Publications by authors named "Xu Kong"

The transient electromagnetic field generated by the operation of high-voltage switches in substations can cause electromagnetic interference to the communication and control electronic equipment in the substation. On the other hand, it can also reflect the working status of the high-voltage switch itself. Therefore, it is necessary to measure and study it.

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Embolotherapy is an effective antitumor method, which essentially blocks the oxygen supply and induces hypoxia to treat tumors; however, traditional practices demand high expertise and harbor risks of complications. This study presents a mesoporous polydopamine-based (MPDA) drug delivery platform modified by engineered fusion proteins, which can specifically embolize tumor blood vessels and deliver the hypoxia-activated prodrug tirapazamine (TPZ). The fusion protein consists of an affibody targeting HER-2, a substrate for MMP-2, an RGD tripeptide, and a truncated tissue factor (tTF), which is then connected to MPDA loaded with TPZ.

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Ursodeoxycholic acid (UDCA) is a naturally occurring, low-toxicity, and hydrophilic bile acid (BA) in the human body that is converted by intestinal flora using primary BA. Solute carrier family 7 member 11 (SLC7A11) functions to uptake extracellular cystine in exchange for glutamate, and is highly expressed in a variety of human cancers. Retroperitoneal liposarcoma (RLPS) refers to liposarcoma originating from the retroperitoneal area.

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Utilizing the design of heterojunction structures formed between photocatalysts to enhance photoelectrochemical performance represents an effective strategy for improving the efficiency of photocatalytic hydrogen production. In this work, a straightforward one-step solvothermal method was employed to embed NENU-5 nano-octahedra within ZnInS nanoflowers, forming ZnInS@NENU-5 heterostructures. Hydrogen production tests conducted over 5 h revealed a hydrogen evolution activity of 5282.

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Programmed death-ligand 1 (PD-L1) is overexpressed in multiple cancers and critical for their immune escape. It has previously shown that the nuclear coactivator SRC-1 promoted colorectal cancer (CRC) progression by enhancing CRC cell viability, yet its role in CRC immune escape is unclear. Here, we demonstrate that SRC-1 is positively correlated with PD-L1 in human CRC specimens.

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Medium entropy alloy (MEA) is a hot spot in the field of material research in recent years. At present, the most widely used processing method of MEAs is "casting-rolling-heat treatment", and the preparation of CoCrNi MEA by laser additive manufacturing (LAM) is still in primary stage. In this study, CoCrNi MEAs were fabricated with different scanning speeds by laser additive manufacturing, and the influence of scanning speed on its mechanical properties was investigated.

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Article Synopsis
  • The research focuses on creating prognostic nomograms to predict overall survival (OS) and cancer-specific survival (CSS) for patients with primary retroperitoneal sarcoma (RPS), which has over 70 subtypes and limited existing studies on survival prediction.
  • The study analyzed data from 1166 RPS patients from the SEER database and an additional 261 cases, utilizing various clinical and pathological features to develop the nomograms through multivariable Cox models.
  • The validation process showed that the nomograms provided accurate predictions with good calibration and discrimination, achieving C-indices of 0.76 for OS and 0.81 for CSS, supported by strong areas under the time-dependent receiver operating characteristic curves.
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Article Synopsis
  • HBV (hepatitis B virus) infection poses a significant global health challenge, largely due to the role of cccDNA (covalently closed circular DNA) in chronic infections, prompting research into targeting host factors for potential treatment.
  • The study focused on the JMJD2 protein family, specifically JMJD2D, revealing that its upregulation in infected cells enhances HBV replication by stabilizing the HBx protein and inhibiting its degradation.
  • Results suggest JMJD2D as a potential biomarker and therapeutic target for chronic hepatitis B, with the inhibition of this protein leading to decreased cccDNA transcription and HBV replication.
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Formation building for multi-small-AUV systems with on-board cameras is crucial under the limited communication underwater environment. A hybrid coordination strategy is proposed for the rapid convergence to a leader-follower pattern. The strategy consists of two parts: a time-optimal local-position-based controller (TOLC) and a distributed asynchronous discrete weighted consensus controller (ADWCC).

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Among carbon allotropes, 2D graphdiyne (GDY) possesses the merits of good ductility, strong conductivity and an adjustable energy band structure. In this study, a GDY/ZnCo-ZIF S-scheme heterojunction photocatalyst has been successfully prepared by a low-temperature mixing method. Using eosin as a photosensitizer and triethanolamine as a solvent, the hydrogen production of the GDY/ZnCo-ZIF-0.

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Background: The murine double minute 2 (MDM2) gene is a crucial factor in the development and progression of various cancer types. Multiple rigorous scientific studies have consistently shown its involvement in tumorigenesis and cancer progression in a wide range of cancer types. However, a comprehensive analysis of the role of MDM2 in human cancer has yet to be conducted.

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Humidity sensors with comprehensive performance are of great interest for industrial and environmental applications. Most sensors, however, have to compromise on at least one characteristic such as sensitivity, response speed, and linearity. This paper reports a gravimetric humidity sensor based on a capacitive micromachined ultrasonic transducer (CMUT) with exceptional all-around performance, and presents a side-by-side comparative investigation of two types of gravimetric humidity sensors for a better understanding of their characteristics and sensing mechanisms.

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A novel nanosecond transient electric field (E-field) measurement system is developed in this paper to measure the E-field pulse caused by the operation of the high-voltage switch (switching E-field pulse) in the substation. An electrically small rod antenna is used as the receiving antenna and is matched by the operational amplifier with high input impedance to achieve broadband frequency response and stable working performance. A broadband analog optical fiber transmission system is further designed based on the high-frequency circuit model of the electronic components.

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Breast cancer is one of the malignant tumors with the highest mortality rate. With the development of precise treatment technology for cancer, numerous molecular targets have been identified and applied in the treatment of diseases. The present study investigated the potential role of ring finger protein 8 (RNF8) in TP53-mutant breast cancer and explored its possible mechanisms of action through a combination of bioinformatics techniques and cell biology.

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As a histone demethylase, JMJD2D can enhance gene expression by specifically demethylating H3K9me2/3 and plays an important role in promoting colorectal cancer progression. However, its role in liver cancer remains unclear. The expression of JMJD2D was examined in human liver cancer specimens and non-tumorous liver tissues by immunohistochemical or immunoblot analysis.

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We present the design for the first narrowband filter NB964 for the Dark Energy Camera (DECam), which is operated on the 4m Blanco Telescope at the Cerro Tololo Inter-American Observatory. The NB964 filter profile is essentially defined by maximizing the power of searching for Lyman alpha emitting galaxies (LAEs) in the epoch of reionization, with the consideration of the night sky background in the near-infrared and the DECam quantum efficiency. The NB964 filter was manufactured by Materion in 2015.

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RNA splicing contributes to a broad spectrum of post-transcriptional gene regulation during normal development, as well as pathological manifestation of heart diseases. However, the functional role and regulation of splicing in heart failure remain poorly understood. RNA binding protein (RBP), a major component of the splicing machinery, is a critical factor in this process.

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Introduction: The study aimed to explore the effect of microdissected thin anterolateral thigh (MTALT) perforator flap with multiple perforators on patients with complex defects on the hand, elbow, heel, or knee.

Methods: From March 2012 to February 2013, 5 patients with complex defects on the hand, elbow, heel, or knee were included. During the flap preparation, 2 to 3 perforators penetrating the fascia of the anterolateral femoral area were initially detected, and the deep fascia was incised.

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Using the orthogonal rank of the tensor, a new estimation method for the upper bounds on the nuclear norms is presented and some new tight upper bounds on the nuclear norms are established. Taking into account the structure information of the tensor, an important factor affecting the upper bounds is discussed and some corresponding properties related to the nuclear norms are given. Meanwhile, some new results of the upper bounds on the nuclear norms are obtained.

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RNA binding proteins serve as critical molecular switches in a multitude of post-transcriptional regulatory processes. In the heart and muscles, the tissue specific RNA binding protein, Rbm24, is known to play important developmental roles via driving different post-transcriptional processes. Nonetheless, the currently identified molecular targets and regulatory pathways seem inadequate to completely explain the observed developmental effects upon Rbm24 knockdown/knockout.

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RNA-binding protein Rbm24 is a key regulator of heart development and required for sarcomere assembly and heart contractility. Yet, its underlying mechanism remains unclear. Here, we link serine/threonine kinase 38 (Stk38) signaling to the regulation of Rbm24 by showing that Rbm24 phosphorylation and its function could be modulated by Stk38.

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The transition of embryonic stem cell (ESC) pluripotency to differentiation is accompanied by an expansion of mRNA and proteomic diversity. Post-transcriptional regulation of ESCs is critically governed by cell type-specific splicing. However, little is known about the splicing factors and the molecular mechanisms directing ESC early lineage differentiation.

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