tributyltin oxide, TBTO) EDCs affect mitochondrial function in human spermatozoa with parameters within World Health Organization (WHO) reference ranges. Methods: Human sperm cells were exposed ex vivo to 0.1–1000 nM of each compound. Mitochondrial respiration was measured using polarography, assessing oxygen consumption in active (V3) and resting (V4) states, and the respiratory control ratio (RCR) was calculated as an index of mitochondrial coupling. Results: Both 2OH-FTA and BIC reduced RCR in a concentration-dependent manner, mainly due to increases in V4, with BIC showing the strongest effect. βHCH produced a similar pattern, elevating V4 and decreasing RCR. In contrast, PERM, MNZ, and TBTO caused near-complete collapse of both V3 and V4 even at sub-nanomolar concentrations, indicating severe, concentration-independent mitochondrial toxicity. Conclusions: Sperm mitochondria are highly sensitive to EDCs, and distinct compounds exert different bioenergetic effects. Mitochondrial respiration assays provide a useful tool for ex vivo toxicological screening and risk assessment. Full article
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16 pages, 1008 KB  
Article
Sublethal Pyriproxyfen Exposure Alters Anopheles arabiensis Fitness and Pyrethroid Susceptibility Without Trans-Generational Carry-Over
by Simoni Twaha Mnzava, Augustino Thabiti Mmbaga, Anitha Mutashobya, Letus Laurian Muyaga, Mwema Felix Mwema, Halfan Ngowo and Dickson Wilson Lwetoijera
Insects 2026, 17(2), 166; https://doi.org/10.3390/insects17020166 - 2 Feb 2026
Viewed by 1339
Abstract
Background: Pyriproxyfen (PPF), a juvenile hormone analog, is a promising chemical for autodissemination strategies, where mosquitoes aid in transferring insecticides to their breeding sites. This study evaluated the effects of sublethal PPF doses on Anopheles arabiensis fitness (fecundity, fertility, and body size) and [...] Read more.
Background: Pyriproxyfen (PPF), a juvenile hormone analog, is a promising chemical for autodissemination strategies, where mosquitoes aid in transferring insecticides to their breeding sites. This study evaluated the effects of sublethal PPF doses on Anopheles arabiensis fitness (fecundity, fertility, and body size) and pyrethroids susceptibility across three generations. Methods: Laboratory-reared, pyrethroid-resistant mosquito larvae were exposed once to sublethal PPF concentrations of (0.0003, 0.0006, 0.0008, and 0.001 mg a.i./L), which caused emergence inhibition rates of 5%, 10%, 15%, and 20%, respectively, alongside a control group. Emerged adults were tested for susceptibility to 0.75% permethrin, 3.75% permethrin, and 0.05% deltamethrin using WHO tube bioassays. Knockdown was recorded at 1 h, mortality at 24 h post-exposure, while fecundity, fertility, and body size were measured across three generations. Results: First-generation Anopheles arabiensis emerging from PPF-treated larvae showed reduced susceptibility to 0.75% permethrin and 0.05% deltamethrin compared to controls. Mortality from permethrin dropped from 22.7% in the controls to 11% and then 3% at 0.0003 and 0.001 mg a.i./L. For deltamethrin, mortality fell from 62.7% to 36% and then 23.3% at the same concentrations. Knockdown at 60 min was also significantly reduced, with permethrin KDT60 dropping from 41.3% in controls to 9.3% and 3.3%, and deltamethrin KDT60 from 79.7% to 66.7% and 65%. No significant differences were observed in subsequent generations (p > 0.05). PPF exposure also induced notable fitness costs in the first generation: mean wing length decreased from 3.07 mm in controls to 2.88–2.66 mm (6–13% reduction), mean egg production dropped from 30.1 to 13.9–18.8 eggs per female (37–54% reduction), and egg hatching rate declined from 87% to 79–82% (6–9% reduction). Conclusions: These findings suggest that sublethal PPF doses can temporarily enhance insecticide resistance without leading to heritable resistance and negatively impact key mosquito fitness traits. PPF may thus be a valuable addition to integrated vector management strategies. Full article
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28 pages, 7890 KB  
Article
Ectoparasite- and Vector-Borne-Related Dermatoses: A Single-Centre Study with Practical Diagnostic and Management Insights in a One Health Perspective
by Giovanni Paolino, Barbara Moroni, Antonio Podo Brunetti, Anna Cerullo, Carlo Mattozzi, Giovanni Gaiera, Manuela Cirami, Dino Zilio, Mario Valenti, Andrea Carugno, Giuseppe Esposito, Nicola Zerbinati, Carmen Cantisani, Franco Rongioletti, Santo Raffaele Mercuri and Matteo Riccardo Di Nicola
J. Clin. Med. 2026, 15(2), 851; https://doi.org/10.3390/jcm15020851 - 20 Jan 2026
Cited by 3 | Viewed by 1687
Abstract
Background: Parasitic skin-related conditions represent a frequent and evolving challenge in human dermatology, as they often mimic other dermatoses, and are increasingly complicated by therapeutic resistance. With this study, we aimed to provide a practical, clinician-oriented overview of our experience, contextualising it [...] Read more.
Background: Parasitic skin-related conditions represent a frequent and evolving challenge in human dermatology, as they often mimic other dermatoses, and are increasingly complicated by therapeutic resistance. With this study, we aimed to provide a practical, clinician-oriented overview of our experience, contextualising it within the current literature. Materials and Methods: We conducted a retrospective, single-centre observational study, reporting a case series of 88 patients diagnosed with parasitic or arthropod-related skin infestations at the San Raffaele Hospital Dermatology Unit (Milan) between 2019 and 2024, and integrated a concise narrative review of contemporary evidence on diagnosis, non-invasive imaging and management. For each case, we documented clinical presentation, dermoscopic or reflectance confocal microscopy (RCM) findings, and treatment response. Non-invasive tools (dermoscopy, videodermoscopy, RCM) were used when appropriate. Results: The spectrum of conditions included flea bites, bed bug bites, cutaneous larva migrans, subcutaneous dirofilariasis, Dermanyssus gallinae dermatitis, pediculosis, tick bites (including Lyme disease), myiasis, scabies, and cutaneous leishmaniasis. One case of eosinophilic dermatosis of haematologic malignancy was also considered due to its possible association with arthropod bites. Non-invasive imaging was critical in confirming suspected infestations, particularly in ambiguous cases or when invasive testing was not feasible. Several cases highlighted suspected therapeutic resistance: a paediatric pediculosis and three adult scabies cases required systemic therapy after standard regimens failed, raising concerns over putative resistance to permethrin and pyrethroids. In dirofilariasis, the persistence of filarial elements visualised by RCM justified the extension of antiparasitic therapy despite prior surgical removal. Conclusions: Our findings underline that accurate diagnosis, early intervention, and tailored treatment remain essential for the effective management of cutaneous infestations. The observed vast spectrum of isolated parasites reflects broader health and ecological dynamics, including zoonotic transmission, international mobility, and changing environmental conditions. At the same time, diagnostic delays, inappropriate treatments, and neglected parasitic diseases continue to pose significant risks. To address these challenges, clinicians should remain alert to atypical presentations, and consider a multidisciplinary approach including the consultation with parasitologists and veterinarians, as well as the incorporation of high-resolution imaging and alternative therapeutic strategies into their routine practice. Full article
(This article belongs to the Section Dermatology)
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25 pages, 792 KB  
Article
Guava Leaf Extract as a Sustainable Preservative Alternative in Semi-Solid Pharmaceuticals: Efficacy and Stability Assessment
by Hamada Imtara, Mohammad Atiya, Michel Hanania, Jehad Abbadi, Samer Mudalal and Fuad Al-Rimawi
Antibiotics 2025, 14(12), 1176; https://doi.org/10.3390/antibiotics14121176 - 21 Nov 2025
Cited by 1 | Viewed by 4507
Abstract
Background: Natural alternatives are becoming more popular as a result of health risks associated with synthetic preservatives in pharmaceuticals. Because of its antibacterial properties, Psidium guajava (L.) leaf extract is a practical choice for sustainable preservation. Objectives: The aim of this [...] Read more.
Background: Natural alternatives are becoming more popular as a result of health risks associated with synthetic preservatives in pharmaceuticals. Because of its antibacterial properties, Psidium guajava (L.) leaf extract is a practical choice for sustainable preservation. Objectives: The aim of this research is to evaluate the efficacy of Psidium guajava (L.) leaf extract as a 10% (w/w) natural preservative in five different base formulations: creams (clotrimazole cream, permethrin cream, and gentamicin cream) and gels (indomethacin emulgel and ibuprofen gel). Methods: Over the course of 28 days, antimicrobial activity against Pseudomonas aeruginosa, Staphylococcus aureus, Escherichia coli, Aspergillus brasiliensis, and Candida albicans was evaluated. In accordance with USP/BP guidelines, three months of accelerated conditions (40 ± 2 °C/75% ± 5% RH) were used to assess chemical, physical, and microbiological stability. The stability of the active component was examined using HPLC. Results: Our findings showed that the extract completely inhibited the growth of tested bacterial species in clotrimazole cream, permethrin cream, gentamicin cream, and indomethacin emulgel, demonstrating significant antibacterial activity across all formulations. However, the antifungal activity was restricted. The preservation effectiveness criterion (bacterial/yeast counts < 10 CFU, mold < 20 CFU) was only fulfilled by ibuprofen gel and clotrimazole cream. Although there were color changes, stability tests verified that the active components such as ibuprofen (reduced from 97.5% to 92%) and clotrimazole (reduced from 99.9% to 95%) decomposed minimally and had acceptable physical characteristics. Particularly against fungus, the extract was surpassed by chemical preservatives (methyl/propyl paraben). Conclusions: Certain semi-solid pharmaceuticals can benefit from the stability and antimicrobial protection provided by guava leaf extract, a natural preservative. The weak antifungal activity of the guava leaf extract emphasizes the necessity for specific improvements in the formulation. Full article
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12 pages, 977 KB  
Article
Molecular Surveillance of Pyrethroid Resistance Kdr Alleles T917I and L920F in Head and Body Lice from Nigeria
by Joshua Kamani, Shimon Harrus, Bukar Laminu, Yaarit Nachum-Biala, Mike Shand, Gonzalo Roca-Acevedo and Ariel Ceferino Toloza
Parasitologia 2025, 5(4), 57; https://doi.org/10.3390/parasitologia5040057 - 1 Nov 2025
Cited by 1 | Viewed by 1669
Abstract
Pediculosis produced by the presence of the human head louse (Pediculus humanus capitis DeGeer, 1767) and the body louse (Pediculus humanus humanus L., 1758) remains a neglected tropical disease in Nigeria, where permethrin-based pediculicides are widely used. However, the resistance status [...] Read more.
Pediculosis produced by the presence of the human head louse (Pediculus humanus capitis DeGeer, 1767) and the body louse (Pediculus humanus humanus L., 1758) remains a neglected tropical disease in Nigeria, where permethrin-based pediculicides are widely used. However, the resistance status of lice populations has not been previously assessed. Knockdown resistance (kdr) to pyrethroids is primarily driven by two mutations—T917I and L920F—in the voltage-sensitive sodium channel (VSSC) gene. This study investigated the presence of these mutations in 85 head and body lice collected from school-age children in two settlements in Nigeria. The T917I mutation was detected in head lice at frequencies ranging from 21% to 76%, and in body lice from 10% to 95%, with significant variation between sites and louse types. Remarkably, all lice examined carried the L920F mutation, regardless of T917I genotype, a pattern not previously reported in body lice. These findings suggest that pyrethroid resistance is well established or under active selection in the study populations. This is the first report of kdr mutations in human lice from Nigeria and highlights the urgent need for resistance monitoring programs. Early genetic surveillance of these mutations can inform treatment strategies and help prevent widespread resistance in lice populations, preserving the efficacy of available pediculicides. Full article
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16 pages, 1738 KB  
Article
Hematological and Biochemical Alterations Induced by Sub-Acute Administration of Permethrin in Rats
by Liliana Carmona-Aparicio, Elvia Coballase-Urrutia, Marisol Orozco-Ibarra, Norma Serrano-García, Silvia Caballero-Salazar, Maritza Ramírez-Pérez, Liliana Rivera-Espinosa, María E. Hernández, Hortencia Montesinos-Correa, Diana L. Pérez-Lozano and Daniel Diaz
J. Xenobiotics 2025, 15(6), 183; https://doi.org/10.3390/jox15060183 - 1 Nov 2025
Cited by 1 | Viewed by 1259
Abstract
Permethrin (PERM) is a synthetic pyrethroid insecticide initially regarded as low risk. However, evidence now indicates that misuse and prolonged exposure can damage multiple physiological systems by disrupting enzymatic functions in subcellular structures. In this study, male Wistar rats were administered PERM (75, [...] Read more.
Permethrin (PERM) is a synthetic pyrethroid insecticide initially regarded as low risk. However, evidence now indicates that misuse and prolonged exposure can damage multiple physiological systems by disrupting enzymatic functions in subcellular structures. In this study, male Wistar rats were administered PERM (75, 150, or 300 mg/kg/day) for 15 days to assess its effect on hematological and biochemical parameters, including oxidative stress markers in the liver, kidney, and heart. Subacute PERM administration induced significant, dose-dependent toxicological alterations in exposed animals. Hematological analysis revealed impaired hematopoiesis, characterized by increased erythrocytes and platelets alongside decreased hemoglobin, hematocrit, mean corpuscular volume, and red cell distribution width. Biochemical analysis revealed elevated liver enzymes and bilirubin, along with reduced albumin levels, indicating hepatic alterations associated with PERM. The assessment of oxidative stress revealed tissue-specific responses following PERM exposure. While GPx, CAT, and SOD levels remained unchanged, GR activity increased in the heart, and GST activity increased in the liver. Additionally, a substantial decrease in MDA was observed in both the liver and heart. These collective alterations found in PERM-subacute exposed rats suggest the potential for cellular damage with the possible development of chronic pathologies, warranting further investigation. Full article
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