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40篇 您的检索式:作者名="Ohulchanskyy"
    题名 作者 年代 出处 被引量
1β-淀粉样蛋白斑块的无标记成像及光动力降解显示文摘由β-淀粉样蛋白(Aβ)生成的Aβ斑块是阿尔兹海默症(AD)产生的重要病理特征之一。在阿尔兹海默症治疗的相关研究中,实现对Aβ斑块的有效检测和降解是需要解决的重要科学问题。由于Aβ单体聚集成斑块后具有较强的自体荧光,因此本研究利用非线性光学成像方法实现对Aβ斑块的无标记成像,同时利用光敏剂的光动力效应对Aβ斑块进行降解。比较了不同浓度下光敏剂对Aβ斑块的降解效果,制备了相应的脂质体并成功地将其用于对Aβ斑块的降解。探讨了无标记光学成像及光动力疗法在阿尔兹海默症研究中的潜在应用价值,为优化阿尔兹海默症的诊断和治疗提供了新的途径。黄燕霞 许皓 栾萍 Ohulchanskyy Tymish Y 屈军乐 2020中国激光2020,47,2:4
2Optical tracking of organically modified silica nanoparticles as DNA carriers: a nonviral, nanomedicine approach for gene delivery 显示文摘Roy I Ohulchanskyy TY Bharali DJ 2005Proc Natl Acad Sci USA2005,102,2:1
3Photolumineseent Carbon Dots as Bioeompatible Nanoprobes for Targetingeaneer Cells in Vitro显示文摘Li Q Ohulchanskyy T Y Liu R L 2010Tournal of Physical Chemistry C2010,114,12:1
4Photoluminescent carbon dots as biocompatible nanoprobes for targeting cancer cells in vitro 显示文摘Li Q Ohulchanskyy TY Liu R 2010J Phys Chem C2010,114,12:1
5Ceramic-Based Nanoparticles Entrapping Water- Insoluble Photosensitizing Antieancer Drugs: A Novel Drug-carrier System for Photodynamie Therapy 显示文摘ROY I OHULCHANSKYY T Y PUDAVAR H E 2003Journal of the Amerlean Chemical Society2003,125,26:1
6Ceramic-based nanoparticles entrapping water-insoluble photosensitizing anticancer drugs:a novel drug-carrier system for photodynamic therapy显示文摘Roy I Ohulchanskyy T Y Pudavar H E 2003Journal of American Chemistry Society2003,125,26:1
7Optical tracking of organically modified silica nanoparticles as DNA carriers: a nonviral,nanomedicine approach for gene delivery 显示文摘Roy I Ohulchanskyy T Bharali D 2005Proc Natl Acad Sci USA2005,102,2:1
8Ultrasmall monodisperse NaYF4:Yb3+/Tm3 + nanocrystals with enhanced near-infrared to near-infrared upconversion photoluminescence显示文摘Chen G Ohulchanskyy T Y Kumar R 0,,06:1
9Jam Chen Soc显示文摘Dichtel William R Serin Jason M Carine Edder Fréchet Jean M J Michael Matuszewski Tan Loon-seng Ohulchanskyy Tymish Y and Prasad Paras N 2004126:5380-53812004,126,:1
10Optical tracking of organically modified silica nanoparticles as DNA carriers: A nonviral, nanomedicine approach for gene delivery 显示文摘Roy I Ohulchanskyy T Y 2005Proc Natl Acad Sci USA2005,102,2:1
11Diacyllipid micelle-based nanocarrier for magnetically guided delivery of drugs in photodynamic therapy显示文摘Cinteza LO Ohulchanskyy TY Sahoo Y 2006Mol Pharm2006,3,:1
12Ceramic-Based Nanoparticles Entrapping Water-Insoluble Photosensitizing Anticancer Drugs: A Novel Drug Carrier-System for Photodynamic Therapy 显示文摘ROY I OHULCHANSKYY T Y PUDAVAR H E 2003J Am Chem Soc2003,125,:1
13Photoluminescent Carbon Dots as Biocompatible Nanoprobes for Targe- ting Cancer Cells in Vitro 显示文摘LI Q OHULCHANSKYY TY LIU R L 2010The Journal of Physical Chemistry C2010,114,12:1
14显示文摘Chen G Ohulchanskyy T Y Kumar R 2010ACS Nano2010,4,6:1
15Core/shell Na- GdF4 : Nd3+/NaGdF4 nanocrystals with efficient near-infra- red to near-infrared downconversion photoluminescence for bioimaging applications显示文摘Chen G Ohulchanskyy T Y Liu S 2012AC Nano2012,6,:1
16Phospholipid micelle-based magneto-plasmonic nanoforrnulation for magnetic field- directed, imaging- guided photo- induced cancer therapy 显示文摘Ohulchanskyy T Y Kopwitthaya A Jeon M 2013Nanomedicine : Nanoteehnology Biology and Medicine2013,9,8:1
17Photoluminescent Carbon Dots as Biocompatible Nanoprobes for Targeting Cancer Cells in Vitro显示文摘Li Q Ohulchanskyy T Y Liu R 2010Journal of Physical Chemistry C2010,114,12:1
18Ceram- ic-based nanoparticles entrapping water-insoluble pho- tosensitizing anticancer drugs : a novel drug-carrier system for photodynamic therapy 显示文摘Roy I Ohulchanskyy T Y Pudavar H E 2003J Am Chem Soc2003,125,26:1
19Organically modified silica nanoparticles co-encapsulating photosensitizing drug and aggregation-enhanced two-photon absorbing fluorescent dye aggregates for two-photon photodynamic therapy显示文摘Kim S Ohulchanskyy T Y Pudavar H E 2007Journal of the American Chemical Society2007,129,9:1
20Photolumi nescent carbon dots as biocompatihle nanoprobes for targeting cancer cells in vitro显示文摘LI Q OHULCHANSKYY T Y LIU R L 2010The Journal of Physical Chemistry C2010,114,12:1
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