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Advances in Experimental Medicine and Biology | 1988

Fluorine-Containing Polyamines: Biochemistry and Potential Applications

Pierre S. Mamont; Nicole Claverie; Fritz Gerhart

Investigations with the fluorinated spermidine analogues show clearly that these compounds have significant potential for studying the metabolism and functions of the polyamines. However, the biochemical and biological properties of these analogues are dissimilar. This is due to the influence of the fluorine substituent(s) on the basicity of the amine function proximal to the fluoromethylene group, this effect being amplified by geminal disubstitution. The monofluorinated spermidine analogues compare well with the natural amine in their ability to regulate the expression of the decarboxylase enzymes, to be substrates of spermine synthase and to support growth of polyamine-deficient cells. It is also likely that 6-monofluorospermine, formed biochemically in situ, shares with spermine similar functions. These findings raise the possibility of using these spermidine analogues to study the metabolism and pharmacology of polyamines in vivo but also to provide more insight into the regulatory role of spermidine in ODC and SAM-DC expression. Another potential application may be the use of these analogues as probes in tumor imaging and therapy control. This indication has been inferred by studies in tumor-bearing animals, using 19F-NMR spectroscopy determination of tissue fluorospermidine and fluorospermine, formed biochemically from the precursors 2-fluoro or 2,2-difluoroputrescine, and which demonstrate preferential accumulation in tumor versus normal tissue. Finally, these monofluorinated spermidine analogues may exert beneficial effects in pathological states associated with polyamine deficiency. These diseases remain however to be identified. Among the difluorinated spermidine analogues, 7,7-difluorospermidine possesses the most interesting properties. This spermidine analogue still possesses ODC and SAM-DC repressing activities although at much higher concentration than spermidine. More importantly it is a potent inhibitor of spermine synthesis both in cultured cells and in vivo due to its efficient competition with spermidine in the spermine synthase reaction. This compound not only depletes tumor cell of its spermine content but, in addition, appears to exert by itself and/or via 6,6-difluorospermine, the product of its metabolism, polyamine antagonist effects. Combined with MAP but also with DFMO, two potent irreversible inhibitors of ODC which block the synthesis of the natural endogenous polyamines, 7,7-difluorospermidine causes an immediate decrease of viability in cultured HTC cells and promotes tumor regression and stabilization in hepatoma-bearing rats.(ABSTRACT TRUNCATED AT 400 WORDS)


European Journal of Organic Chemistry | 1973

Synthesen mit α-metallierten Isocyaniden, XVI1) β-Substituierte α-Formylamino-acrylsäureäthylester aus α-metallierten Isocyanessigestern und Carbonylverbindungen (Formylaminomethylenierung von Carbonylverbindungen)

Ulrich Schöllkopf; Fritz Gerhart; Rolf Schröder; Dieter Hoppe


European Journal of Organic Chemistry | 1976

Synthesen mit α-metallierten Isocyaniden, XXXI. 2-Oxazoline aus α-metallierten Isocyaniden und Carbonylverbindungen. Eine neue Synthese für β-Aminoalkohole

Ulrich Schöllkopf; Fritz Gerhart; Inga Hoppe; Rüdiger Harms; Kurt Hantke; Karl‐Heinz Scheunemann; Eberhard Eilers; Ernst Blume


Angewandte Chemie | 1969

α‐Formylamino‐acrylsäureester aus α‐metallierten Isocyanessigsäureestern und Carbonylverbindungen

Ulrich Schöllkopf; Fritz Gerhart; Rolf Schröder


FEBS Journal | 1975

Hydrogen Exchange at the β‐Carbon of Amino Acids during Transamination

Ulrich Walter; Hilmar Luthe; Hans-Dieter Söling; Fritz Gerhart


Angewandte Chemie | 1969

α‐(Formylamino)acrylic Esters from α‐Metalated Isocyanoacetic Esters and Carbonyl Compounds

Ulrich Schöllkopf; Fritz Gerhart; Rolf Schröder


Angewandte Chemie | 1967

Joddiazoessigsäure‐äthylester und seine Zersetzung zu Äthoxycarbonyl‐jodcarben

Fritz Gerhart; Ulrich Schöllkopf; Horst Schumacher


Angewandte Chemie | 1966

Bis(N,N‐dialkylcarbamoyl)quecksilber‐Verbindungen durch Carbonylierung in Aminen

U. Schöllkopf; Fritz Gerhart


European Journal of Organic Chemistry | 1968

Halogen‐diazoessigsäureäthylester aus Quecksilber‐bis‐diazoessigsäureäthylester

Ulrich Schöllkopf; Fritz Gerhart; Manfred Reetz; Hubert Frasnelli; Horst Schumacher


FEBS Journal | 1988

Fluorinated analogues of spermidine as substrates of spermine synthase.

Jean G. Baillon; Pierre S. Mamont; Joseph Wagner; Fritz Gerhart; Philippe Lux

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Michael Kolb

Karlsruhe Institute of Technology

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U. Schöllkopf

University of Göttingen

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Ernst Blume

University of Göttingen

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