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Page 1
Best practices for single-cell analysis across modalities.
Heumos L, Schaar AC, Lance C, Litinetskaya A, Drost F, Zappia L, Lücken MD, Strobl DC, Henao J, Curion F; Single-cell Best Practices Consortium; Schiller HB, Theis FJ. Heumos L, et al. Nat Rev Genet. 2023 Aug;24(8):550-572. doi: 10.1038/s41576-023-00586-w. Epub 2023 Mar 31. Nat Rev Genet. 2023. PMID: 37002403 Free PMC article. Review.
An integrated cell atlas of the lung in health and disease.
Sikkema L, Ramírez-Suástegui C, Strobl DC, Gillett TE, Zappia L, Madissoon E, Markov NS, Zaragosi LE, Ji Y, Ansari M, Arguel MJ, Apperloo L, Banchero M, Bécavin C, Berg M, Chichelnitskiy E, Chung MI, Collin A, Gay ACA, Gote-Schniering J, Hooshiar Kashani B, Inecik K, Jain M, Kapellos TS, Kole TM, Leroy S, Mayr CH, Oliver AJ, von Papen M, Peter L, Taylor CJ, Walzthoeni T, Xu C, Bui LT, De Donno C, Dony L, Faiz A, Guo M, Gutierrez AJ, Heumos L, Huang N, Ibarra IL, Jackson ND, Kadur Lakshminarasimha Murthy P, Lotfollahi M, Tabib T, Talavera-López C, Travaglini KJ, Wilbrey-Clark A, Worlock KB, Yoshida M; Lung Biological Network Consortium; van den Berge M, Bossé Y, Desai TJ, Eickelberg O, Kaminski N, Krasnow MA, Lafyatis R, Nikolic MZ, Powell JE, Rajagopal J, Rojas M, Rozenblatt-Rosen O, Seibold MA, Sheppard D, Shepherd DP, Sin DD, Timens W, Tsankov AM, Whitsett J, Xu Y, Banovich NE, Barbry P, Duong TE, Falk CS, Meyer KB, Kropski JA, Pe'er D, Schiller HB, Tata PR, Schultze JL, Teichmann SA, Misharin AV, Nawijn MC, Luecken MD, Theis FJ. Sikkema L, et al. Nat Med. 2023 Jun;29(6):1563-1577. doi: 10.1038/s41591-023-02327-2. Epub 2023 Jun 8. Nat Med. 2023. PMID: 37291214 Free PMC article.
Liposomal amphotericin for secondary prophylaxis: A systematic review and meta-analysis.
Javandoust Gharehbagh F, Roshanzamiri S, Farjami M, Hatami F, Lotfollahi L, Kazeminia N, Hatami F, Shokouhi S, Alavi Darazam I. Javandoust Gharehbagh F, et al. J Oncol Pharm Pract. 2024 May 8:10781552241241317. doi: 10.1177/10781552241241317. Online ahead of print. J Oncol Pharm Pract. 2024. PMID: 38720564 Review.
The cumulative frequency of patients using L-AMB was 148, compared to 341 patients in the NLAMB group. The mortality rates in the L-AMB and NLAMB groups were 10% and 0%, respectively. ...The frequencies of nephropathy and hypokalemia in the L-AMB group were 3 …
The cumulative frequency of patients using L-AMB was 148, compared to 341 patients in the NLAMB group. The mortality rates in the …
Genotyping of Listeria monocytogenes isolates by high-resolution melting curve (HRM) analysis of tandem repeat locus.
Narimisa N, Amraei F, Sholeh M, Mirkalantari S, Razavi S, Kalani BS, Lotfollahi L, Jazi FM. Narimisa N, et al. Braz J Infect Dis. 2022 Mar-Apr;26(2):102348. doi: 10.1016/j.bjid.2022.102348. Epub 2022 Mar 24. Braz J Infect Dis. 2022. PMID: 35341738 Free PMC article.
This bacterium is mainly transmitted to humans through the consumption of contaminated foods. Detection of L. monocytogenes through molecular methods is crucial for food safety and clinical diagnosis. ...In our study, MLVA-HRM (Multiple-Locus Variable-number tandem repeats …
This bacterium is mainly transmitted to humans through the consumption of contaminated foods. Detection of L. monocytogenes through m …
Analysis of virulence genes and molecular typing of Listeria monocytogenes isolates from human, food, and livestock from 2008 to 2016 in Iran.
Heidarlo MN, Lotfollahi L, Yousefi S, Lohrasbi V, Irajian G, Talebi M. Heidarlo MN, et al. Trop Anim Health Prod. 2021 Jan 16;53(1):127. doi: 10.1007/s11250-021-02569-7. Trop Anim Health Prod. 2021. PMID: 33454847
Antimicrobial resistance patterns, virulence factors, and molecular characteristics of these isolates were analyzed using disk diffusion method, sequencing, serotyping, and pulsed-field gel electrophoresis (PFGE). The analysis of 44 L. monocytogenes isolates showed that 72 …
Antimicrobial resistance patterns, virulence factors, and molecular characteristics of these isolates were analyzed using disk diffusion met …
Prevalence, antimicrobial susceptibility and multiplex PCR-serotyping of Listeria monocytogenes isolated from humans, foods and livestock in Iran.
Lotfollahi L, Chaharbalesh A, Ahangarzadeh Rezaee M, Hasani A. Lotfollahi L, et al. Microb Pathog. 2017 Jun;107:425-429. doi: 10.1016/j.micpath.2017.04.029. Epub 2017 Apr 23. Microb Pathog. 2017. PMID: 28445701
The present study investigated the prevalence, antimicrobial susceptibility and serotypes distribution of the isolated L. monocytogenes from Iran. Twenty two (4.97%) of 442 human, food and livestock samples were found to be positive for L. monocytogenes. L. m …
The present study investigated the prevalence, antimicrobial susceptibility and serotypes distribution of the isolated L. monocytogen …
Putative type II toxin-antitoxin systems in Listeria monocytogenes isolated from clinical, food, and animal samples in Iran.
Kalani BS, Irajian G, Lotfollahi L, Abdollahzadeh E, Razavi S. Kalani BS, et al. Microb Pathog. 2018 Sep;122:19-24. doi: 10.1016/j.micpath.2018.06.003. Epub 2018 Jun 4. Microb Pathog. 2018. PMID: 29879433
Presence of 6 detected TA genes in all of the tested isolates demonstrated that TA system could be an antibacterial target in L. monocytogenes; however, more research is needed to explain the actual role of these genes....
Presence of 6 detected TA genes in all of the tested isolates demonstrated that TA system could be an antibacterial target in L. mono …
16 results