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Research progress on hydrogel-based drug therapy in melanoma immunotherapy
( Wei He ),( Yanqin Zhang ),( Yi Qu ),( Mengmeng Liu ),( Guodong Li ),( Luxiang Pan ),( Xinyao Xu ),( Gege Shi ),( Qiang Hao ),( Fen Liu ),( Yuan Gao ) 생화학분자생물학회 2024 BMB Reports Vol.57 No.2
Melanoma is one of the most aggressive skin tumors, and conventional treatment modalities are not effective in treating advanced melanoma. Although immunotherapy is an effective treatment for melanoma, it has disadvantages, such as a poor response rate and serious systemic immune-related toxic side effects. The main solution to this problem is the use of biological materials such as hydrogels to reduce these side effects and amplify the immune killing effect against tumor cells. Hydrogels have great advantages as local slow-release drug carriers, including the ability to deliver antitumor drugs directly to the tumor site, enhance the local drug concentration in tumor tissue, reduce systemic drug distribution and exhibit good degradability. Despite these advantages, there has been limited research on the application of hydrogels in melanoma treatment. Therefore, this article provides a comprehensive review of the potential application of hydrogels in melanoma immunotherapy. Hydrogels can serve as carriers for sustained drug delivery, enabling the targeted and localized delivery of drugs with minimal systemic side effects. This approach has the potential to improve the efficacy of immunotherapy for melanoma. Thus, the use of hydrogels as drug delivery vehicles for melanoma immunotherapy has great potential and warrants further exploration.
Intensifying sulforaphane formation in broccoli sprouts by using other cruciferous sprouts additions
Hao Liang,Yongqin Wei,Ruimin Li,Li Cheng,Qipeng Yuan,Fuping Zheng 한국식품과학회 2018 Food Science and Biotechnology Vol.27 No.4
Sulforaphane is a significant chemopreventive compound which is the predominant glucosinolate in broccoli sprouts. However, the existence of the epithiospecifier protein could direct the hydrolysis of glucosinolates toward sulforaphane nitrile formation instead of sulforaphane. Therefore, the study aimed on improving the yielding of sulforaphane in broccoli sprouts with a new method of the united hydrolysis of cruciferous sprouts. According to the results, the addition of radish, rocket and rape sprouts to broccoli sprouts could promote the hydrolysis of the glucoraphanin to anticancer effective sulforaphane to 2.03, 2.32 and 1.95-fold, respectively, compared to single broccoli sprouts. Meanwhile, the formation of non-bioactive sulforaphane nitrile in these three groups decreased greatly. However, the addition of mustard sprouts had no positive effect. These observations could make a contribution to the potential chemoprotective effects of broccoli sprouts.
Hao-Yu Wang,Jin-Tao Ren,Chen-Chen Weng,Xian-Wei Lv,Zhong-Yong Yuan 한국공업화학회 2021 Journal of Industrial and Engineering Chemistry Vol.100 No.-
Highly efficient and ultrastable nonprecious metal-based electrocatalysts are promising alternatives toplatinum (Pt)-based catalysts in electrocatalyzing oxygen reduction reaction (ORR) process. In thepresent work, nitrogen and sulfur dual-doped hierarchically porous carbon with trapped Mn species(MnNSC-950) was fabricated, which integrates the modulation of the electronic structure for boostedintrinsic activity with the engineering of hierarchical porosity for enriched active sites. The MnNSC-950shows a positive onset potential of 0.95 V and a large limiting current density of 5.4 mA cm 2, which canrival that of the commercial Pt/C catalyst in 0.1 M KOH, together with a robust long-term stability. Moreover, the MnNSC-950 as ORR catalyst in Zn-air battery achieves a high power density of107 mW cm 2 and robust cycling performance over 150 h, exceeding that driven by Pt/C cathode. Theexcellent electrochemical performance is also shown in both neutral and acidic media. This workprovides an enabling route to prepare non-noble metal-based catalysts featuring well-engineeredgeometric and component peculiarities for practical application of energy conversion systems.
Wei-Hai Shi,Hao-Qiang Chao,Nian-Yuan Ye,Hong-Jian Shi 소화기인터벤션의학회 2019 International journal of gastrointestinal interven Vol.8 No.1
Post-surgery small bowel obstruction (SBO) has substantial morbidity and mortality. Even with refinement of surgical technique, SBO still remains challenging with the most common causes of acute hospital admission. Most SBOs can be managed with conservative treatment. However, the pal-liative methods may fail to relieve the symptoms in some clinical settings. Currently, laparotomy is the standard of care for difficult SBO. And lapa-roscopy offers an alternative approach for operative intervention in SBO and was first described by Bastug et al in 1991. Emerging literature dem-onstrated that laparoscopic surgery for SBO is less invasive, resulting in a shorter hospital stay than open surgery. And most recurrent adhesive SBO can be managed with ileus tube placement. This case series is to evaluate the efficacy of transnasal ileus tube placement combined with laparoscopic surgery in the treatment of consecutive 5 cases of refractory SBO post oncologic gastrointestinal surgery.
Wei-Hai Shi,Hao-Qiang Chao,Nian-Yuan Ye,Hong-Jian Shi 소화기인터벤션의학회 2019 Gastrointestinal Intervention Vol.8 No.1
Post-surgery small bowel obstruction (SBO) has substantial morbidity and mortality. Even with refinement of surgical technique, SBO still remains challenging with the most common causes of acute hospital admission. Most SBOs can be managed with conservative treatment. However, the pal-liative methods may fail to relieve the symptoms in some clinical settings. Currently, laparotomy is the standard of care for difficult SBO. And lapa-roscopy offers an alternative approach for operative intervention in SBO and was first described by Bastug et al in 1991. Emerging literature dem-onstrated that laparoscopic surgery for SBO is less invasive, resulting in a shorter hospital stay than open surgery. And most recurrent adhesive SBO can be managed with ileus tube placement. This case series is to evaluate the efficacy of transnasal ileus tube placement combined with laparoscopic surgery in the treatment of consecutive 5 cases of refractory SBO post oncologic gastrointestinal surgery.
Development of an Inductorless Step-Down Converter
Wei-Yu Wang,Jia-Hao Kuo,Kuo-Yuan Lo 전력전자학회 2019 ICPE(ISPE)논문집 Vol.2019 No.5
The objective of this paper is to propose an inductorless non-isolated step-down converter. The proposed converter is composed of multiple charging pump dc-dc converters with interleaving operation. Based on the characteristic of charging pump capacitor, the presented converter does not require an inductor and can obtain the step-down output voltage. Advantages of the proposed converter include: inductorless power conversion, control circuit simplicity, low voltage stress, low input current ripple, low output voltage ripple, and fault-tolerant operation for each dc-dc converter module. Based on the circuit analysis, the power loss can be evaluated with the capacitance of bridge capacitor and switching frequency. Also, with the interleaved operation between the charging pump converters, the current ripple of the input can be reduced without the need of input inductor. The computer simulations and hardware experimental results are shown to verify the performance of the proposed inductorless step-down converter. The peak efficiency from an input voltage 100 V, output voltage 50 V, and output power 75W prototype is around 97.2%.
Fang Hao,Yuan Sun,Yidi Wang,Yang Lv,Pingle Liu,Xiong Wei,Hean Luo 한국화학공학회 2021 Korean Journal of Chemical Engineering Vol.38 No.8
Selective aerobic oxidation of cyclohexane to cyclohexanone and cyclohexanol (KA oil) with high yield under mild and green conditions is still a significant challenge in the current chemical industry. Herein, nitrogen doped graphene loaded non-noble Co (Co-N-rGO) catalysts, prepared by a facile post-impregnation method, exhibited a high catalytic performance and stability in liquid phase cyclohexane oxidation with molecular oxygen. The experiment and characterization results show that N doping in the catalysts promotes Co metal particle dispersion and induces carbon film coating on Co to prevent leaching and agglomeration. Besides, density functional theory (DFT) calculations show that N doping is beneficial to the O-O bonds breaking in cyclohexyl-hydroperoxides (CHHP), thereby promoting the dissociation of CHHP and enhancing the yield to KA oil. In addition, the catalyst can be easily separated without appreciable loss of catalytic activity after recycling for five times, and show potential industrial application value for the catalytic oxidation of cyclohexane to KA oil in the chemical industry.
Abnormal resistanceetemperature characteristic of the melting Bi nanowires
Xue-wei Wang,Chao Ma,Bing-cheng Fang,Zhi-hao Yuan 한국물리학회 2014 Current Applied Physics Vol.14 No.11
There are no reports about the electronic transport behavior of the melting metal nanostructures because the morphology of nanostructures cannot be kept under the melting condition. Here, the electronic properties of the melting Bi nanowires are investigated using the pore confinement of anodic aluminum oxide template. The results indicate that with the increase of temperature the resistance of Bi nanowires has a transition from the positive temperature coefficient of resistance before fusion to the negative one after fusion. Moreover, as the temperature gradually increases, the resistance of the melting Bi nanowires rapidly decreases at first, and then tardily decreases. This research provides fundamental and valuable information for exploring and designing the new electronic devices under the high temperature.