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    	<hl1 id="Headline1" class="1" style="Headline1">
		<lang class="3" style="Headline1"  font="Chronicle Display" fontStyle="Roman" size="29">IISc uses AI to find a universal antivenom for snakebites</lang>
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<hl2 id="Headline1" class="1" style="Headline2">
		<lang class="3" style="Headline2"  font="Franklin Gothic Demi Cond" fontStyle="Regular" size="16">Researchers use venom data to identify common 
toxin targets across multiple snake species</lang>
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     <p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">Kolkata</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">TheIndian Institute of Science (IISc), Bengaluru, is using artificial intelligence (AI) to develop broadly neutralising anti-venoms capable of treating bites from multiple snake species, potentially addressing a major public health challenge that claims tens of thousands of lives in India every year.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">"India loses an estimated 58,000 lives to snakebite every year. The remarkable diversity of snake venoms across species and regions makes this an enormously challenging scientific problem, and one where AI can help us analyse data at a scale and speed that were previously difficult to achieve," IISc has said.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">The Evolutionary Venomics Lab (EVL) at the Centre for Ecological Sciences (CES), IISc, is using Claude, through Anthropic’s AI for Science programme, to annotate complex venom datasets and identify shared toxin targets for developing broadly neutralising antivenoms.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">What researchers are trying to do is to develop anti-venoms that would act in the case of bites of different species of snakes. This would reduce the need for hospitals to stock a wide variety of anti-venoms.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">"We are excited to explore how the convergence of artificial intelligence, evolutionary biology, and translational science can help deliver the next generation of snakebite therapies," IISc said.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">EVL has been doing pioneering work in the development of anti-venoms.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">After developing a synthetic anti-venom in 2024, the laboratory created "venom maps" in 2025. These maps use local climate conditions to help predict the venom characteristics of Russell's Viper, a deadly snake found across the country.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">The Russell's Viper is arguably the clinically most important snake species in the world. It kills and maims more people than any other snake species.</lang>
</p>
<p style=".Bodylaser">
	<lang class="3" style=".Bodylaser" font="Minion Pro" fontStyle="Regular" size="9">The venom maps could help clinicians select the most appropriate treatment for patients with snake bites, researchers say. It is important to precisely unravel the composition, activity and potency of Russell's Viper venoms and understand the role of biotic and abiotic factors in shaping them, researchers say.</lang>
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