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Dive into the research topics where Riccardo Baruchello is active.

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Featured researches published by Riccardo Baruchello.


Tetrahedron Letters | 2000

1,5,7-Triazabicyclo[4.4.0]dec-1-ene (TBD), 7-methyl-TBD (MTBD) and the polymer-supported TBD (P-TBD): three efficient catalysts for the nitroaldol (Henry) reaction and for the addition of dialkyl phosphites to unsaturated systems

Daniele Simoni; Riccardo Rondanin; Massimo Morini; Riccardo Baruchello; Francesco Paolo Invidiata

Abstract The 1,5,7-triazabicyclo[4.4.0]dec-5-ene (TBD) and its 7-methyl derivative (MTBD) have been proven to be of great synthetic utility as catalysts in the nitroaldol (Henry) reaction and for the addition of dialkyl phosphites to a variety of carbonyl compounds. The catalysts were in many cases superior to the parent tetramethylguanidine (TMG). In general the reaction proceeds in a few minutes at 0°C. The polymer-supported-TBD (P-TBD) was also proven to be an efficient promoter of the above cited nucleophilic additions.


Journal of Medicinal Chemistry | 2008

Design, synthesis, and biological evaluation of novel aminobisphosphonates possessing an in vivo antitumor activity through a gammadelta-T lymphocytes-mediated activation mechanism.

Daniele Simoni; Nicola Gebbia; Francesco Paolo Invidiata; Marco Eleopra; Paolo Marchetti; Riccardo Rondanin; Riccardo Baruchello; Stefano Provera; Carla Marchioro; Manlio Tolomeo; Luciana Marinelli; Vittorio Limongelli; Ettore Novellino; Aaron Kwaasi; J E Dunford; Simona Buccheri; Nadia Caccamo; Francesco Dieli

A small series of aminobisphosphonates (N-BPs) structurally related to zoledronic acid was synthesized with the aim of improving activity toward activation of human gammadelta T cells and in turn their in vivo antitumor activity. The absence of the 1-OH moiety, together with the position and the different basicity of the nitrogen, appears crucial for antitumor activity. In comparison to zoledronic acid, compound 6a shows a greater ability to activate gammadelta T cells expression (100 times more) and a proapoptotic effect that is better than zoledronic acid. The potent activation of gammadelta T cells, in addition to evidence of the in vivo antitumor activity of 6a, suggests it may be a new potential drug candidate for cancer treatment.


Journal of Medicinal Chemistry | 2008

Novel A-Ring and B-Ring Modified Combretastatin A-4 (CA-4) Analogues Endowed with Interesting Cytotoxic Activity

Daniele Simoni; Romeo Romagnoli; Riccardo Baruchello; Riccardo Rondanin; Giuseppina Grisolia; Marco Eleopra; Michele Rizzi; Manlio Tolomeo; Giuseppe Giannini; Domenico Alloatti; Massimo Castorina; Marcella Marcellini; Claudio Pisano

A novel class of combretastatins, modified at A-ring or both A- and B-rings, mainly by replacement with benzofuran or benzo[b]thiophene, were synthesized. The new heterocombretastatins showed good cytotoxic activity on BMEC and H-460 cell lines. The aminocombretastatin 9f potently inhibits cell growth of BMEC and combretastatin-resistant HT-29 cell lines, with potential interest to treat colon carcinoma. Heterocombretastatins 9a,b inhibit tubulin polymerization similarly to CA-4 by having a binding to colchicine site five times stronger.


Pure and Applied Chemistry | 2001

Retinoic acid and analogs as potent inducers of differentiation and apoptosis. New promising chemopreventive and chemotherapeutic agents in oncology

Daniele Simoni; Riccardo Rondanin; Riccardo Baruchello; Marinella Roberti; Marcello Rossi; Stefania Grimaudo; Natale D'Alessandro; Francesco Paolo Invidiata; Manlio Tolomeo

In this report we will describe the preparation and the biological activity of a novel class of heterocyclic arotinoids endowed with potent cytotoxic and apoptotic acitivity. Structureactivity relationship studies revealed that the different stereochemistry at the C9 double bond of retinoids seems associated with a different biological activity: potent apoptotic activity for the cis-isomers, whereas differentiating activity for the trans structures. An interesting modified Wittig procedure that allows easily to arotinoids will also be described. The substitution of the alkenyl portion with a more flexible oxymethyl or aminomethyl moiety gave compounds with poor activity, whereas isoxazole-bridged arotinoids allowed compounds active also on multidrug-resistant (MDR) leukemia cell lines.


Annals of the New York Academy of Sciences | 2009

Curcumin as a Possible Lead Compound against Hormone‐Independent, Multidrug‐Resistant Breast Cancer

Manuela Labbozzetta; Monica Notarbartolo; Paola Poma; Annamaria Maurici; Luigi Inguglia; Paolo Marchetti; Michele Rizzi; Riccardo Baruchello; Daniele Simoni; Natale D'Alessandro

We examine the possible evidence that the phytochemical curcumin may overcome resistance to hormonal and cytotoxic agents in breast cancer. We present our observations on MCF‐7R, a multidrug‐resistant (MDR) variant of the MCF‐7 breast cancer cell line. In contrast to MCF‐7, MCF‐7R lacks aromatase and estrogen receptor α (ERα) and overexpresses the multidrug transporter ABCB1 and the products of different genes implicated in cell proliferation and survival, like c‐IAP‐1, NAIP, survivin, and COX‐2. Nevertheless, in cytotoxicity and cell death induction assays, we found that the antitumor activity of curcumin is substantial both in MCF‐7 and in MCF‐7R. We elaborated the diketone system of curcumin into different analogues; the benzyloxime and the isoxazole and pyrazole heterocycles showed remarkable increases in the antitumor potency both in the parental and in the MDR MCF‐7 cells. Furthermore, curcumin or, more potently, the isoxazole analogue, produced early reductions in the amounts of relevant gene transcripts that were diverse (i.e., they were relative to Bcl‐2 and Bcl‐XL in MCF‐7 and the inhibitory of apoptosis proteins and COX‐2 in MCF‐7R) in the two cell lines. Thus, the two compounds exhibited the remarkable property of being able to modify their molecular activities according to the distinct characteristics of the parental and MDR cells. We discuss also how curcumin may (1) exert antitumor effects in breast cancer through ER‐dependent and ER‐independent mechanisms; and (2) act as a drug transporter‐mediated MDR reversal agent. Overall, the structure of curcumin may represent the basis for the development of new, effective anticancer agents in hormone‐independent MDR breast cancer.


Journal of Medicinal Chemistry | 2008

Novel Terphenyls and 3,5-Diaryl Isoxazole Derivatives Endowed with Growth Supporting and Antiapoptotic Properties

Daniele Simoni; Riccardo Rondanin; Riccardo Baruchello; Michele Rizzi; Giuseppina Grisolia; Marco Eleopra; Stefania Grimaudo; Antonietta Di Cristina; Maria Rosaria Pipitone; Maria Rita Bongiorno; Mario Arico; Francesco Paolo Invidiata; Manlio Tolomeo

A new study on terphenyl and diaryl-isoxazole and -isoxazoline derivatives, maintaining a common 3-adamantyl-4-hydroxyphenyl moiety, has been conducted to find compounds with growth supporting and antiapoptotic properties. Unexpectedly, diphenyisoxazole derivatives bearing a nitro group replacing the carboxylic function have been found with the highest cell protective activity within the series, in complete and in serum-free conditions. Inhibition of apoptosis induced by daunorubicin has also been observed for the most active compound.


Tetrahedron Letters | 2003

A convenient synthesis of unsymmetrically substituted terphenyls of biologically active stilbenes via a double Suzuki cross-coupling protocol

Daniele Simoni; Giuseppe Giannini; Pier Giovanni Baraldi; Romeo Romagnoli; Marinella Roberti; Riccardo Rondanin; Riccardo Baruchello; Giuseppina Grisolia; Marcello Rossi; Danilo Mirizzi; Francesco Paolo Invidiata; Stefania Grimaudo; Manlio Tolomeo

A double Suzuki cross-coupling protocol has been devised as a practical route to a variety of terphenyls. Good chemoselectivity was observed. Unsymmetrically substituted triphenylenes were also easily prepared.


Chemico-Biological Interactions | 2009

Lack of nucleophilic addition in the isoxazole and pyrazole diketone modified analogs of curcumin; implications for their antitumor and chemosensitizing activities

Manuela Labbozzetta; Riccardo Baruchello; Paolo Marchetti; Maria Concetta Gueli; Paola Poma; Monica Notarbartolo; Daniele Simoni; Natale D’Alessandro

Curcumin (CUR) can be considered as a good lead compound for the design of new anticancer drugs. Further, structure-activity relationship studies may clarify the importance of the redox activities in the antitumor effects of the drug. We have elaborated the alpha,beta-unsaturated 1,3-diketone moiety of CUR into the isoxazole (ISO) and pyrazole (PYR) derivatives. These derivatives should be much less prone to nucleophilic addition than CUR and benzyl mercaptan addition analyses showed that indeed they do not form isolable conjugated products. When compared with CUR, ISO and PYR exhibited increased cell growth inhibitory and pro-apoptotic effects in liver cancer HA22T/VGH cells as well as in other tumor cell types; in contrast to CUR, the antitumor effects of ISO or PYR were not influenced by concomitant administration of N-acetylcysteine, as a source of -SH groups, or buthionine sulfoximine, as an inhibitor of glutathione synthesis. Further, treatment with CUR, but not with ISO or PYR, significantly decreased the content of reduced glutathione in the HA22T/VGH cells. Finally, ISO and PYR lacked the ability of the parent compound to sensitize the HA22T/VGH cells to cisplatin (CIS), an effect which appeared to occur through an interaction of CUR and CIS at the level of the -SH groups. Thus, the ability of interacting with cell thiols might not be requested for the more potent antitumor activities of new diketone modified CUR derivatives, which might rely on other mechanisms, though possibly devoid of chemosensitization capabilities.


Journal of Medicinal Chemistry | 2011

Novel 3,4-isoxazolediamides as potent inhibitors of chaperone heat shock protein 90.

Riccardo Baruchello; Daniele Simoni; Giuseppina Grisolia; Giuseppina Barbato; Paolo Marchetti; Riccardo Rondanin; Stefania Mangiola; Giuseppe Giannini; Tiziana Brunetti; Domenico Alloatti; Grazia Gallo; Andrea Ciacci; Loredana Vesci; Massimo Castorina; Ferdinando Maria Milazzo; Maria Luisa Cervoni; Mario B. Guglielmi; Marcella Barbarino; Rosanna Foderà; Claudio Pisano; Walter Cabri

A structural investigation on the isoxazole scaffold led to the discovery of 3,4-isoxazolediamide compounds endowed with potent Hsp90 inhibitory properties. We have found that compounds possessing a nitrogen atom directly attached to the C-4 heterocycle ring possess in vitro Hsp90 inhibitory properties at least comparable to those of the structurally related 4,5-diarylisoxazole derivatives. A group of compounds from this series of diamides combine potent binding affinity and cell growth inhibitory activity in both series of alkyl- and aryl- or heteroarylamides, with IC50 in the low nanomolar range. The 3,4-isoxazolediamides were also very effective in causing dramatic depletion of the examined client proteins and, as expected for the Hsp90 inhibitors, always induced a very strong increase in the expression levels of the chaperone Hsp70. In vivo studies against human epidermoid carcinoma A431 showed an antitumor effect of morpholine derivative 73 comparable to that induced by the reference compound 10.


Bioorganic & Medicinal Chemistry | 2009

Design, synthesis and biological evaluation of novel stilbene-based antitumor agents

Daniele Simoni; Francesco Paolo Invidiata; Marco Eleopra; Paolo Marchetti; Riccardo Rondanin; Riccardo Baruchello; Giuseppina Grisolia; Ashutosh Tripathi; Glen E. Kellogg; David Durrant; Ray M. Lee

A series of novel stilbene derivatives has been synthesized and studied with the main goal to investigate SAR of the amino compound 1a, as well as to improve its water solubility, a potentially negative aspect of the molecule that could be a serious obstacle for a pre-clinical development. We have obtained derivatives with good cytotoxic activity, in particular, the derivatives 5c and 6b could represent two novel leads for further investigation. Compound 8b, a morpholino-carbamate derivative, prodrug of 1a, has a very good solubility in water, and is active in suppressing growth of tumor cells at a concentration of 5000 nM, which is a concentration 100 times higher than the parent stilbene 1a.

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