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胞外pH对青菜(Brassica chinensis var.chinensis)花粉质膜内向K^+通道的调节
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作者 范六民 武维华 《自然科学进展(国家重点实验室通讯)》 1999年第10期905-911,共7页
以芸苔属植物青菜为材料,用膜片钳全细胞记录方法研究了胞外pH(4.5,5.8和8.5)对花粉质膜内向K^+通道的调节。在胞外pH为5.8的条件下,电流、电导和不依赖于电压的最大电导均为最大,pH=4.5时稍小,而pH=8.5时显著小于前两者。随胞外pH的升... 以芸苔属植物青菜为材料,用膜片钳全细胞记录方法研究了胞外pH(4.5,5.8和8.5)对花粉质膜内向K^+通道的调节。在胞外pH为5.8的条件下,电流、电导和不依赖于电压的最大电导均为最大,pH=4.5时稍小,而pH=8.5时显著小于前两者。随胞外pH的升高,K_(in)^+电流的半激活电压向更负的方向偏移;pH对K_(in)^+电流的激活动力学有显著影响,pH愈低,电流激活速度愈快。胞外pH对内向K^+电流的调节可能是其调节花粉萌发和花粉管生长的途径之一。 展开更多
关键词 青菜 花粉萌发 质膜 胞外ph值 钾离子通道
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Gold nanorod-photosensitizer conjugate with extracellular pH-driven tumor targeting ability for photothermal/photodynamic therapy 被引量:11
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作者 Nannan Wang Zilong Zhao +7 位作者 Yifan Lv Huanhuan Fan Huarong Bai Hongmin Meng Yuqian Long Ting Fu Xiaobing Zhang Weihong Tan 《Nano Research》 SCIE EI CAS CSCD 2014年第9期1291-1301,共11页
Chlorin e6-pHLIPss-AuNRs, a gold nanorod-photosensitizer conjugate containing a pH (low) insertion peptide (pHLIP) with a disulfide bond which imparts extracellular pH (pHe)-driven tumor targeting ability, has b... Chlorin e6-pHLIPss-AuNRs, a gold nanorod-photosensitizer conjugate containing a pH (low) insertion peptide (pHLIP) with a disulfide bond which imparts extracellular pH (pHe)-driven tumor targeting ability, has been successfully developed for bimodal photodynamic and photothermal therapy. In this bimodal therapy, chlorin e6 (Ce6), a second-generation photosensitizer (PS), is used for photodynamic therapy (PDT). Gold nanorods (AuNRs) are used as a hyperthermia agent for photothermal therapy (PTT) and also as a nanocarrier and quencher of Ce6. pHLIPss is designed as a pile-driven targeting probe to enhance accumulation of Ce6 and AuNRs in cancer cells at low pH. In Ce6- pHLIPss-AuNRs, Ce6 is close to and quenched by AuNRs, causing little PDT effect. When exposed to normal physiological pH 7.4, Ce6-pHLIPs^-AuNRs loosely associate with the cell membrane. However, once exposed to acidic pH 6.2, pHLIP actively inserts into the cell membrane, and the conjugates are translocated into cells. When this occurs, Ce6 separates from the AuNRs as a result of disulfide bond cleavage caused by intracellular glutathione (GSH), and singlet oxygen is produced for PDT upon light irradiation. In addition, as individual PTT agent, AuNRs can enhance the accumulation of PSs in the tumor by the enhanced permeation and retention (EPR) effect. Therefore, as indicated by our data, when exposed to acidic pH, Ce6-pHLIPss-AuNRs can achieve synergistic PTT/PDT bimodality for cancer treatment. 展开更多
关键词 photodynamic therapy photothermal therapy gold nanorods targeting acidity PEPTIDE
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