Results 121 to 130 of about 22,100 (253)
EFFECTS OF IONIC STRENGTH ON RIBONUCLEIC ACID STRUCTURE AND RIBONUCLEASE ACTIVITY
Sherman R. Dickman, Barbara J. Ring
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Magnetic field‐guided MNP@ATR‐ASO nanocomplexes facilitate the targeted delivery of ASOs to ganglion cells or photoreceptors within retinal explants, thereby enhancing the efficacy of ASOs in correcting pre‐mRNA splicing abnormalities. Furthermore, the nanocomplexes improve ASO penetration and delivery in human retinal and inner ear organoid models ...
Xiuhong Ye+13 more
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EFFECT OF RIBONUCLEASE ON CROSSING OVER IN Drosophila [PDF]
Berwind P. Kaufmann+2 more
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Recent Advances in mRNA Delivery Systems for Cancer Therapy
This review systematically investigates the applications of mRNA therapy in cancer treatment, with particular emphasis on nonviral delivery systems, targeting strategies, stimulus‐responsive systems, and local delivery methods. Concluding with a meticulous evaluation, the review sheds light on the prevailing challenges while illuminating promising ...
Zheng Zhang+9 more
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This study has identified lncRNA‐MEG3 as a key regulator of muscle mass, promoting slow‐twitch muscle fibers and preventing muscle atrophy. By stabilizing the SUZ12/PRC2 complex through liquid–liquid phase separation (LLPS), lncRNA‐MEG3 influences mitochondrial function and lipid metabolism.
Yilong Yao+15 more
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A unique hydrogel based on extracellular matrix from fish swim bladder, which is suitable for transcatheter delivery and possesses remarkable reparative capabilities for treating heart failure, is developed. It emerges as a multi‐effect factor profoundly influencing inflammation regulation, angiogenesis, and myocardial metabolism.
Yulong Fu+9 more
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Der Einfluß der Temperatur auf die Strahlenempfindlichkeit von Ribonuclease [PDF]
Wolfgang Günther, Horst Jung
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This study reveals that cytoplasmic PABPN1 is essential for mouse oocyte meiotic maturation by coordinating polyadenylation, translation, and degradation of maternal mRNAs. Pabpn1 knockout disrupts CDK1 activation, spindle formation, and chromosome alignment by impairing maturation‐promoting factor (MPF) regulation and BTG4‐mediated deadenylation ...
Xing‐Xing Dai+9 more
wiley +1 more source