In Science Journals.
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| Title: | In Science Journals. |
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| Authors: | Vignieri, Sacha (AUTHOR), Smith, Keith T. (AUTHOR), Simonti, Corinne (AUTHOR), Hessler, Angela (AUTHOR), Kelly, Priscilla N. (AUTHOR), Jiang, Di (AUTHOR), Baeck, Julius (AUTHOR), Ebert-May, Diane (AUTHOR), Ross, Sarah H. (AUTHOR), Lavine, Marc S. (AUTHOR), Ray, L. Bryan (AUTHOR), Maroso, Mattia (AUTHOR), Sonawala, Unnati (AUTHOR), Seale, Madeleine (AUTHOR), Foley, John F. (AUTHOR), Fogg, Christiana N. (AUTHOR) |
| Source: | Science. 6/18/2026, Vol. 392 Issue 6804, p1252-1254. 3p. |
| Subjects: | Paleontology, Astrophysics, Materials science, Molecular biology, Immunology |
| Abstract: | The main focus of the article is recent scientific advances across diverse fields including paleontology, astrophysics, immunology, molecular biology, and materials science. Key findings include evidence that early tetrapods developed via direct development without an aquatic larval stage, insights into asteroid family formation from spacecraft observations, and identification of immune mechanisms where CD4+ T cells and macrophages collaborate to disrupt tumor blood supply. Additional highlights cover novel bacterial DNA synthesis mechanisms, induction of immune tolerance in kidney transplantation without myelosuppression, and the development of broadly neutralizing antibodies against HIV in macaques. The article also reports advances in membrane technology for crude oil fractionation, brain evolution studies using lamprey models, and strain-engineered complex alloys with enhanced mechanical properties. [Extracted from the article] |
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| Database: | Psychology and Behavioral Sciences Collection |
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| Abstract: | The main focus of the article is recent scientific advances across diverse fields including paleontology, astrophysics, immunology, molecular biology, and materials science. Key findings include evidence that early tetrapods developed via direct development without an aquatic larval stage, insights into asteroid family formation from spacecraft observations, and identification of immune mechanisms where CD4+ T cells and macrophages collaborate to disrupt tumor blood supply. Additional highlights cover novel bacterial DNA synthesis mechanisms, induction of immune tolerance in kidney transplantation without myelosuppression, and the development of broadly neutralizing antibodies against HIV in macaques. The article also reports advances in membrane technology for crude oil fractionation, brain evolution studies using lamprey models, and strain-engineered complex alloys with enhanced mechanical properties. [Extracted from the article] |
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| ISSN: | 00368075 |
| DOI: | 10.1126/science.aej7458 |