Introduction: Serious cardiac toxicity due to lithium toxicity is uncommon and generally only occurs in individuals with underlying heart disease. Cardiac impairment may result in dysrhythmias, including sinus bradycardia, sinoatrial block, and first-degree atrioventricular block. This paper describes a patient with complete AV block in the course of chronic lithium treatment.
Case Report: Fifty-seven year-old female was brought into the emergency department (ED) due to altered mental status and malaise by ambulance from hospice. She had hypertension, type-II diabetes mellitus, and depression. The caregivers told that she had been fine yesterday, had taken regular medications (lysinopril, furosemid, acetyl salicylic acid, oral antidiabetic tablets and lithium (300 mg tb/day)). Her vital signs were; blood pressure: 70/45 mmHg, pulse: 37 bpm, respiratory rate: 22 bpm, and oxygen saturation 86%. She was confused and unresponsive to verbal stimulation. Her EKG revealed total atrioventricular block. Initial biochemical results were unremarkable except for a lithium level of 2.2 mmol/l (therapeutic range 0.5-0.8 mmol/l) and an increased creatinine of 2.11 mg/dl. A transvenous pacing electrode was introduced into the right ventricle, which allowed rapid restoration of haemodynamic and neurological status. Her neurologic examination was completely normal in the follow-up period and she was discharged without sequelae.
Conclusion: In conclusion, emergency physicians should bear in mind that complete AV block can ensue in the course of lithium toxicity and it is an entity that should be included in the differential diagnosis.
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http://dx.doi.org/10.1016/j.ijcard.2007.08.058 | DOI Listing |
Nanotechnology
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Chemistry, University College London, 20 Gordon Street, London, WC1H 0AJ, UNITED KINGDOM OF GREAT BRITAIN AND NORTHERN IRELAND.
In the post-lithium-ion battery era, potassium-ion batteries (PIBs) have been considered as a promising candidate because of their electrochemical and economic characteristics. However, as an emerging electrochemical storage technology, it is urgent to develop capable anode materials that can be produced at low cost and on a large scale to promote its practical application. Biomass-derived carbon materials as anodes of PIBs exhibit strong competitiveness by their merits of low weight, high stability, non-toxicity, and wide availability.
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December 2024
Toxicology Area, University of La Laguna, Tenerife, Canary Islands, 38071 La Laguna, Spain.
Soybeans are a widely consumed legume, essential in Western diets and especially prominent in vegan and vegetarian nutrition. However, environmental contamination from anthropogenic sources, such as industrial emissions, wastewater, and pesticide use, has led to the accumulation of non-essential and toxic elements in legumes, potentially impacting human health. This study quantified the levels of 11 potential toxic elements (Al, B, Ba, Cd, Co, Cr, Li, Ni, Pb, Sr, V) in 90 samples of four soybean species (, , , ) using inductively coupled plasma optical emission spectrometry (ICP-OES).
View Article and Find Full Text PDFCells
December 2024
Department of Cancer and Genomic Sciences, College of Medicine and Health, University of Birmingham, Birmingham B15 2TT, UK.
Photon (X-ray) radiotherapy is the most common treatment used in cancer therapy. However, the exposure of normal tissues and organs at risk to ionising radiation often results in a significant incidence of low-grade adverse side effects, whilst high-grade toxicities also occur at concerningly high rates. As an alternative, boron neutron capture therapy (BNCT) aims to create densely ionising helium and lithium ions directly within cancer cells, thus sparing the surrounding normal cells and tissues but also leading to significantly more effective tumour control than X-rays.
View Article and Find Full Text PDFAdv Mater
January 2025
Life Cycle Thinking Group, Department of Graphic Design and Engineering Projects, Faculty of Engineering in Bilbao. University of the Basque Country (UPV/EHU), Bilbao, 48013, Spain.
Biopolymer based electrolytes can overcome current performance limitations of lithium-ion batteries (LIBs). Biopolymers enable electrolytes with high ionic conductivities and wide electrochemical stability windows. While the biobased character of natural materials is claimed as an inherent advantage in meeting current environmental sustainability challenges, further research is required to quantify and compare their environmental impacts as electrolytes.
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January 2025
CBET + Research Group, Department of Zoology and Animal Cell Biology, Faculty of Science and Technology, Research Centre for Experimental Marine Biology and Biotechnology PiE-UPV/EHU, University of the Basque Country UPV/EHU, Areatza z/g, 48620, Plentzia, Bizkaia, Spain. Electronic address:
The increasing use of lithium (Li) in modern technology and medicine has raised up concerns in the scientific community due to the potential impact of this metal on the aquatic environment. Although several effects have been reported in different organisms, there is still scarce information concerning the mechanisms and chronic effects of Li toxicity in marine life. Our main objective is to determine biological effects of sub-lethal concentrations in Mytilus galloprovincialis at different biological organization levels using the biomarker approach.
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