1 |
Characterization of isoniazid incorporation into chitosan-poly(aspartic acid) nanoparticles |
|
|
| Carmen L. Zegarra-Urquia, Julio Santiago, Joel D. Bumgardner, Alexander K. Goroncy, José Vega-Baudrit, Claudia A. Hernández-Escobar, E. Armando Zaragoza-Contreras |
|
| International Journal of Polymeric Materials and Polymeric Biomaterials. 2022; : 1 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
2 |
An Overview of Zinc Oxide Nanoparticles Produced by Plant Extracts
for Anti-tuberculosis Treatments |
|
|
| Farahnaz Behzad, Erfan Sefidgar , Azam Samadi , Wensen Lin , Iman Pouladi, Jiang Pi |
|
| Current Medicinal Chemistry. 2022; 29(1): 86 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
3 |
Challenges and Opportunities of Nanotechnological based Approach for the Treatment of Tuberculosis |
|
|
| Goutam Rath, Deepak Pradhan, Goutam Ghosh, Amit K. Goyal |
|
| Current Pharmaceutical Design. 2021; 27(17): 2026 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
4 |
Nano-based drug delivery optimization for tuberculosis treatment: A review |
|
|
| Madushani H. Dahanayake, Anil C.A. Jayasundera |
|
| Journal of Microbiological Methods. 2021; 181: 106127 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
5 |
Inhalation Delivery of Host Defense Peptides (HDP) using Nano- Formulation Strategies: A Pragmatic Approach for Therapy of Pulmonary Ailments |
|
|
| Suneera Adlakha, Ankur Sharma, Kalpesh Vaghasiya, Eupa Ray, Rahul Kumar Verma |
|
| Current Protein & Peptide Science. 2020; 21(4): 369 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
6 |
Respirable rifampicin-based microspheres containing isoniazid for tuberculosis treatment |
|
|
| Roberta Cassano,Sonia Trombino,Teresa Ferrarelli,Maria Vittoria Mauro,Cristina Giraldi,Maria Manconi,Anna Maria Fadda,Nevio Picci |
|
| Journal of Biomedical Materials Research Part A. 2012; 100A(2): 536 |
|
| [Pubmed] [Google Scholar] [DOI] |
|
7 |
Current trends in malaria and tuberculosis chemotherapy |
|
|
| Aprioku, J.S. |
|
| Advances in Environmental Biology. 2012; 6(2): 534-542 |
|
| [Pubmed] [Google Scholar] |
|
8 |
Respirable rifampicin-based microspheres containing isoniazid for tuberculosis treatment |
|
|
| Cassano, R., Trombino, S., Ferrarelli, T., Mauro, M.V., Giraldi, C., Manconi, M., Fadda, A.M., Picci, N. |
|
| Journal of Biomedical Materials Research - Part A. 2012; 100(2): 536-542 |
|
| [Pubmed] [Google Scholar] |
|
9 |
New serum biomarkers for detection of tuberculosis using surface-enhanced laser desorption/ionization time-of-flight mass spectrometry |
|
|
| Liu, J.-Y., Jin, L., Zhao, M.-Y., Zhang, X., Liu, C.-B., Zhang, Y.-X., Li, F.-J., (...), Li, J.-C. |
|
| Clinical Chemistry and Laboratory Medicine. 2011; 49(10): 1727-1733 |
|
| [Pubmed] [Google Scholar] |
|
10 |
Status of RNTCP in a tuberculosis unit of West Bengal |
|
|
| Singh, R., Basu, G., Mukhopadhyay, K., Deb, T., Sengupta, D., Kalyani, T., Nadia, N. |
|
| National Medical Journal of India. 2011; 24(5): 312 |
|
| [Pubmed] [Google Scholar] |
|
11 |
New serum biomarkers for detection of tuberculosis using surface-enhanced laser desorption/ionization time-of-flight mass spectrometry |
|
|
| Ji-Yan Liu,Lei Jin,Meng-Yuan Zhao,Xin Zhang,Chi-Bo Liu,Yu-Xiang Zhang,Fu-Jian Li,Jian-Min Zhou,Hua-Jun Wang,Ji-Cheng Li |
|
| Clinical Chemistry and Laboratory Medicine. 2011; 49(10) |
|
| [Pubmed] [Google Scholar] [DOI] |
|