» Authors » S Rinaldo

S Rinaldo

Explore the profile of S Rinaldo including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 10
Citations 112
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Coelli S, Levi V, Del Vecchio Del Vecchio J, Mailland E, Rinaldo S, Eleopra R, et al.
J Neural Eng . 2020 Nov; 18(1). PMID: 33202390
. The subthalamic nucleus (STN) is the most selected target for the placement of the Deep Brain Stimulation (DBS) electrode to treat Parkinson's disease. Its identification is a delicate and...
2.
Levi V, Rinaldo S, Coelli S, Bianchi A, Franzini A, Nardocci N, et al.
Acta Neurochir (Wien) . 2020 Oct; 163(1):211-217. PMID: 33052494
Limited data are available regarding the electrophysiology of status dystonicus (SD). We report simultaneous microelectrode recordings (MERs) from the globus pallidus internus (GPi) of a patient with SD who was...
3.
Coelli S, Levi V, Del Vecchio Del Vecchio J, Mailland E, Rinaldo S, Eleopra R, et al.
Annu Int Conf IEEE Eng Med Biol Soc . 2020 Oct; 2020:3485-3488. PMID: 33018754
Deep brain stimulation (DBS) of the subthalamic nucleus (STN) is an effective treatment for Parkinson's disease, when the pharmacological approach has no more effect. DBS efficacy strongly depends on the...
4.
Paiardini A, Mantoni F, Giardina G, Paone A, Janson G, Leoni L, et al.
Proteins . 2018 Jul; 86(10):1088-1096. PMID: 30040157
Nutrients such as amino acids play key roles in shaping the metabolism of microorganisms in natural environments and in host-pathogen interactions. Beyond taking part to cellular metabolism and to protein...
5.
Rinaldo S, Giardina G, Mantoni F, Paiardini A, Paone A, Cutruzzola F
Methods Mol Biol . 2017 Sep; 1657:431-453. PMID: 28889312
One of the most important signals involved in controlling biofilm formation is represented by the intracellular second messenger 3',5'-cyclic diguanylic acid (c-di-GMP). Since the pathways involved in c-di-GMP biosynthesis and...
6.
Pawar S, Messina M, Rinaldo S, Cutruzzola F, Kaever V, Rampioni G, et al.
J Appl Microbiol . 2015 Oct; 120(1):205-17. PMID: 26497534
Aims: To develop new genetic tools for studying 3',5'-cyclic diguanylic acid (c-di-GMP) signalling in Pseudomonas aeruginosa. Methods And Results: Plasmid pPcdrA::lux, carrying a transcriptional fusion between the c-di-GMP responsive promoter...
7.
Paone A, Marani M, Fiascarelli A, Rinaldo S, Giardina G, Contestabile R, et al.
Cell Death Dis . 2014 Nov; 5:e1525. PMID: 25412303
Reprogramming of cellular metabolism towards de novo serine production fuels the growth of cancer cells, providing essential precursors such as amino acids and nucleotides and controlling the antioxidant and methylation...
8.
Lettieri C, Rinaldo S, Devigili G, Pisa F, Mucchiut M, Belgrado E, et al.
Eur J Neurol . 2014 Jul; 22(6):919-26. PMID: 25041419
Background And Purpose: Bilateral globus pallidus deep brain stimulation (GPi-DBS) represents an effective and relatively safe therapy for different forms of refractory dystonia. The aim of this study was to...
9.
Rinaldo S, Giardina G, Brunori M, Cutruzzola F
Biochem Soc Trans . 2006 Jan; 34(Pt 1):185-7. PMID: 16417517
All denitrifiers can keep the steady-state concentrations of nitrite and nitric oxide (NO) below cytotoxic levels by controlling the expression of denitrification gene clusters by redox signalling through transcriptional regulators...
10.
Rinaldo S, Giardina G, Brunori M, Cutruzzola F
Biochem Soc Trans . 2005 Jan; 33(Pt 1):184-6. PMID: 15667301
In denitrifying bacteria, the concentration of NO is maintained low by a tight control of the expression and activity of nitrite and NO reductases. Regulation involves redox-linked transcription factors, such...