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BioWorld - Tuesday, February 17, 2026
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Illustration of abdominal aortic aneurysm
Cardiovascular

Study identifies nearly 100 abdominal aortic aneurysm risk genes

Nov. 3, 2023
By Mar de Miguel
The largest genetic analysis of abdominal aortic aneurysm (AAA) carried out to date has identified almost 100 new risk variants linked to the disorder. The study also highlighted a possible therapeutic target for this pathology that, at the moment, has no treatment. AAA affects 4% of people over 65 years of age in the U.S. and causes 41,000 deaths per year. The incidence is three to four times higher in men than in women.
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Vial and syringe with DNA

In HIV, gene therapy could be alternative path to functional cure

Oct. 27, 2023
By Anette Breindl
At the 30th Annual Congress of the European Society for Gene and Cell Therapy in Brussels this week, researchers presented both preclinical and clinical strategies for applying gene therapy to a functional HIV cure. At a Wednesday session on Infectious Diseases & Vaccines, Alessio Nahmad, of Tabby Therapeutics Ltd., described using B cells edited to express broadly neutralizing antibodies (bnAbs) 3BNC117 to deliver high titers of antibodies in mice.
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Female reproductive system and cancer cells

ESMO 2023: Latest advances in gynecological cancer

Oct. 25, 2023
By Mar de Miguel
The Congress of the European Society of Medical Oncology (ESMO) held in Madrid from Oct. 20 to 24, 2023, could well add the letter W to its acronym after the four sessions on gynecological cancer that could represent a milestone in the lives of all women who suffer from cervical, ovarian, or endometrial cancer.
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AI generated illustration of lungs in the human body
Cancer

ESMO 2023: New approaches to old targets, including HER2 and p53

Oct. 23, 2023
By Mar de Miguel
Some cancers with a poor prognosis have had no new treatments in decades. Advances in the genetic characterization of these tumors now offer a range of possibilities for the development of new therapies that could completely change the quality of life and survival of these patients.
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DNA and cancer cells
Cancer

AACR-NCI-EORTC 2023: Understanding ecDNA to stop running in circles in cancer

Oct. 16, 2023
By Coia Dulsat
Cancer treatments for targeting tumor amplifications lag behind those targeting point mutations – and part of the reason may be that amplifications often reside on extrachromosomal DNA (ecDNA). Since ecDNA was first described back in 1965 as minute chromatin bodies in brain cancer cells, the use of large-scale DNA sequencing techniques has revealed the presence of ecDNA across a wide range of cancer types. “The circular structure of ecDNA is associated with increased proto-oncogenic capacity in comparison to linear amplifications. Another key feature is that ecDNA does not contain centromeres,” Roel Verhaak, from Yale School of Medicine, told the audience in a session at the 2023 AACR-NCI-EORTC Conference on Molecular Targets and Cancer Therapeutics in Boston.
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CRISPR-edited kidney under microscope
Immune

Most-edited-ever donor genomes lead to 2-year survival in porcine-to-primate kidney transplants

Oct. 11, 2023
By Anette Breindl and Mar de Miguel
Scientists at Egenesis Inc. have transplanted kidneys from genome-edited pigs into cynomolgus monkeys that remained functional for long periods after transplantation. The monkeys, whose own kidneys were removed during the surgery, survived for a median of 176 days after receiving one pig kidney. Maximal survival was just over 2 years. The data were published today in Nature. Egenesis CEO Mike Curtis told reporters that the study has achieved the longest survival to date “using clinically translatable immunosuppression … longer survival has been achieved using really aggressive immunosuppression that really isn’t clinically translatable.”
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Woman  in military clothing talking with psychologist
Neurology/Psychiatric

ECNP 2023: Boosting fear unlearning is one avenue toward treating PTSD

Oct. 9, 2023
By Anette Breindl
For most psychiatric illnesses, the precipitating event is mysterious. Many conditions are thought to result from a mix of genetic risk and environmental factors, but the specific trigger remains unknown. In post-traumatic stress disorder (PTSD), the environmental trigger is usually clear. In many cases, it is all the affected individuals can think about. “Intrusive reliving” of the triggering situation is one of the core features of PTSD.
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Nobel Prize graphic with illustrations of Moungi Bawendi, Louis Brus and Alexei Ekimov
Drug Design, Drug Delivery & Technologies

Nobel Prize in Chemistry 2023 goes to quantum dots, which illuminated the path to nanotechnology

Oct. 4, 2023
By Mar de Miguel
Quantum dots, a phenomenon in quantum physics that alters the energy of electrons and changes the properties of particles, caught the attention of the Royal Swedish Academy of Sciences (KVA) for the 2023 Nobel Prize in Chemistry. Alexei Ekimov and Louis Brus received the award for their discovery; Moungi Bawendi, for developing its applications. With their work, “in equal shares,” said the Secretary General of KVA Hans Ellegren, the three scientists have laid the foundations of nanotechnology, a tool that we see today in our homes, on televisions and LED lamps, or in laboratories and hospitals for designing new drugs or new strategies against cancer.
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Nobel Prize graphic with illustrations of Katalin Karikó and Drew Weissman
Infection

Perseverance on mRNA therapy research wins the 2023 Nobel Prize in Medicine after saving millions of lives

Oct. 2, 2023
By Mar de Miguel
Researchers who follow their instincts and achieve slow results while trying to break barriers have little support. They replace it with persistence. This is the story of Katalin Karikó and Drew Weissman. What was once a dream in their minds was later a success. Their work together for decades was essential to achieving mRNA vaccines, and their perseverance was rewarded today with the 2023 Nobel Prize in Medicine.
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Mosaic illustration of a mouse
Neurology/Psychiatric

Genetic editing of individual cells points to late targets for developmental disorders

Sep. 28, 2023
By Mar de Miguel
A new gene editing method uses the CRISPR technique to modify the cells of an organ in vivo, creating a mosaic used to identify the effects of each altered gene. Scientists from the Swiss Federal Institute of Technology (ETH) in Zürich developed this technology called AAV-Perturb-seq, based on adeno-associated virus (AAV) to target, edit and analyze single-cell genetic perturbations.
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