Results 161 to 170 of about 34,845 (312)
A hollow nanomotor (PM‐HMSN/Arg) propelled by ultrasound‐triggered nitric oxide (NO) was developed. The nanomotor employs a “tethering‐relaxing‐drilling” mechanism to overcome biological barriers, enabling multimodal theranostics of cancer with deep penetration and extended lifetime.
Xue Xu+7 more
wiley +1 more source
Setting up an external quality assessment scheme to assess the effectiveness of microbiology testing currently carried out in heart valve banking. [PDF]
Nita P+3 more
europepmc +1 more source
This study elucidates a novel SlJAZ8‐SlWRKY57‐SlAVT6A/SlAVT6B module that effectively channels metabolic flux from primary to secondary metabolism, impacting plant growth, development, and resistance. Two novel vacuolar amino acid exporters, SlAVT6A and SlAVT6B, fine‐tunes trichomes, terpenes, and gibberellins, bolstering spider mite resistance.
Yingchen Hao+11 more
wiley +1 more source
To maximize the efficacy of cancer vaccines, adjuvants, collection, lysis, purification, oxidation, loading sites, and sizes, etc., are investigated. The optimized cancer nanovaccines loading whole tumor antigens can cure all or most tumor‐bearing mice in multiple mouse cancer models.
Xiangxiang Xu+13 more
wiley +1 more source
In SETD2‐mutant ccRCC, the original LEDGF recognition of the H3K36me3 regulatory axis no longer exists. LEDGF interacts with CARM1‐dependent H3R17me2a regulating the transcription of key enzymes in the de novo synthesis pathway. The abnormally elevated LEDGF leads to the accumulation of purine nucleotides in SETD2‐mutant ccRCC, thereby satisfying the ...
Yuwei Zhang+11 more
wiley +1 more source
Looking back to look ahead: the temporal dimension of conservation seed bank collections. [PDF]
Mattana E+6 more
europepmc +1 more source
An Analytical Hierarchy Process to Decision Making in Human Blood, Cells, and Tissue Banks
Paulo Pereira, Sandra Xavier
openalex +2 more sources
Triple‐negative breast cancer (TNBC) remains a major challenge in breast cancer management as it lacks effective therapeutic targets. This study uncovers that MYC/TET3‐regulated mitochondrial inner‐membrane protein TMEM65 promotes TNBC progression and cisplatin resistance by activating the OXPHOS‐SERPINB3 pathway and reveals TMEM65 as a potential ...
Yin‐Ling Zhang+10 more
wiley +1 more source