Luigi G Marzilli
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Explore the profile of Luigi G Marzilli including associated specialties, affiliations and a list of published articles.
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79
Citations
408
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Recent Articles
1.
Lipowska M, Klenc J, Taylor A, Marzilli L
Inorganica Chim Acta
. 2019 Feb;
486:529-537.
PMID: 30804606
Ligands that coordinate via dianionic phosphonate groups have not been widely utilized in radiopharmaceuticals. -(phosphonomethyl)iminodiacetic acid (, PMIDA) and (phosphonomethyl)glycine (, PMG) were investigated as new chelators for the Tc/Re-tricarbonyl...
2.
Ranasinghe K, Marzilli P, Pakhomova S, Marzilli L
Inorg Chem
. 2018 Oct;
57(20):12756-12768.
PMID: 30281298
NMR and X-ray diffraction studies were conducted on Pt(II)LCl complexes prepared with the new N-donor ligands N(SOR)Me dpa (R = Me, Tol; n = 2, 4). These ligands differ from...
3.
Lewis N, Pakhomova S, Marzilli P, Marzilli L
Inorg Chem
. 2017 Aug;
56(16):9781-9793.
PMID: 28771331
Our goal is to develop convenient methods for obtaining trans-[Pt(4-Xpy)Cl] complexes applicable to 4-substituted pyridines (4-Xpy) with limited volatility and water solubility, properties typical of 4-Xpy, with X being a...
4.
Ranasinghe K, Pakhomova S, Marzilli P, Marzilli L
Inorg Chem
. 2017 Jul;
56(14):8462-8477.
PMID: 28682064
[Pt(N(R)-1,1'-Medma)Cl]Cl complexes with tridentate ligands (bis(1-methyl-2-methylimidazolyl)amine, R = H; N-(methyl)bis(1-methyl-2-methylimidazolyl)amine, R = Me) were prepared in order to investigate Pt(N(R)-1,1'-Medma)G adducts (G = monodentate N9-substituted guanine or hypoxanthine derivative). Solution...
5.
Lipowska M, Klenc J, Jarkas N, Marzilli L, Taylor A
Nucl Med Biol
. 2017 Jan;
47:48-55.
PMID: 28110124
Introduction: Tc(CO)-nitrilotriacetic acid, Tc(CO)(NTA), is a new renal tubular agent with pharmacokinetic properties comparable to those of I-OIH but the clearance of Tc(CO)(NTA) and I-OIH is still less than the...
6.
Andrepont C, Marzilli P, Pakhomova S, Marzilli L
J Inorg Biochem
. 2015 Aug;
153:219-230.
PMID: 26239547
Monofunctional Pt(II) complexes bind to G residues in DNA and, if the carrier ligands are bulky, cause DNA structural distortions that lead to anticancer activity. We assessed the steric effects...
7.
Klenc J, Lipowska M, Abhayawardhana P, Taylor A, Marzilli L
Inorg Chem
. 2015 Jun;
54(13):6281-90.
PMID: 26068141
We previously identified two new agents based on the [(99m)Tc(V)O](3+) core with renal clearances in human volunteers 30% higher than that of the widely used clinical tracer (99m)Tc-MAG3 (MAG3(5-) =...
8.
Andrepont C, Pakhomova S, Marzilli P, Marzilli L
Inorg Chem
. 2015 Apr;
54(10):4895-908.
PMID: 25910178
Anticancer-active monofunctional Pt(II) complexes have bulky carrier ligands and bind to G residues in DNA, causing structural distortions. To gain fundamental chemical information on such monofunctional adducts, we assessed the...
9.
Lewis N, Marzilli P, Fronczek F, Marzilli L
Inorg Chem
. 2014 Oct;
53(20):11096-107.
PMID: 25285912
New mononuclear amidine complexes, fac-[Re(CO)3(Me2bipy)(HNC(CH3)(pyppz))]BF4 [(4,4'-Me2bipy (1), 5,5'-Me2bipy (2), and 6,6'-Me2bipy (3)] (bipy = 2,2'-bipyridine), were synthesized by treating the parent fac-[Re(I)(CO)3(Me2bipy)(CH3CN)]BF4 complex with the C2-symmetrical amine 1-(4-pyridyl)piperazine (pyppzH). The...
10.
Margiotta N, Petruzzella E, Platts J, Mutter S, Deeth R, Ranaldo R, et al.
Dalton Trans
. 2014 Aug;
44(8):3544-56.
PMID: 25144401
The anticancer activity of cisplatin is triggered by its formation of intrastrand adducts involving adjacent G residues of DNA. To obtain information on the different conformers that can be formed,...