targeted transport
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Pharmaceutics ◽  
2021 ◽  
Vol 13 (12) ◽  
pp. 2039
Author(s):  
Md. Rizwanullah ◽  
Mohammad Zaki Ahmad ◽  
Mohammed M. Ghoneim ◽  
Sultan Alshehri ◽  
Syed Sarim Imam ◽  
...  

Breast cancer therapeutic intervention continues to be ambiguous owing to the lack of strategies for targeted transport and receptor-mediated uptake of drugs by cancer cells. In addition to this, sporadic tumor microenvironment, prominent restrictions with conventional chemotherapy, and multidrug-resistant mechanisms of breast cancer cells possess a big challenge to even otherwise optimal and efficacious breast cancer treatment strategies. Surface-modified nanomedicines can expedite the cellular uptake and delivery of drug-loaded nanoparticulate constructs through binding with specific receptors overexpressed aberrantly on the tumor cell. The present review elucidates the interesting yet challenging concept of targeted delivery approaches by exploiting different types of nanoparticulate systems with multiple targeting ligands to target overexpressed receptors of breast cancer cells. The therapeutic efficacy of these novel approaches in preclinical models is also comprehensively discussed in this review. It is concluded from critical analysis of related literature that insight into the translational gap between laboratories and clinical settings would provide the possible future directions to plug the loopholes in the process of development of these receptor-targeted nanomedicines for the treatment of breast cancer.


2021 ◽  
Author(s):  
Manman Zhang ◽  
Wenliang Gong ◽  
Beina Chen ◽  
Ming Ji ◽  
Binjie Chen ◽  
...  

Abstract Alzheimer's disease (AD) is the prevalent cause of dementia in the ageing world population. Apolipoprotein E4 (ApoE4) allele is the key genetic risk factor for AD, although the mechanisms linking APOE4 with neurocognitive impairments and aberrant metabolism remains to be fully characterised. We discovered significantly increase in the ApoE4 contents of serum exosomes in old healthy subjects and AD patients carrying ApoE4 allele as compared with adult healthy subjects. Elevated exosomal ApoE4 demonstrated significant inverse correlation with serum thyroid hormones level and cognitive function. We analysed effects of ApoE4 in peripheral exosomes on the neurological disorders in aged or thyroidectomied young mice. Ageing-associated hypothyroidism as well as acute thyreoidectomy augmented transport of liver-derived ApoE4 reach exosomes into the brain, where ApoE4 activates NLRP3 inflammasome by increasing cholesterol level in neural cells. This, in turn, affects cognition, locomotion and mood. Our study reveals pathological potential of exosomes-mediated relocation of ApoE4 from the periphery to the brain, which process can represent potential therapeutic target.


2021 ◽  
Author(s):  
Valentina Gifford ◽  
Anna M Woskowicz ◽  
Noriko Ito ◽  
Stefan Balint ◽  
Michael Dustin ◽  
...  

MT1-MMP plays a crucial role in promoting the cellular invasion of cancer cells by degrading the extracellular matrix to create a path for migration. During this process, its localization at the leading edge of migrating cells is critical, and it is achieved by targeted transport of MT1-MMP-containing vesicles along microtubules by kinesin superfamily proteins (KIFs). Here we identified three KIFs involved in MT1-MMP vesicle transport: KIF3A, KIF13A, and KIF9. Knockdown of KIF3A and KIF13A effectively inhibited MT1-MMP-dependent collagen degradation and invasion, while knockdown of KIF9 increased collagen degradation and invasion. Our data suggest that KIF9 competes with KIF3A/KIF13A to bring MT1-MMP vesicles to different locations in the plasma membrane. Live-cell imaging analyses have indicated that KIF3A and KIF13A coordinate to transport the same MT1-MMP-containing vesicles. Taken together, we have identified a unique interplay between three KIFs to regulate leading edge localization of MT1-MMP and MT1-MMP-dependent cancer cell invasion.


Polymers ◽  
2021 ◽  
Vol 13 (7) ◽  
pp. 1000
Author(s):  
Sylwia Łukasiewicz

Clozapine, the second generation antipsychotic drug, is one of the prominent compounds used for treatment of schizophrenia. Unfortunately, use of this drug is still limited due to serious side effects connected to its unspecific and non-selective action. Nevertheless, clozapine still remains the first-choice drug for the situation of drug-resistance schizophrenia. Development of the new strategy of clozapine delivery into well-defined parts of the brain has been a great challenge for modern science. In the present paper we focus on the presentation of a new nanocarrier for clozapine and its use for targeted transport, enabling its interaction with the dopamine D2 and serotonin 5-HT1A heteromers (D2-5-HT1A) in the brain tissue. Clozapine polymeric nanocapsules (CLO-NCs) were prepared using anionic surfactant AOT (sodium docusate) as an emulsifier, and bio-compatible polyelectrolytes such as: poly-L-glutamic acid (PGA) and poly-L-lysine (PLL). Outer layer of the carrier was grafted by polyethylene glycol (PEG). Several variants of nanocarriers containing the antipsychotic varying in physicochemical parameters were tested. This kind of approach may enable the availability and safety of the drug, improve the selectivity of its action, and finally increase effectiveness of schizophrenia therapy. Moreover, the purpose of the manuscript is to cover a wide scope of the issues, which should be considered while designing a novel means for drug delivery. It is important to determine the interactions of a new nanocarrier with many cell components on various cellular levels in order to be sure that the new nanocarrier will be safe and won’t cause undesired effects for a patient.


Polymers ◽  
2021 ◽  
Vol 13 (3) ◽  
pp. 341
Author(s):  
Veronika Subjakova ◽  
Veronika Oravczova ◽  
Tibor Hianik

Polymer nanoparticles and nano/micromotors are novel nanostructures that are of increased interest especially in the diagnosis and therapy of cancer. These structures are modified by antibodies or nucleic acid aptamers and can recognize the cancer markers at the membrane of the cancer cells or in the intracellular side. They can serve as a cargo for targeted transport of drugs or nucleic acids in chemo- immuno- or gene therapy. The various mechanisms, such as enzyme, ultrasound, magnetic, electrical, or light, served as a driving force for nano/micromotors, allowing their transport into the cells. This review is focused on the recent achievements in the development of polymer nanoparticles and nano/micromotors modified by antibodies and nucleic acid aptamers. The methods of preparation of polymer nanoparticles, their structure and properties are provided together with those for synthesis and the application of nano/micromotors. The various mechanisms of the driving of nano/micromotors such as chemical, light, ultrasound, electric and magnetic fields are explained. The targeting drug delivery is based on the modification of nanostructures by receptors such as nucleic acid aptamers and antibodies. Special focus is therefore on the method of selection aptamers for recognition cancer markers as well as on the comparison of the properties of nucleic acid aptamers and antibodies. The methods of immobilization of aptamers at the nanoparticles and nano/micromotors are provided. Examples of applications of polymer nanoparticles and nano/micromotors in targeted delivery and in controlled drug release are presented. The future perspectives of biomimetic nanostructures in personalized nanomedicine are also discussed.


Molecules ◽  
2020 ◽  
Vol 25 (24) ◽  
pp. 6019
Author(s):  
Mirosława Grymel ◽  
Gabriela Pastuch-Gawołek ◽  
Anna Lalik ◽  
Mateusz Zawojak ◽  
Seweryn Boczek ◽  
...  

Pentacyclic lupane-type triterpenoids, such as betulin and its synthetic derivatives, display a broad spectrum of biological activity. However, one of the major drawbacks of these compounds as potential therapeutic agents is their high hydrophobicity and low bioavailability. On the other hand, the presence of easily transformable functional groups in the parent structure makes betulin have a high synthetic potential and the ability to form different derivatives. In this context, research on the synthesis of new betulin derivatives as conjugates of naturally occurring triterpenoid with a monosaccharide via a linker containing a heteroaromatic 1,2,3-triazole ring was presented. It has been shown that copper-catalyzed 1,3-dipolar azide-alkyne cycloaddition reaction (CuAAC) provides an easy and effective way to synthesize new molecular hybrids based on natural products. The chemical structures of the obtained betulin glycoconjugates were confirmed by spectroscopic analysis. Cytotoxicity of the obtained compounds was evaluated on a human breast adenocarcinoma cell line (MCF-7) and colorectal carcinoma cell line (HCT 116). The obtained results show that despite the fact that the obtained betulin glycoconjugates do not show interesting antitumor activity, the idea of adding a sugar unit to the betulin backbone may, after some modifications, turn out to be correct and allow for the targeted transport of betulin glycoconjugates into the tumor cells.


2019 ◽  
Vol 53 (9) ◽  
pp. 845-851 ◽  
Author(s):  
A. I. Skorobogatova ◽  
O. A. Terent’eva ◽  
V. A. Vainshtein ◽  
S. V. Okovityi ◽  
E. V. Flisyuk ◽  
...  

Nanomaterials ◽  
2019 ◽  
Vol 9 (7) ◽  
pp. 948 ◽  
Author(s):  
Celia Nieto ◽  
Ariana Centa ◽  
Jesús A. Rodríguez-Rodríguez ◽  
Atanasio Pandiella ◽  
Eva M. Martín del Valle

Paclitaxel is one of the most widely used chemotherapeutic agents thanks to its effectiveness and broad spectrum of antitumor activity. However, it has a very poor aqueous solubility and a limited specificity. To solve these handicaps, a novel paclitaxel-trastuzumab targeted transport nanosystem has been developed and characterized in this work to specifically treat cancer cells that overexpress the human epidermal growth factor receptor-2 (HER2). Methods: Alginate and piperazine nanoparticles were synthetized and conjugated with paclitaxel:β-cyclodextrins complexes and trastuzumab. Conjugated nanoparticles (300 nm) were characterized and their internalization in HER2-overexpressing tumor cells was analyzed by immunofluorescence. Its specific antitumor activity was studied in vitro using human cell lines with different levels of HER2-expression. Results: In comparison with free paclitaxel:β-cyclodextrins complexes, the developed conjugated nanovehicle presented specificity for the treatment of HER2-overpressing cells, in which it was internalized by endocytosis. Conclusions: It seems that potentially avoiding the conventional adverse effects of paclitaxel treatment could be possible with the use of the proposed mixed nanovehicle, which improves its bioavailability and targets HER2-positive cancer cells.


2019 ◽  
Vol 2 (1) ◽  
Author(s):  
N.D Oltarzhevskaja ◽  
G.E. Krichevskij ◽  
M.A. Korovina ◽  
V.I. Shvets ◽  
A.A. Kubatiev

The review focuses on the analysis of various methods of obtaining and applying therapeutic materials used for targeted drug delivery to the lesion site of cancer patients. Special attention is paid to creation of targeted drugs by using nanotransporters, obtained by dispersing lipids in water and, in particular, liposomes; efficiencyof such nanotransporters depends the nature of drugs introduced into them (cytostatics). The review also describes methods of targeted transport of cytostatics to tumor tissues. The use of hydrogel therapeutic compositions based on biopolymers polysaccharides for the targeted delivery of chemotherapy drugs introduced into them, allows to control the mass transfer rate of drugs to tumor and to create therapeutic materials with predetermined properties in terms of drug concentration in the lesion site and time prolongation, which reduces toxicity of the treatment and increase its effectiveness.


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