Characterization of Nanodiamond-based anti-HIV drug Delivery to the Brain.
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| Abstract |    :  
                  Human Immunodeficiency Virus Type 1 (HIV-1) remains one of the leading causes of death worldwide. Present combination antiretroviral therapy has substantially improved HIV-1 related pathology. However, delivery of therapeutic agents to the HIV reservoir organ like Central nervous system (CNS) remains a major challenge primarily due to the ineffective transmigration of drugs through Blood Brain Barrier (BBB). The recent advent of nanomedicine-based drug delivery has stimulated the development of innovative systems for drug delivery. In this regard, particular focus has been given to nanodiamond due to its natural biocompatibility and non-toxic nature-making it a more efficient drug carrier than other carbon-based materials. Considering its potential and importance, we have characterized unmodified and surface-modified (-COOH and -NH) nanodiamond for its capacity to load the anti-HIV-1 drug efavirenz and cytotoxicity, in vitro. Overall, our study has established that unmodified nanodiamond conjugated drug formulation has significantly higher drug loading capacity than surface-modified nanodiamond with minimum toxicity. Further, this nanodrug formulation was characterized by its drug dissolution profile, transmigration through the BBB, and its therapeutic efficacy. The present biological characterizations provide a foundation for further study of in-vivo pharmacokinetics and pharmacodynamics of nanodiamond-based anti-HIV drugs.  | 
        
| Year of Publication |    :  
                  2018 
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| Journal |    :  
                  Scientific reports 
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| Volume |    :  
                  8 
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| Issue |    :  
                  1 
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| Number of Pages |    :  
                  1603 
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| Date Published |    :  
                  2018 
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| URL |    :  
                  http://dx.doi.org/10.1038/s41598-017-16703-9 
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| DOI |    :  
                  10.1038/s41598-017-16703-9 
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| Short Title |    :  
                  Sci Rep 
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