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1.
Int J Pharm ; 578: 119098, 2020 Mar 30.
Artículo en Inglés | MEDLINE | ID: mdl-32018018

RESUMEN

Nanoscale materials have contributed changing the way biomedical researchers address the biological and therapeutic limitations of conventional drugs and diagnostic agents. Thanks to a plethora of different materials and synthetic routes, particulate carriers can be designed to modify the half-life of compounds, alter their biodistribution and control the drug release profile, eventually providing an overall clinical benefit to patients. While around 50 nanoformulations (excluding biologics) are already on the market, several challenges still withhold them from unlocking their full translational potential. This review discusses the advantages and current hurdles in the use of nanopharmaceuticals, and describes the most important nanotechnological approaches which have been investigated so far. A focus is given on the record of clinical success and failures and current clinical trends. In an effort to identify opportunities and problems associated with each specific nanosystem, this manuscript underlines the need of a more product-oriented research, that can foster the progress of nanomedicines to the clinic.


Asunto(s)
Nanomedicina , Animales , Sistemas de Liberación de Medicamentos , Humanos , Nanomedicina/clasificación , Nanoestructuras/clasificación , Nanoestructuras/uso terapéutico
2.
Biochim Biophys Acta Gen Subj ; 1861(6): 1478-1485, 2017 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-27578596

RESUMEN

BACKGROUND: Nanotechnology has been in the limelight since its emergence and its products affect everyday lives. Nanomaterials are characterized by features such as size and shape, thus rendering their possible number essentially unlimited, which in turn makes them difficult to study and categorize regarding possible dangers. This work suggests that grouping could allow studying them with limited testing efforts without endangering safety. METHODS: Initially, the materials are identified and grouped according to their applications in health/medicine, as well as on their environmentally-friendly potential. The materials are then categorized using various toxicity classification methods to identify those with highest risks and group them with others that demonstrate similar behavior. RESULTS: The materials studied show promising uses in diagnostics, drug delivery, biosensors, water purification, oil spill cleaning, emission control and other fields. The toxicity risk assessment shows that the majority pose little to moderate risk, however there are certain materials that can be extremely hazardous or even cause death under specific circumstances. A risk mitigation plan was also developed. CONCLUSIONS: Nanomaterials applications, including drug delivery, cancer treatment, waste treatment, solar energy generation etc. can be very beneficiary, but at the same time, these materials can be extremely harmful or even cause death, thus making the need to prioritize research on high risk materials crucial. A clear regulatory framework that addresses both benefits and risks and communicates that information effectively should play an important part in European and worldwide efforts. GENERAL SIGNIFICANCE: The risk analysis validated the impression that there is limited research on nanomaterial toxicity risks, which calls for a more organized approach. The framework outlined in this work can be utilized by researchers as well as government bodies, in order to form regulatory policies and adopt a universally accepted labeling system. This article is part of a Special Issue entitled "Recent Advances in Bionanomaterials" Guest Editor: Dr. Marie-Louise Saboungi and Dr. Samuel D. Bader.


Asunto(s)
Nanomedicina/clasificación , Nanoestructuras/clasificación , Terminología como Asunto , Animales , Humanos , Nanomedicina/métodos , Nanoestructuras/toxicidad , Seguridad del Paciente , Medición de Riesgo , Factores de Riesgo , Pruebas de Toxicidad
3.
Braz. j. pharm. sci ; 49(spe): 33-44, 2013. ilus
Artículo en Inglés | LILACS | ID: lil-686584

RESUMEN

Dendrimers are hyperbranched and perfectly defined macromolecules, constituted of branches emanating from a central core in an iterative fashion. Phosphorhydrazone dendrimers constitute a special family of dendrimers, possessing one phosphorus atom at each branching point. The internal structure of these dendrimers is hydrophobic, but hydrophilic terminal groups can induce the solubility of the whole structure in water. Indeed, the properties of these compounds are mainly driven by the type of terminal groups their bear; this is especially true for the biological properties. For instance, positively charged terminal groups are efficient for transfection experiments, as drug carriers, as anti-prion agents, and as inhibitor of the aggregation of Alzheimer's peptides, whereas negatively charged dendrimers have anti-HIV properties and can influence the human immune system, leading to anti-inflammatory properties usable against rheumatoid arthritis. This review will give the most representative examples of the biological properties of water-soluble phosphorhydrazone dendrimers, organized depending on the type of terminal groups they bear.


Dendrímeros são macromoléculas extremamente ramificadas e perfeitamente definidas constituídas de ramificações que partem de um foco central de uma forma iterativa. Dendrímeros de fosforidrazona constituem uma família especial de dendrímeros, que possuem um átomo de fósforo em cada ponto da ramificação. A estrutura interna destes dendrímeros é hidrofóbica, mas grupos hidrofílicos terminais podem induzir a solubilidade em água de toda estrutura. De fato, as propriedades destes compostos são principalmente orientadas pelos grupos terminais que apresentam, especialmente para as propriedades biológicas. Por exemplo, grupos terminais carregados positivamente são eficientes para experimentos de transfecção, como transportadores de fármacos, agentes antipríons e como inibidores da agregação de peptídeos do Alzheimer, enquanto que dendrímeros carregados negativamente têm propriedades anti-HIV e podem influenciar o sistema imune humano, levando propriedades antiinflamatórias úteis contra artrite reumatoide. Essa revisão dará os exemplos mais representativos das propriedades biológicas de dendrímeros de fosforidrazona solúveis em água, organizados de acordo com os grupos terminais que possuem.


Asunto(s)
Dendrímeros/síntesis química , Nanomedicina/clasificación , Hidrazonas
4.
Vet Parasitol ; 180(1-2): 47-71, 2011 Aug 04.
Artículo en Inglés | MEDLINE | ID: mdl-21680101

RESUMEN

Nanomedicine can be defined as the application of nanotechnology to the prevention and treatment of diseases as well as for diagnosis purposes. In this context, the development of various types of drug-carrier nanodevices offers new strategies for targeted drug delivery, minimising the secondary effects and the toxicity associated to drug widespread to healthy organs or cells. This review is divided in two different parts. The first one summarizes the main types of nanomedicines developed in the past few decades, including drug nanocrystals, polymer therapeutics, lipid-nanosized and polymeric-nanosized drug delivery systems. The second part of our review is devoted, more specifically, to the presentation of polymeric nanoparticles. Here, we discuss various aspects of nanoparticle formulation, characterization, behaviour in the body and some of their potential applications. More particularly we present some approaches for the treatment of cancer, treatment of infectious diseases and the potential of these nanoparticles as adjuvants for vaccination purposes.


Asunto(s)
Sistemas de Liberación de Medicamentos/métodos , Nanomedicina/clasificación , Nanopartículas/uso terapéutico , Animales , Enfermedades Transmisibles/tratamiento farmacológico , Humanos , Lípidos/uso terapéutico , Neoplasias/tratamiento farmacológico , Polímeros/uso terapéutico , Vacunación , Medicina Veterinaria
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