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1.
透明质酸(Hyaluronic acid, HA)是一种天然多糖,具有良好的生物相容性和生物降解性,利用 HA 构建的纳米载体自身就具有肿瘤靶向功能,可以作为抗癌药物载体将药物传递到肿瘤细胞内从而实现精准到达病患处。近年来透明质酸在应用于肿瘤靶向给药系统中的关注越来越多,成为了靶向治疗肿瘤的一大研究热点。基于透明质酸的基本特性和肿瘤靶向的生理学基础,在不同的刺激响应下,透明质酸型纳米给药系统能将药物集中释放于肿瘤的微环境内,更好地杀死肿瘤细胞,同时避免其他正常的组织受到药物损害。本文主要综述了透明质酸型纳米药物输送系统在各种刺激响应下释放药物的最新研究进展。  相似文献   

2.
通过在包覆了金纳米棒的介孔硅表面修饰生物相容性的透明质酸, 得到了具有肿瘤靶向性的多功能药物载体. 实验结果表明, 透明质酸可以通过酰胺键修饰在介孔硅表面, 所得药物载体可在透明质酸酶作用下实现选择性释放. 该体系在近红外区域具有较高的吸收, 可以在近红外光照射下实现光热转换. 细胞实验结果表明, 该多功能药物载体可以有效靶向CD44过量表达的乳腺癌细胞, 通过CD44介导的内吞富集在肿瘤内部, 结合化学药物治疗和光热治疗, 显示出更高的肿瘤细胞凋亡效率.  相似文献   

3.
为了改善在肿瘤治疗过程中,药物载体靶向性差和药物靶点定位效率低等不足,设计了一种能精准靶向肿瘤细胞核,将药物高效递送至作用靶点的多功能纳米载药体系.利用具有细胞核定位能力的两亲性枝化多肽包载化疗药物阿霉素(DOX)形成载药纳米胶束DD,并通过静电作用将具有肿瘤靶向功能的透明质酸(HA)包覆在DD表面,得到具有靶向肿瘤细胞核能力的纳米药物HDD.HA的存在赋予了HDD对肿瘤的靶向功能和电荷屏蔽能力,可增加体系的稳定性,延长其血液循环时间,降低正常组织和细胞对HDD的非特异性摄取,实现其在肿瘤部位的特异性富集和肿瘤细胞的高效摄取.进入肿瘤细胞后,HA层的降解有利于纳米胶束DD在多肽的核定位作用下精准、快速地将DOX递送至细胞核,最终实现高效的肿瘤抑制效果.  相似文献   

4.
化学药物治疗(化疗)是目前临床上治疗肿瘤最有效的方法之一,但传统的给药方式导致药物对肿瘤的靶向性差、药物利用率低。在杀伤肿瘤细胞的同时,化疗药物对人体正常细胞也有很大的损伤,因此在化疗过程中通常伴随着严重的副作用,例如恶心、呕吐以及脱发等。随着肿瘤学和纳米材料的迅速发展,多种纳米药物载体被应用于肿瘤的治疗。纳米药物载体具有提高药物利用率、降低药物的毒副作用等诸多优势,已成为药物递送领域的研究热点。其中,肿瘤微环境响应纳米药物载体在实现肿瘤部位药物的可控释放、载体保护壳的脱除以及肿瘤靶向等方面表现出优异的性能。本文讨论了基于肿瘤微环境的异常生化指标构建肿瘤微环境响应载体的常用策略,并总结了近年来肿瘤微环境响应纳米药物载体用于肿瘤治疗的研究进展,旨在为设计与制备高性能纳米药物载体提供参考。  相似文献   

5.
基因治疗这种堪称革命性的治疗方法,开拓了治疗癌症的新思路,其最关键性问题是实现核酸药物靶向肿瘤组织并精准治疗。核酸药物直接递送存在核酸酶降解代谢、细胞膜上的负电荷排斥现象以及稳定性差等问题,所以核酸药物需要载体协助,成功的载体递送除能使核酸药物在肿瘤区域大量富集外,还要起到药物控释作用,而天然多糖除无毒、生物相容度高、易修饰的特点外,它本身就具有免疫调节、抗肿瘤、抗炎等多种生物活性。本篇总结了最具代表性的五种多糖的结构特征及在核酸药物递送方面的应用,继而归纳了多糖的常用的纳米级载体形式,为构建天然多糖递送核酸的新型载体并将其应用到免疫抗肿瘤治疗研究中奠定基础。  相似文献   

6.
pH响应型纳米载体因具有智能的酸敏或碱敏释药性能,已成为当前一类重要的多功能纳米载体,并得到了研究人员的广泛关注。特别是酸敏性纳米载体,可用于肿瘤弱酸微环境的药物控释,因而对药物的定点释放和癌症的靶向治疗等生物医学应用发挥了积极作用。本文综述了近年来各类pH响应型纳米载体的典型合成方法,系统地介绍了共价键、分子间作用力以及物理结构变化3种方式引发的pH响应释药机制。深入阐述了pH响应型纳米载体的载药性能、体外释药性能、体外细胞毒性、体内抗癌性能及体内分布性能,并详细列举了近年来pH响应型纳米载体的各类实验参数,进而为pH响应型纳米载体的深入研究提供了方法学的借鉴和性能参考。  相似文献   

7.
罗忠  蔡开勇  张蓓璐  段霖  刘艾萍  龚端 《化学进展》2011,23(11):2326-2338
开发新型细胞微环境刺激响应性智能药物控释系统是目前材料学、药理学与临床医学研究的共同热点之一,其目的在于寻求合适的药物载体,提高药物的安全性、有效性及降低药物毒副作用。本文综述了介孔硅功能复合纳米材料在生物医药领域的应用研究进展;通过对其进行特定的化学修饰、生物修饰、物理修饰,不仅能特异性细胞识别靶向,还能针对病变细胞实现药物定点、定时、定量的“生物爆破”释放;这在药物可控释放、靶向癌症治疗、靶向基因递送等领域展示了其广阔的应用前景。同时,本文还系统地分析和总结了各种智能响应性介孔硅纳米储存器的制备方法和响应机制,包括“无机纳米塞-介孔硅”纳米智能控释系统、“有机大分子控制器-介孔硅”智能功能复合型控释系统、“分子开关控制器-介孔硅”自响应性纳米控释系统等,这为设计新型响应性介孔硅纳米储存器系统提供了借鉴与思路。  相似文献   

8.
天然多糖具有来源广泛、价格低廉、良好的生物相容性和生物可降解性等特点,被广泛应用于药物载体研究。天然多糖纳米凝胶内部交联网络结构能有效提高药物的稳定性,且自身带有大量的活性官能团,可以被修饰上靶向配体或者对病灶环境敏感的基团,使药物顺利到达靶向细胞,从而实现药物的可控释放,在提高药效的同时降低药物的毒副作用。该综述介绍了天然多糖类纳米凝胶作为药物载体的研究进展,包括壳聚糖、右旋糖酐、普鲁兰多糖、海藻酸盐、透明质酸以及肝素等天然多糖纳米凝胶用于环境响应药物可控释放和靶向药物治疗的研究状况,并对其未来发展方向进行了展望。  相似文献   

9.
基于环糊精的靶向药物传递系统   总被引:1,自引:0,他引:1  
韩彬  廖霞俐  杨波 《化学进展》2014,26(6):1039-1049
癌症等恶性增殖疾病的靶向治疗有赖于靶向药物传递系统(targeted drug delivery system,TDDS)的开发。环糊精具有低毒、易修饰等优良性质,并可通过与药物分子形成包合物而提高药物的溶解性、稳定性、安全性和生物利用度等,因而具有成为优秀药物载体的潜力。环糊精不仅可以以其本身或修饰环糊精的形式充当载体,还可通过聚轮烷、阳离子聚合物或纳米粒等形式构建有效的药物载体。肿瘤或人体某些病变部位的细胞表面存在过度表达的生物受体如叶酸受体、去唾液酸糖蛋白受体、透明质酸受体、转铁蛋白受体和整合素受体等,可以与其相应的配体产生特异性识别。用适当的化学方法将配体分子如叶酸、单糖或寡糖、透明质酸、转铁蛋白及RGD肽等键接在基于环糊精的载体上,可形成具有靶向性质的药物载体,进而与药物分子一起构筑靶向药物传递系统。这种药物传递系统不仅针对于化学治疗药物,在核酸传递中也得到了丰富的应用。本文综述了基于环糊精的靶向药物传递系统的靶向机理及最新研究进展,并对其发展前景作了展望。  相似文献   

10.
官启潇  郭和泽  窦红静 《化学进展》2021,33(10):1823-1840
纳米载体由于其纳米尺度带来的独特生物功能性,可通过特定设计在生物体内靶向递送各类抗肿瘤药物,具有广泛而重要的应用前景。自肿瘤免疫疗法问世之后,各类纳米载体与肿瘤免疫治疗相结合,逐渐成为提升肿瘤免疫治疗效果的重要手段之一。其中,细胞膜修饰的纳米载体作为一类新型仿生药物载体平台,可使纳米载体获得天然细胞膜的伪装修饰,将细胞膜的特定功能与生物特性转移至纳米载体,使其具有更强的抗免疫清除、血液长循环和肿瘤靶向等特性,同时降低纳米递送系统的免疫原性和细胞毒性,在生物医学应用领域尤其是肿瘤免疫治疗中可发挥更大的作用。本文通过结合免疫治疗的机理,对近年来各种细胞膜修饰纳米载体系统的制备方法、作用机制以及在肿瘤免疫治疗中的应用研究进行综述,并在此基础上对未来的相关探索做出了展望。  相似文献   

11.
Chemotherapy drugs continue to be the main component of oncology treatment research and have been proven to be the main treatment modality in tumor therapy. However, the poor delivery efficiency of cancer therapeutic drugs and their potential off-target toxicity significantly limit their effectiveness and extensive application. The recent integration of biological carriers and functional agents is expected to camouflage synthetic biomimetic nanoparticles for targeted delivery. The promising candidates, including but not limited to red blood cells and their membranes, platelets, tumor cell membrane, bacteria, immune cell membrane, and hybrid membrane are typical representatives of biological carriers because of their excellent biocompatibility and biodegradability. Biological carriers are widely used to deliver chemotherapy drugs to improve the effectiveness of drug delivery and therapeutic efficacy in vivo, and tremendous progress is made in this field. This review summarizes recent developments in biological vectors as targeted drug delivery systems based on microenvironmental stimuli-responsive release, thus highlighting the potential applications of target drug biological carriers. The review also discusses the possibility of clinical translation, as well as the exploitation trend of these target drug biological carriers.  相似文献   

12.
多肽和聚多肽作为一类新型的生物医用材料,由于其具有良好的生物活性、生物可降解性以及生物相容性而备受瞩目.将具有特殊生理功能的多肽作为基因或药物载体、或用于药物修饰等,可以提高基因转染效率,增强药物的靶向治疗效果,降低药物的毒副作用.本文综述了近年来多肽及聚多肽材料在这些生物医学领域的应用及进展,对部分活性肽的作用机制和...  相似文献   

13.
《中国化学》2018,36(6):481-486
Targeted drug delivery has been widely explored for efficient tumor therapy with desired efficacy but minimized side effects. It is widely known that large numbers of DNA‐toxins, such as doxorubicin, genes, reactive oxygen species, serving as therapeutic agents, can result in maximized therapeutic effects via the interaction directly with DNA helix. So after cellular uptake, these agents should be further delivered into cell nuclei to play their essential roles in damaging the DNA helix in cancer cells. Here, we demonstrate the first paradigm established in our laboratory in developing nuclear‐targeted drug delivery systems (DDSs) based on MSNs for enhanced therapeutic efficiency in the hope of speeding their translation into the clinics. Firstly, nuclear‐targeting DDSs based on MSNs, capable of intranuclear accumulation and drug release therein, were designed and constructed for the first time, resulting in much enhanced anticancer effects both in vitro and in vivo. Such an MSNs‐based and nuclear‐targeted drug/agent delivery strategy was further applied to overcome multidrug resistance (MDR) of malignant tumors, intra‐nuclearly deliver therapeutic genes, photosensitizers, radio‐enhancement agents and photothermal agents to realize efficient gene therapy, photodynamic therapy, radiation therapy and photothermal therapy, respectively.  相似文献   

14.
Lipid carrier systems for targeted drug and gene delivery   总被引:19,自引:0,他引:19  
For effective chemotherapy, it is necessary to deliver therapeutic agents selectively to their target sites, since most drugs are associated with both beneficial effects and side effects. The use of lipid dispersion carrier systems, such as lipid emulsions and liposomes, as carriers of lipophilic drugs has attracted particular interest. A drug delivery system can be defined as a methodology for manipulating drug distribution in the body. Since drug distribution depends on the carrier, administration route, particle size of the carrier, lipid composition of the carrier, electric charge of the carrier and ligand density of the targeting carrier, these factors must be optimized. Recently, the lipid carrier system has also been applied to gene delivery systems for gene therapy. However, in both drug and gene medicine cases, a lack of cell-selectivity limits the wide application of this kind of drug and/or gene therapy. Therefore, lipid carrier systems for targeted drug and gene delivery must be developed for the rational therapy. In this review, we shall focus on the progress of research into lipid carrier systems for drug and gene delivery following systemic or local injection.  相似文献   

15.
透明质酸及其衍生物作药物载体   总被引:6,自引:0,他引:6  
张伟  闫翠娥 《化学进展》2006,18(12):1684-1690
透明质酸(HA)具有良好的生物相容性和生物降解性,是优良的药物载体。但其稳定性差,对强酸、强碱、热、自由基及透明质酸酶敏感,容易发生降解而限制了其应用。本文简要介绍HA的基本特性及应用,重点阐述了HA经不同的化学改性方法如酯化、交联、接枝所得衍生物作药物载体的最新研究进展。化学改性赋予了HA一系列的优良特性,如适当的机械强度、特殊的流变学特性、良好的稳定性、靶向性等,可提高、扩大HA作药物载体的性能和应用范围。最后展望了透明质酸及其衍生物作药物载体的应用前景。  相似文献   

16.
堵玉林  梁静 《化学通报》2017,80(9):809-818
传统的抗肿瘤药物大多不具有选择性,在临床治疗中产生了严重的毒副作用。核酸适配体是一种小分子核酸,能够与靶标高亲和性、高特异性地结合。选择与癌症发生发展过程密切相关的生物标记物为靶标进行SELEX过程筛选出的核酸适配体自身可作为药物,也可与药物、siRNA、纳米粒等结合构成靶向给药体系,该体系能靶向作用于特定的肿瘤细胞,降低对正常细胞的毒性,用药量显著降低,药效提高。本文综述了近年来核酸适配体直接作为抗肿瘤药物、药物载体、siRNA载体以及作为纳米材料靶向剂构成多元复合靶向给药体系在肿瘤靶向治疗领域的研究进展。  相似文献   

17.
《中国化学快报》2020,31(6):1345-1356
Cancer is one of the diseases that have the highest mortality,which threatens the human health.Chemotherapy functions as the most widely used strategy in clinic to treat cancer,still exists urgent problems,like lacking selectivity and causing severe side effects.According to detailed researches on the metabolism,functions and histology of cancer tissues,many different features of cancer are uncovered,like lower pH in microenvironment,abnormal redox level in intracellular compartments and elevated expression level of several enzymes and receptors.Recently,the development of smart nanoparticles that response to tumor specific microenvironment has lighted up hope for selective cancer therapy.Herein,this review mainly focuses on pH-sensitive nano scale materials for anti-cancer drug delivery.We summarized the formation progress of acidic tumor microenvironment,the mechanism of pHresponsive drug delivery system and nanomaterials that responsive to acidic pH in tumor microenvironment.  相似文献   

18.
Polymer nano-particles have been widely investigated in the last decade due to a variety of potential applications. In particular, polymers which can self assemble into micellar nano-particles can be effectively used as vehicles for drug delivery. Considerable efforts are underway to develop better drug delivery nano carriers for high drug loading capacity for a wide variety of bioactive compounds. In this study, several new polymers were synthesized in bulk (solventless condition) by a chemo-enzymatic methodology using Candida antarctica lipase B (Novozyme 435) and molecular sieves (MS). The synthesized polymers demonstrated high drug loading capacity and the potential to encapsulate drugs which are poorly soluble in aqueous solvents.  相似文献   

19.
尚青青  白阳  杨靖  步怀天 《化学通报》2022,85(3):287-296
近年来,基于主客体相互作用的超分子纳米载体因其独特的自组装特性在癌症治疗领域引起了广泛的关注。柱芳烃作为一种新型的大环分子,因其独特的化学结构和优越的主客体包合能力而成为近年来研究的热点。本文根据不同的治疗机制综述了柱状链纳米载体及其在化疗、光动力治疗、联合治疗等领域的应用。在此基础上,展望了柱芳烃基纳米载体的研究方向和发展趋势。  相似文献   

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