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1.
采用发散法合成了以乙二胺为核的聚酰胺-胺型(PAMAM)树状大分子,并应用荧光光谱法研究了生理条件下(pH=7.4)3.0代(G3.0)、3.5代(G3.5)和4.0代(G4.0)PAMAM树状大分子与牛血清白蛋白(BSA)的相互作用.结果表明,三种PAMAM树状大分子都能引起牛血清白蛋白荧光猝灭,其程度主要取决于各自末端基团的性质,猝灭机制属于静态猝灭.G4.0PAMAM,G3.5PAMAM和G3.0PAMAM与BSA的猝灭常数分别为2.73,1.69,1.55L·mmol-1.同时考察了体系pH值及离子强度的变化对PAMAM与BSA相互作用的影响.此外,同步荧光和紫外光谱法(UV)以及红边激发荧光位移(REES)等方法的研究结果表明,PAMAM树状大分子的存在改变了BSA的构象.  相似文献   

2.
采用全原子分子动力学方法系统研究了聚酰胺(PAMAM)型树形大分子非共价搭载4种抗癌药物分子(CE6,DOX,MTX及SN38)的药物传输复合体系.考察了药物分子种类、数量及树形大分子的代数和聚乙二醇化表面修饰对复合体系的结合强度、尺寸及溶剂中扩散行为的影响.研究发现,PAMAM自身变形能对药物-PAMAM间的结合有重要影响.搭载较多的药物分子可以使PAMAM自身增大,但同样搭载条件下经过聚乙二醇化修饰过的PAMAM变化并不明显.PAMAM分子表面的聚乙二醇化可以更高的强度结合更多的药物分子,并减缓其扩散速度,因而提高药物分子的搭载效率和体内滞留时间.为新型树形大分子基药物传输体系的设计提供理论依据.  相似文献   

3.
聚酰胺-胺树状大分子的应用   总被引:10,自引:0,他引:10  
聚酰胺-胺(PAMAM)树状大分子是目前树状大分子化学中研究较为成熟的一类,是三种已经商品化的树状大分子之一,其功能化和应用是目前树状大分子领域的热点。PAMAM已在多个领域显示出良好的应用前景。本文主要对PAMAM在表面活性剂、催化剂、纳米复合材料、金属纳米材料、膜材料、导电材料等方面的应用进行评述。  相似文献   

4.
聚酰胺-胺(PAMAM)树形大分子具有高度支化的分子结构和丰富的叔胺、酰胺和氨基等功能基团,且各功能基团随树形大分子代数增加呈规律性增加和排布,为吸附位点的集中、层次性分布提供了理想的模板。同时,PAMAM树形大分子具有良好的水溶性、稳定性和pH响应性,可通过调控树形大分子的代数、中心核、外层端基以及溶液pH等提升其对不同水体环境的适应性及对目标物的选择性吸附分离性能,因此,以PAMAM树形大分子构筑吸附分离材料在金属离子、染料、生物分子和药物分子以及CO2的吸附分离领域具有重要应用。本文对PAMAM树形大分子吸附分离材料的构筑及应用研究进展进行了全面总结,并展望了该类材料未来的应用前景和发展方向。  相似文献   

5.
树状大分子PAMAM(1G)-FCD的合成及荧光性能   总被引:2,自引:1,他引:1  
合成了外围由小分子2-芴醛修饰的树状大分子PAMAM(1G)-FCD, 用IR, 1H NMR, MALDI-TOF-MS等手段表征了其结构, 并对其荧光性能及Sn2+对该性能的影响进行了研究, 结果表明, Sn2+能使化合物荧光显著增强. 紫外光谱表明, 随着PAMAM(1G)-FCD溶液中Sn2+浓度的增加, 体系在360 nm处出现了新的吸收峰, 表明二者之间存在化学反应. 故该树状分子有望作为难得的蓝光区荧光材料及金属-树状大分子杂化材料.  相似文献   

6.
用3-氨丙基三乙氧基硅烷(KH550)作偶联剂, 在毛细管内壁上逐步合成树枝形大分子聚酰胺-胺(PAMAM), 制得了1, 2和3代PAMAM键合的开管毛细管电色谱柱, 并对其性能进行了研究. 结果表明, 随着大分子代数的增加, 毛细管电渗流(EOF)逐步下降. 利用制得的1, 2和3代PAMAM修饰的开管毛细管电色谱柱对丙氨酸和脯氨酸的分离进行对比, 结果显示, 随着大分子PAMAM代数的增加, 分离度逐步增大, 丙氨酸和脯氨酸可在3代树枝状大分子PAMAM修饰的开管毛细管电色谱柱上达到基线分离. 采用非衍生化法和3代PAMAM修饰的开管毛细管电色谱柱成功地分析了精氨酸、 丙氨酸、 脯氨酸、 甲硫氨酸和组氨酸. 结果表明, 键合毛细管柱具有良好的重现性和稳定性.  相似文献   

7.
聚酰胺-胺树形大分子的合成与应用   总被引:12,自引:0,他引:12  
聚酰胺_胺 (PAMAM)树形大分子是一种从中心核开始增长 ,具有确定代数和末端基的新型合成高分子。由于该化合物具有高度的几何对称性、大量的端基、分子内存在空腔等结构特点 ,在催化、医药、生命科学、工业等领域具有广泛的应用前景。本文通过介绍PAMAM树形大分子的合成、表征方法及其性能研究 ,讨论了其改性研究和应用。  相似文献   

8.
采用小分子联苯甲醛(BPA)分别修饰第一和第二代树状大分子聚酰胺-胺(PAMAM), 合成了2种PAMAM的修饰产物G1-BPA4和G1-BPA8. 利用IR, 1H NMR及MALDI-TOF MS等手段表征了2种产物的结构, 研究了Cu2+浓度对其荧光性能的影响. 结果表明, 在一定的浓度范围内, 作为常见荧光猝灭剂的Cu2+能使2种产物的荧光均显著增强.  相似文献   

9.
聚酰胺-胺(PAMAM)树状大分子对甲氨蝶呤的包合及缓释研究   总被引:3,自引:0,他引:3  
以甲氨蝶呤(MTX)为模型药物,研究了G5.0PAMAM树状大分子对其包合和释放,并用13CNMR对PAMAM-MTX包合物进行了表征.UV-Vis研究结果表明,1个G5.0PAMAM树状大分子能包合27个MTX分子,体外释放研究表明,在37℃,pH=7.4的10mmol/LTris-HCl缓冲溶液中G5.0PAMAM树状大分子对MTX具有明显的缓释作用.  相似文献   

10.
Cu2+对树状大分子PAMAM-FCD荧光性能的影响   总被引:1,自引:0,他引:1  
以小分子2-芴醛(FCD)修饰树状大分子聚酰胺-氨PAMAM, 合成了1~3代树状大分子PAMAM-FCD, 用IR, 1H NMR和MALDI-TOF-MS等手段表征了化合物结构, 研究了Cu2+浓度对其荧光及紫外性能的影响. 结果表明, Cu2+可使其荧光强度和紫外吸收不同程度地增强. 在紫外光谱中, Cu2+自身的吸收峰消失, 表明Cu2+参与配位. PAMAM-FCD有望成为蓝光区荧光材料及树状大分子-铜杂化材料.  相似文献   

11.
Dendrimers are a new class of nanotechnological polymers suitable for drug targeting, microarray systems or detoxication. The present study is devoted to a detailed analysis of binding between PAMAM dendrimers and bovine serum albumin (fatty acid free or loaded with oleic, linoleic, oleic+linoleic or oleic+linoleic+arachodonic acids) by measuring zeta-potential, fluorescence quenching, fluorescence anisotropy and electron paramagnetic resonance. Addition of PAMAM G2 and G6 dendrimers to protein solutions resulted in attachment to the protein molecule. The PAMAM dendrimers also competed with BSA for fatty acids if two or three fatty acids were loaded per protein. This can lead to the extraction of fatty acids from BSA to the PAMAM dendrimer.  相似文献   

12.
含树枝状大分子PAMAM的苯乙烯乳液聚合   总被引:1,自引:0,他引:1  
将树枝状大分子PAMAM (4 5代 )作为种子 ,以苯乙烯为代表性单体进行乳液聚合 .研究结果表明 ,加入树枝状大分子PAMAM时 ,所制得的聚合物乳液粒子平均粒径在 30~ 5 0nm之间 ,小于 10 0nm ,且大小分布均匀 ;所制备的聚合物在 16 70cm- 1 左右处出现酰胺的特征吸收峰 ,在 330 0cm- 1 左右处出现N—H伸缩振动特征峰 ;说明树枝状大分子PAMAM起到种子的作用 ,所制备的聚合物含树枝状大分子PAMAM .  相似文献   

13.
A strong fluorescence emission from poly(amido amine) (PAMAM) dendrimers with different terminal groups or a poly(propylene imine) (PPI) dendrimer was studied under different conditions by varying experimental parameters such as pH value, aging time, temperature, and concentration. The increase of fluorescence intensity was fast at low pH or high temperature but linear with respect to dendrimer concentration. It was reasonable that the formation of a fluorescence-emitting moiety had a close relation to protonated tertiary amine groups in PAMAM or PPI dendrimers. Furthermore, oxidation of the tertiary amines was confirmed to play an important role, which was evidently caused by oxygen in air. The results of fluorescence decay indicated that the deactivation of luminescence was raised with increasing temperature. Dendrimers emitted blue photoluminescence along fiber chain templates on a fluorescent microscope.  相似文献   

14.
Dendrimers, a relatively new group of highly branched three dimensional polymers, are intensively investigated to use them in biomedical and physicochemical sciences. Their specific architecture gives them the ability to interact with many different types of molecules. In our studies the interaction between PAMAM succinamic acid dendrimers generation 4 (PAMAM-SAH G4) and human serum albumin (HSA) was examined. Experiments showed that a single molecule of a HSA can bind approximately 6 particles of dendrimers. The fluorescence studies demonstrated that dendrimers lead to a decrease in protein fluorescence but changes in fluorescence anisotropy were not observed. Alterations in the spectrum of circular dichroism indicated changes in the secondary protein structure. The results clearly show that this generation of dendrimers possesses a strong ability to interact with human serum albumin.  相似文献   

15.
A new side-reaction occurring during divergent synthesis of PAMAM dendrimers (generations G0–G2) was revealed by mass spectrometric detection of defective molecules with a net gain of a single carbon atom as compared to expected compounds. Combining MS/MS experiments performed on different electrosprayed precursor ions (protonated molecules and lithiated adducts) with NMR analyses allowed the origin of these by-products to be elucidated. Modification of one ethylenediamine end-group of perfect dendrimers into a cyclic imidazolidine moiety was induced by formaldehyde present at trace level in the methanol solvent used as the synthesis medium. Dendrimers studied here were purposely constructed from a triethanolamine core to make them more flexible, as compared to NH3- or ethylenediamine-core PAMAM, and hence improve their interaction with DNA. Occurrence of this side-reaction would be favored by the particular flexibility of the dendrimer branches.  相似文献   

16.
Dendrimers are having novel three dimensional, synthetic hyperbranched, nano-polymeric structure. Among all of the dendrimers, Poly-amidoamine (PAMAM) dendrimer are used enormously applying materials in supramolecular chemistry. This review described the structure, characteristic, synthesis, toxicity, and surface modification of PAMAM dendrimer. Various strategies in supramolecular chemistry of PAMAM for synthesizing it at commercial and laboratory scales along with their limitations and applications has also discussed. When compared to other nano polymers, the characteristics of supramolecular PAMAM dendrimers in nanopolymer science has shown significant achievement in transporting drugs for molecular targeted therapy, particularly in host–guest reaction. It also finds its applications in gene transfer devices and imaging of biological systems with minimum cytotoxicity. From that viewpoint, this review has elaborated the structural and safety aspect of PAMAM for targeted drug delivery with pharmaceuticals in addition to the biomedical application.  相似文献   

17.
树枝状大分子或树枝体由于其完美的拓扑结构和周边表面大量反应性的端基,成为一类理想的可用于构筑结构新颖的大分子液晶材料的预组织骨架结构。本文按树枝状大分子骨架的化学结构分类,对侧链型树枝状大分子液晶的设计合成、液晶相行为及其自组织超结构的最新研究进展进行总结和评述,重点介绍了聚酰胺-胺、聚丙烯亚胺、聚碳硅烷、聚醚以及聚酯树枝状大分子液晶体系。近些年对树枝状大分子液晶的系统研究发现了许多新颖液晶介晶相,极大地丰富了热致液晶相态的内涵,拓展了液晶研究范畴。研究表明通过合理的分子设计,通过对介晶基元、树枝体的化学结构及其代数的选择与调控,可以实现丰富多样的液晶介晶相乃至多级有序的自组织超结构。  相似文献   

18.
Dendrimers are unique polymers with globular shapes and well-defined structures. We previously prepared poly(amidoamine) (PAMAM) dendrimers having phenylalanine (Phe) residues at every chain end of the dendrimer as efficient gene carriers. In this study, we found that Phe-derivatized PAMAM dendrimers change their water solubility depending on temperature. The dendrimers were soluble in aqueous solutions at low temperatures, but they became water-insoluble at temperatures above a specific threshold, which is termed the lower critical solution temperature (LCST). Although the LCST of Phe-modified dendrimers decreased with increasing dendrimer generation, these dendrimers exhibited an LCST of 20-30 degrees C under physiological conditions. In addition, the LCST of the dendrimers was controlled by introducing isoleucine (Ile) residues at chain ends of dendrimers at varying ratios with respect to Phe residues. The PAMAM dendrimers are known to encapsulate various drug molecules. For these reasons, temperature-sensitive dendrimers might be useful as efficient drug carriers with controlled size and temperature-responsive properties.  相似文献   

19.
Despite being used as an anti-leukemic drug, the poor solubility of 6-mercaptopurine (6-MP) limits its use in topical and parenteral applications. Dendrimers are commonly used as drug carriers to improve their solubility in aqueous solution. In this work, the interactions between 6-MP and the amine-terminated poly(amidoamine) dendrimers (PAMAM−NH2) were investigated by various NMR technology. The chemical shift titrations disclosed that the 6-MP interacted with the surface of PAMAM−NH2 mainly through electrostatics. The determination of diffusion coefficient and relaxation measurements further confirmed the presence of interactions in 6-MP/PAMAM−NH2 complexes. In addition, the encapsulation of 6-MP within the cavity of PAMAM−NH2 was revealed through nuclear Overhauser effect spectroscopy and Saturation Transfer Double Difference analysis. Finally, the binding strength (H-8 is 100% and H-2 is 70%) of 6-MP to PAMAM−NH2 was quantitatively expressed using epitope maps. This study provides a systematic methodology for qualitative and quantitative studies of the interactions between dendrimers and drug molecules in general.  相似文献   

20.
Dendrimers or biofunctionalized dendrimers can be assembled onto magnetic iron oxide nanoparticles to stabilize or functionalize inorganic nanoparticles. Carboxylated poly(amidoamine) PAMAM dendrimers (generation 4.5) have been used for the synthesis of iron oxide nanoparticles, resulting nanocomposites with potential biomedical applications. The present paper aims to systematically investigate the thermal behaviour of nanostructured hybrids based on ferric oxide and PAMAM dendrimers, by differential scanning calorimetry (DSC) technique. The novelty consists both in synthesis procedure of hybrid nanostructures as well as in DSC approach of these nanocomposites. For the first time, we propose a new method to prepare Fe2O3??dendrimer nanocomposite, using soft chemical process at high pressure. Commercial PAMAM dendrimers with carboxylic groups on its surface were used. When high pressure is applied, polymeric structures suffer morphological changes leading to hybrid nanostructures' formation. In the same time, crystallinity of inorganic nanoparticles is provided. DSC results showed an increase in thermal stability of composites as compared to commercial dendrimers. This could be due to the formation of strong interactions between ferric oxide and carboxyl groups, as confirmed by Fourier transform infrared spectroscopy. Electron microscopy analysis (SEM/EDX) and size measurements were performed to demonstrate the existence of nanosized particles.  相似文献   

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