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- W3136016381 abstract "Tuberculosis (TB) remains a major global threat and has the second-highest mortality rate of infectious diseases. The conventional pharmacotherapy of tuberculosis fails primarily due to inappropriate drug prescriptions, poor patient compliance, and the emergence of multidrug-resistant strains. The chronicity of multiple drug administration is also associated with several side effects and organ toxicity. There are many tools for TB detection such as chest X-rays, blood specimen cultures, and skin tests, but the preferred one is sputum smear microscopy. The above methods have their limitations in terms of cost, time constraints, low diagnostic sensitivity, etc. Medical science is therefore in utmost need of finding new sensitive nanodiagnostic tests that can be fast, inexpensive, and capable of processing any biological sample. Also, there is a need for a better therapeutic regimen involving lower dose frequencies, higher drug concentrations at the infected site, reduced drug-induced toxicities, higher bioavailability, and minimized chances of TB drug resistance. This chapter discusses the clinical perspectives of nanotechnology toward targeting MTB as well as presents a review of various types of nanoparticles for the detection of mycobacterial species in TB diagnosis and treatment. Nanoparticles in the form of nanosuspensions, niosomes, carbon nanotubes, quantum dots, nanoemulsions, and aerosol nanoparticles provide new opportunities for improving both diagnosis and antitubercular treatment." @default.
- W3136016381 created "2021-03-29" @default.
- W3136016381 creator A5021267879 @default.
- W3136016381 date "2021-01-01" @default.
- W3136016381 modified "2023-10-16" @default.
- W3136016381 title "Clinical perspectives of nanotherapy in tuberculosis treatment" @default.
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