Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Lanjun Cheng"'
Publikováno v:
CrystEngComm. 25:2237-2242
Quasi-cube AgSbTe2 nanocrystals with a representative NaCl-type crystal structure, synthesized by an eco-friendly colloidal synthetic route, exhibit good photoresponse to wide-range optical signals from 405 to 980 nm.
Autor:
Chengfeng Zhu, Hongzhao Wang, Yongfei Mu, Ziwei Zhang, Lanjun Cheng, Tianfu Li, Yanming Fu, Xiang Wu, Yougui Li
Publikováno v:
Dalton Transactions. 51:9627-9631
A chiral metal-organic framework (CMOF) with open chiral channels and multiple recognition sites is constructed from camphoric acid and a dipyridyl ligand. It can act as an efficient chiral solid adsorbent, capable of separating a variety of racemic
Publikováno v:
RSC Advances. 11:19426-19432
We present a self-seeded (with indium droplets) solution-liquid-solid (SLS) synthesis route for InSb nanowires (NWs) using commercially available precursors at a relatively low temperature of about 175 °C, which takes only 1 min upon the injection o
Autor:
Zhaoyong Xi, Giovanni Natile, Fabio Arnesano, Kaiju Wei, Siming Yuan, Chan Li, Lanjun Cheng, Yangzhong Liu
Publikováno v:
Metallomics. 11:556-564
Cisplatin is an anticancer drug widely used in clinics; it induces the apoptosis of cancer cells by targeting DNA. However, its interaction with proteins has been found to be crucial in modulating the pre and post-target activity. Nuclear DNA is tigh
Autor:
Hongze Hu, Manman Liu, Yang Zhu, Lanjun Cheng, Siming Yuan, Yangzhong Liu, Guolin Ma, Peixin Cui, Yang Yang
Publikováno v:
Chemical Communications. 55:11107-11110
Cu(i) binds to the N-terminal metal binding domain (MBD) of hCTR1 and induces its conformational change, which promotes the interaction of the MBD with cell membranes. The membrane interaction was confirmed in living cells. This process could be the
Publikováno v:
SCIENTIA SINICA Chimica. 47:200-219
Platinum anti-tumor drugs are widely used in cancer chemotherapy. These compounds are believed to induce apoptosis in tumor cells by DNA crosslinking, which causes DNA damage and suppresses DNA replication. However, recent studies indicate that plati
Publikováno v:
European Journal of Inorganic Chemistry. 2015:4914-4920
The aquation of platinum anticancer drugs is a crucial step for their activation and the consequent binding to the target DNA. These processes can be influenced by small molecules, such as carbonate and phosphate, which are present in high concentrat