BCPAP cells
<p>Linc01278 inhibits the development of papillary thyroid carcinoma by regulating miR-376c-3p/DNM3 axis</p>
13
<p>SIRT6 promotes the Warburg effect of papillary thyroid cancer cell BCPAP through reactive oxygen species</p>
8
Hsa_circ_0011385 accelerates the progression of thyroid cancer by targeting miR-361-3p
14
CUX2 functions as an oncogene in papillary thyroid cancer
8
Identification of thyroid tumor cell vulnerabilities through a siRNA-based functional screening
20
Original Article Expression of miR-34a and its role in human papillary thyroid carcinoma
7
Overexpression of LASS2 inhibits proliferation and causes G0/G1 cell cycle arrest in papillary thyroid cancer
10
Identification of tumorigenesis-related mRNAs associated with RNA-binding protein HuR in thyroid cancer cells
20
LncRNA LINC00460 promotes the papillary thyroid cancer progression by regulating the LINC00460/miR-485-5p/Raf1 axis
12
<p>SIRT4 inhibits the proliferation, migration, and invasion abilities of thyroid cancer cells by inhibiting glutamine metabolism</p>
12
Use of bubble continuous positive airway pressure (bCPAP) in the management of critically ill children in a Malawian paediatric unit: an observational study
11
Reducing preterm mortality in eastern Uganda: the impact of introducing low-cost bubble CPAP on neonates <1500 g
7
SIRT6/HIF-1α axis promotes papillary thyroid cancer progression by inducing epithelial–mesenchymal transition
13
<p>Lipase member H is a downstream molecular target of hypoxia inducible factor-1α and promotes papillary thyroid carcinoma cell migration in BCPAP and KTC-1 cell lines</p>
11
Practical use, effects and complications of prehospital treatment of acute cardiogenic pulmonary edema using the Boussignac CPAP system
7
Cost-effectiveness analysis of a low-cost bubble CPAP device in providing ventilatory support for neonates in Malawi – a preliminary report
8
Impact of Implementing 5 Potentially Better Respiratory Practices on Neonatal Outcomes and Costs
11
Elimination of mouse tumor cells from neonate spermatogonial cells utilizing cisplatin-entrapped folic acid-conjugated poly(lactic-co-glycolic acid) nanoparticles in vitro
12
<p>Targeting Pancreatic Cancer Cells and Stellate Cells Using Designer Nanotherapeutics in vitro</p>
13
FOLFOX regimen plus dendritic cells–cytokine-induced killer cells immunotherapy for the treatment of colorectal cancer: a meta-analysis
13