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Shen, Tao,Li, Wei,Wang, Yan-Yan,Zhong, Qing-Qing,Wang, Shu-Qi,Wang, Xiao-Ning,Ren, Dong-Mei,Lou, Hong-Xiang 대한약학회 2014 Archives of Pharmacal Research Vol.37 No.3
In our cell based screening of antitumor ingredients from plants, the EtOH extract of Garcinia bracteata displayed antiproliferative effect against human lung adenocarcinoma A549 cells, human breast cancer MCF-7 cells, and human prostate cancer PC3 cells. Phytochemical investigation of this active extract produced nine ingredients, and their structures were established by analysis of MS and NMR spectra. Antiproliferative evaluation of isolated ingredients on A549, MCF-7 and PC3 cells indicated that a xanthone named isobractatin (1) exhibited potent antiproliferative activity against the above three human cancer cell lines with $IC_{50}$ values ranging from 2.90 to $4.15{\mu}M$. Treatment of PC3 cells with 1 led to an enhancement of the cell apoptosis, and arrested cell cycle in the G0/G1 phase. The G0/G1 phase cycle-related proteins analysis showed that the expressions of cyclins D1 and E were reduced by 1, whereas the protein level of cyclin dependent kinase (CDK) inhibitor P21 was induced. Additionally, 1 enhanced PC3 cell apoptosis by activations of Bax, caspases 3 and 9, and by inhibition of Bcl-2. Our combined data illustrated that isobractatin (1) was the antiproliferative ingredient of G. bracteata against three human cancer cell lines, which exerted its antiproliferatrive effect via cell cycle arrest and induction of apoptosis.
Fei Sun,Hai-Tao Ren,Shih-Yu Huang,Ting-Ting Li,Hao-Kai Peng,Qi Lin,Ching-Wen Lou,Jia-Horng Lin 한국섬유공학회 2020 Fibers and polymers Vol.21 No.7
In this study, electrospun polyvinylidene fluoride (PVDF)-based nanofibrous membranes embedding TiO2 wereprepared and used for photocatalytic degradation and oil/water separation. The nanofibrous membranes were characterizedby scanning electron microscopy (SEM), transmission electronic microscope (TEM), X-ray diffraction (XRD), Fouriertransform infrared spectroscopy (FTIR) spectroscopy, thermal performance analysis, and oil/water separation analysis. Andthe degradation of rhodamine B dye was also investigated. Results showed that the fiber diameter and thermal stability of themembranes decreased with the increasing of TiO2. Meanwhile, the fiber surface roughness and specific surface areaincreased. The analysis of TEM, XRD and FTIR indicated that TiO2 existed in the PVDF membranes. When the TiO2 contentwas 12 %, the fiber diameter of the membranes was about 110 nm, and the photocatalytic degradation of rhodamine B dyeefficiency was up to 97 %. The reaction rate constant was 0.02057 min-1. At 0.01 MPa vacuum, oil separated from watereffectively, which proves that separation can be easily conducted with a low energy cost. Thus, the prepared membranes havea very high application prospect in the purification of reclaimed water and separation of oil and water.
Yue Zhang,Ting-Ting Li,Bing-Chiuan Shiu,Fei Sun,Hai-Tao Ren,Xue-Fei Zhang,Ching-Wen Lou,Jia-Horng Lin 한국섬유공학회 2021 Fibers and polymers Vol.22 No.1
Medical product contamination is a serious threat to patients’ health. However, designing medical covers thatensure Janus performance and outstanding abrasion resistance, mechanical performances has remained a great challenge. Inthis study, a novel Janus nonwoven fabric nonwoven fabric consists of a hydrophilic inner layer of polylactic acid (PLA)/lowmeltingpolylactic acid (LPLA) and a coated outer layer of hydrophobic thermoplastic polyurethane (TPU) is successfullyfabricated. The subsequent PLA/LPLA-TPU textiles exhibits excellent protective performance of inner absorption. Moreover, the coating improves tensile strength and increases abrasion resistance. A mechanism of mechanical failure isfurther studied. This kind of nonwoven fabric is suggested to be a promising candidate for medical covers and health supplies.
Tao Shen,Wei Li,Yan-Yan Wang,Qing-Qing Zhong,Shu-Qi Wang,Xiao-Ning Wang,Dong-Mei Ren,Hongxiang Lou 대한약학회 2014 Archives of Pharmacal Research Vol.37 No.3
In our cell based screening of antitumoringredients from plants, the EtOH extract of Garciniabracteata displayed antiproliferative effect against humanlung adenocarcinoma A549 cells, human breast cancerMCF-7 cells, and human prostate cancer PC3 cells. Phytochemicalinvestigation of this active extract producednine ingredients, and their structures were established byanalysis of MS and NMR spectra. Antiproliferative evaluationof isolated ingredients on A549, MCF-7 and PC3cells indicated that a xanthone named isobractatin (1)exhibited potent antiproliferative activity against the abovethree human cancer cell lines with IC50 values rangingfrom 2.90 to 4.15 lM. Treatment of PC3 cells with 1 led toan enhancement of the cell apoptosis, and arrested cellcycle in the G0/G1 phase. The G0/G1 phase cycle-relatedproteins analysis showed that the expressions of cyclins D1and E were reduced by 1, whereas the protein level of cyclin dependent kinase (CDK) inhibitor P21 was induced. Additionally, 1 enhanced PC3 cell apoptosis by activationsof Bax, caspases 3 and 9, and by inhibition of Bcl-2. Ourcombined data illustrated that isobractatin (1) was theantiproliferative ingredient of G. bracteata against threehuman cancer cell lines, which exerted its antiproliferatriveeffect via cell cycle arrest and induction of apoptosis.
Yao Zhang,Lijuan Zhao,Xiaojiang Guo,Chao Li,Haizhen Li,Hongxiang Lou,Dong-Mei Ren 대한약학회 2016 Archives of Pharmacal Research Vol.39 No.9
Two new compounds (1–2), including a bisabolane-type sesquiterpenoid (1), one new diphenyl ether derivative (2), together with 23 known compounds (3–25), were isolated from the fruits of Phyllanthus emblica. Their structures were elucidated by detailed spectroscopic analysis. All the isolated compounds were screened for the DPPH scavenging effects and cytoprotective effects against H2O2 induced PC12 cells injury. Compounds 12–15 showed significant DPPH scavenging effects with the IC50 values in the range of 3.25–4.18 lM. Among these potential antioxidants, compound 14 improved the survival of PC12 cells after H2O2 exposure without showing any cytotoxicity at the tested concentrations.
Jia-Horng Lin,Lu Yang,Xianjin Hu,Haokai Peng,Haitao Ren,Ting-Ting Li,Ching-Wen Lou 한국공업화학회 2023 Journal of Industrial and Engineering Chemistry Vol.128 No.-
Bacterial infection is one of the major threats to human health worldwide, posing a great challenge to thedevelopment of medical protective materials with efficient filtration and long-lasting antimicrobial properties. In this study, electrospinning technology and non-woven fabrics were combined to construct amicro/nano-structured photodynamic rechargeable and storable antibacterial filtration composite membrane. The filtration efficiency of the composite membrane is as high as 99.99% for 0.5–5 lm particles,and the resistance pressure drop is 85 Pa. In addition, the release of OH and H2O2 from the compositefilm reached 5326.16 lg/g and 711.93 lg/g, respectively. After 7 cycles of quenching, the charging capacityretains more than 70 % of the original. It showed good antimicrobial properties even when storedunder dark conditions for one month. The bactericidal efficiency of the composite membrane againstE. coli and S. aureus exceeded 99% under both dark and light conditions. The development of this simpleand clean micro/nanofiber membrane provides a new idea for exploring photoactive antimicrobial andfiltration materials for medical protection.