Publications by authors named "Puxian Tang"

Many chemotherapeutic and molecular targeted drugs have been used to treat brain metastases, e.g., anti-angiogenic vandetanib.

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Lipogenesis is often highly upregulated in breast cancer brain metastases to adapt to intracranial low lipid microenvironments. Lipase inhibitors hold therapeutic potential but their intra-tumoral distribution is often blocked by the blood‒tumor barrier (BTB). BTB activates its Wnt signaling to maintain barrier properties, , Mfsd2a-mediated BTB low transcytosis.

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The blood-brain barrier (BBB)/blood-tumor barrier (BTB) impedes brain entry of most brain-targeted drugs, whether they are water-soluble or hydrophobic. Endothelial WNT signaling and neoplastic pericytes maintain BTB low permeability by regulating tight junctions. Here, we proposed nitazoxanide (NTZ) and ibrutinib (IBR) co-loaded ICAM-1-targeting nanoparticles (NI@I-NPs) to disrupt the BTB in a time-dependent, reversible, and size-selective manner by targeting specific ICAM-1, inactivating WNT signaling and depleting pericytes in tumor-associated blood vessels in breast cancer brain metastases.

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Background: Pancreatic cancer (PC) is one of the most aggressive malignancies and has a poor prognosis despite being extensively researched. The role of serum-derived exosomes in tumorigenesis and the development of PC is still unclear.

Method: The present study employed iTRAQ-based proteomic analysis to search for differences between the serum exosomes of PC patients and those from control patients.

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Objective: To compare the use of subclavian vein catheter and femoral vein catheter, in monitoring pulse indicator continuous cardiac output (PiCCO) monitoring data cardiac index (CI), extravascular lung water index (EVLWI), and global end-diastolic volume index (GEDVI) with central venous injection of the bolus cold saline injection, in order to determine whether the femoral vein access, which is not typically used, could be used to obtain reliable data.

Methods: Thirteen patients in Beijing Hospital intensive care unit (ICU) were involved, from January 2007 to March 2009. Each patient was monitored with PiCCOplus device, after an injection of cold saline bolus via both femoral and subclavian venous catheter.

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Objective: To explore the safety and clinical efficacy of intravenous infusion of concentrated potassium chloride using micro-pumps in critically ill patients with hypokalemia.

Methods: One hundred and twenty-eight critically ill patients with hypokalemia, the endogenous creatinine clearance rate over 0.5 ml/second and the urine output over 50 ml/hour were randomly divided into the therapy group (n=64) and the control group (n=64).

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