{"id":7741,"date":"2026-09-27T09:08:01","date_gmt":"2026-09-27T09:08:01","guid":{"rendered":"https:\/\/silvybrand.com\/?p=7741"},"modified":"2026-09-27T09:08:01","modified_gmt":"2026-09-27T09:08:01","slug":"pancreatic-cells-just-one-genetic-tweak-away-from-treating-diabetes","status":"publish","type":"post","link":"https:\/\/silvybrand.com\/?p=7741","title":{"rendered":"Some Pancreatic Cells Are Just One Genetic Tweak Away From Treating Diabetes"},"content":{"rendered":"<p><br \/>\n<\/p>\n<div>\n<p><span class=\"lead-in-text-callout\">A human pancreas<\/span> typically contains about a billion beta cells, the primary producers of insulin. Among <a href=\"https:\/\/www.wired.com\/story\/why-women-with-type-2-diabetes-are-diagnosed-later-than-men\/\" class=\"text link\">people with diabetes<\/a>, these cells are either missing or dysfunctional, and thus scientists have been looking for ways to replenish their numbers as a possible <a href=\"https:\/\/www.wired.com\/story\/ai-digital-twins-are-helping-people-manage-diabetes-and-obesity\/\" class=\"text link\">long-term treatment<\/a> or even cure for the condition. A team of researchers recently took a step closer to that reality, genetically altering another type of pancreatic cell to produce and release insulin in response to <a href=\"https:\/\/www.wired.com\/story\/diabetes-detection-better-tools-biomarkers\/\" class=\"text link\">high blood sugar<\/a>.<\/p>\n<p class=\"paywall\">The researchers engineered ductal cells, which\u2014as some previous studies had found\u2014occasionally transform into beta cells all on their own. This is an unusual phenomenon among cells in adult bodies, which tend to be firmly fixed in their identities, and it hinted to the scientists that these ductal cells would be a good place to start.<\/p>\n<p class=\"paywall\">Scientists previously had no clue what genes were driving this metamorphosis, said Jian Li, a postdoctoral researcher at Harvard Medical School who led the recent study in <a href=\"https:\/\/www.science.org\/doi\/10.1126\/scitranslmed.ady2234\" class=\"text link\"><em>Science Translational Medicine<\/em><\/a>. The researchers therefore took an approach called a genetic screen, which involves breaking little bits of DNA all across the genome to see which are important for a certain biological process. It\u2019s a bit like individually removing pieces of a car engine without a schematic and seeing what breaks to learn which components are involved in delivering fuel or are essential for steering.<\/p>\n<p class=\"paywall\">Through this process, the researchers found that taking out a gene called ALDH3B2 turned ductal cells into beta-like cells at a higher rate. Without the genetic alteration, fewer than 1 percent of ductal cells spontaneously took on a beta-cell-like state, but when ALDH3B2 was silenced, that proportion increased to about 8.5 percent.<\/p>\n<p class=\"paywall\">Those initial experiments were performed on human cells in a dish, which the researchers then transplanted into mice with diabetes. Human insulin began circulating in the mice, and the animals\u2019 glucose levels dropped to near-normal levels. These effects persisted for six weeks.<\/p>\n<p class=\"paywall\">Science has previously explored some <a href=\"https:\/\/www.wired.com\/story\/no-more-injections-crispr-offers-new-hope-for-treating-diabetes\/\" class=\"text link\">gene therapies for diabetes<\/a> with the hopes of offering long-term relief. For example, a clinical trial launched earlier this year is taking the creative approach of equipping muscle cells with the genetic instructions to make insulin. Other emerging treatments aim to generate new insulin-producing cells in the laboratory and then <a href=\"https:\/\/www.wired.com\/story\/japan-approves-the-worlds-first-treatment-made-with-reprogrammed-human-cells\/\" class=\"text link\">transplant them<\/a> into the patient.<\/p>\n<p class=\"paywall\">This comes with a few risks, namely activation of the immune system. This new study points to another possibility: harnessing the cells that already exist in the pancreas and causing them to change function by turning off some of the <a href=\"https:\/\/www.wired.com\/story\/smart-nanoparticles-deliver-mrna-directly-to-tumors-in-new-cancer-therapy\/\" class=\"text link\">genetic switches<\/a> that maintain their identity.<\/p>\n<p class=\"paywall\">That method also has its own hurdles, one of the most important of which is ensuring that only the target cells are edited. ALDH3B2 is used by many cells in the body, not just in the pancreas, so precision is important to prevent unforeseen complications.<\/p>\n<p class=\"paywall\">There\u2019s also a major lingering question: How is this gene involved in turning ductal cells into beta cells? \u201cThat&#8217;s the part we need to verify first,\u201d Li said. Then, \u201cthe next step is either gene therapy or to find specific small molecules to inhibit this gene to see if we can achieve a similar\u2014or even better\u2014effect.\u201d<\/p>\n<p class=\"paywall\">Even partial improvement could make a massive impact in the lives of the estimated 830 million people who have <a href=\"https:\/\/www.wired.com\/story\/diabetes-rates-africa-new-breakthroughs\/\" class=\"text link\">diabetes worldwide<\/a>, including many who die each year due to related complications.<\/p>\n<p class=\"paywall\"><em>This story originally appeared on<\/em> <a href=\"https:\/\/es.wired.com\/articulos\/cientificos-reprograman-celulas-humanas-para-generar-insulina-y-combatir-la-diabetes\" class=\"text link\">WIRED en Espa\u00f1ol<\/a> <em>and has been translated from Spanish.<\/em><\/p>\n<\/div>\n<p><br \/>\n<br \/><a href=\"https:\/\/www.wired.com\/story\/pancreatic-cells-just-one-genetic-tweak-away-from-treating-diabetes\/\">Source link <\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>A human pancreas typically contains about a billion beta cells, the primary producers of insulin. Among people with diabetes, these cells are either missing or dysfunctional, and thus scientists have been looking for ways to replenish their numbers as a possible long-term treatment or even cure for the condition. A team of researchers recently took [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":7742,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[9],"tags":[780,1432,1431,1104,1434,1153,358,1433],"class_list":["post-7741","post","type-post","status-publish","format-standard","has-post-thumbnail","category-gadgets","tag-biotech","tag-cells","tag-diabetes","tag-gene-editing","tag-gene-therapy","tag-genetics","tag-medicine","tag-precision-medicine"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Some Pancreatic Cells Are Just One Genetic Tweak Away From Treating Diabetes - Silvybrand Lifestyle Blog<\/title>\n<meta name=\"description\" content=\"By deactivating a gene, researchers were able to cause cells in the pancreatic ducts to produce insulin to regulate blood sugar.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/silvybrand.com\/?p=7741\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Some Pancreatic Cells Are Just One Genetic Tweak Away From Treating Diabetes - 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