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Radium‐223 (223Ra) is the first‐in‐class alpha‐emitter to mediate tumor eradication, which is commonly thought to kill tumor cells by directly cleaving double‐strand DNA. However, the immunogenic characteristics and cell death modalities triggered by 223Ra remain unclear. Here, it is reported that the 223Ra irradiation induces the pro‐inflammatory damage‐associated molecular patterns including calreticulin,...
“Blockchain‐Like” Interface Moderation Method
Carbon black as a “chain” to guide the charge transfer effectively promotes the F‐ transfer into the metal‐organic framework (MOF), and through the redox reaction stored in the MOF “block”. This interface moderation method effectively improves the fluoride removal performance of the MOF electrode. More details can be found in article number 2205619 by...
Metal‐organic frameworks (MOF) have attracted extensive attention due to their ultra‐high specific surface area and tunable structure, the mechanism of direct utilization for capacitive deionization (CDI) defluorination remains undefined. Here, MIL‐101(Cr) with ultra‐high specific surface area, high water stability, and open metal sites (OMSs) is prepared by a hydrothermal method for defluorination...
Asherman's syndrome (AS) occurs as a consequence of severe damage to the endometrial basalis, usually leading to menstrual abnormalities, infertility, and recurrent miscarriage in women. Currently, human endometrium‐derived adventitial cells (En‐ADVs) are considered ideal seed cells with high pluripotency for regenerative medicine. However, critical issues such as noninvasive repair of tissues, targeting...
Selenium(Se)‐based solar cells (SSCs), known as one of the oldest solar cells, have regained intense attention due to the advantages of Se including direct bandgap, good stability, and single absorber. Among all kinds of device structures, conventional n‐i‐p SSCs with top organic hole transport layers (HTLs) show great potential since organic HTLs could be well‐designed to smoothly extract holes from...
The precise control of the ice crystal growth during a freezing process is of essential importance for achieving porous cryogels with desired architectures. The present work reports a systematic study on the achievement of multi‐structural cryogels from a binary dispersion containing 50 wt% 2,2,6,6‐tetramethylpiperidin‐1‐oxyl, radical‐mediated oxidized cellulose nanofibers (TOCNs), and 50 wt% graphene...
Metal nanocrystals (NCs) are grown directly on the surface of reduced graphene oxide (rGO), which can maximize the rGO‐NCs contact/interaction to achieve the enhanced catalytic activity. However, it is difficult to control the size and morphology of metal NCs by in situ method due to the effects of functional groups on the surface of GO, and as a result, the metal NCs/rGO hybrids are conventionally...
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