Synthesis 2024; 56(04): 561-566
DOI: 10.1055/a-2122-4178
special topic
Synthetic Development of Key Intermediates and Active Pharmaceutical Ingredients (APIs)

Efficient Synthesis of Diethyl, Dialkyl α-Hydroxy-propylenebisphosphonates and Related 5-Phosphonoyl-1,2-oxaphospholane 2-Oxides

Petra Regina Varga
a   Department of Organic Chemistry and Technology, Faculty of Chemical Technology and Biotechnology, Budapest University of Technology and Economics, 1521 Budapest, Hungary
,
Alexandra Belovics
a   Department of Organic Chemistry and Technology, Faculty of Chemical Technology and Biotechnology, Budapest University of Technology and Economics, 1521 Budapest, Hungary
,
Konstantin Karaghiosoff
b   Department Chemie, Ludwig-Maximilians-Universitat München, 81377 München, Butenandtstr. 5–13, Germany
,
Rita Szabó
c   Eötvös Loránd Research Network (ELKH), Research Group of Peptide Chemistry, Eötvös Loránd University, 1117 Budapest, Hungary
d   Department of Genetics, Cell-and Immunobiology, Semmelweis University, 1089, Budapest, Nagyvárad tér 4, Hungary
,
Szilvia Bősze
c   Eötvös Loránd Research Network (ELKH), Research Group of Peptide Chemistry, Eötvös Loránd University, 1117 Budapest, Hungary
,
László Drahos
e   MS Proteomics Research Group, Research Centre for Natural Sciences, 1117 Budapest, Hungary
,
György Keglevich
a   Department of Organic Chemistry and Technology, Faculty of Chemical Technology and Biotechnology, Budapest University of Technology and Economics, 1521 Budapest, Hungary
› Author Affiliations
This project was supported by the National Research, Development and Innovation Office (K134318). Project no. RRF-2.3.1-21-2022-00015 has been implemented with the support provided by the European Union.


Abstract

A series of new dialkyl α-diethylphosphonoylethyl-α-hydroxy-ethylphosphonates were prepared using the Pudovik reaction of the corresponding γ-oxophosphonate with dialkyl phosphites performed on the surface of Al2O3/KF. The adducts revealed unexpected reactivity in the attempted O-acylation reaction, and provided the corresponding 5-phosphonoyl-1,2-oxaphospholane 2-oxides. On treatment with Cs2CO3, instead of the expected rearrangement a cyclization reaction leading to the same ring products took place. Three of the phosphonoylethyl-α hydroxy-ethylphosphonates, along with two phosphonoylmethyl analogues revealed significant and selective anticancer effect on A431 cells, and occasionally, on PC-3 and MDA-MB 231 cells.

Supporting Information



Publication History

Received: 27 April 2023

Accepted after revision: 03 July 2023

Accepted Manuscript online:
04 July 2023

Article published online:
17 August 2023

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  • References

  • 1 Kategaonkar AH, Pokalwar RU, Sonar SS, Gawali VU, Shingate BB, Shingare MS. Eur. J. Med. Chem. 2010; 45: 1128
  • 2 Pokalwar RU, Hangarge RV, Maske PV, Shingare MS. ARKIVOC 2006; (xi): 196
  • 3 Reddy GS, Sundar CS, Prasad SS, Dadapeer ED, Raju CN, Reddy CS. Pharma Chem. 2012; 4: 2208
  • 4 Naidu KR. M, Kumar KS, Arulselvan P, Reddy CB, Lasekan O. Arch. Pharm. Chem. Life Sci. 2012; 345: 957
  • 5 Kalla RM. N, Lee HR, Cao J, Yoo JW, Kim I. New J. Chem. 2015; 39: 3916
  • 6 Rádai Z, Windt T, Nagy V, Füredi A, Kiss NZ, Randelovic I, Tóvári J, Keglevich G, Szakács G, Tóth S. New J. Chem. 2019; 43: 14028
  • 7 Kafarski P, Lejczak B. J. Mol. Catal. B: Enzymol. 2004; 29: 99
  • 8 Patel DV, Rielly-Gauvin K, Ryono DE, Free CA, Rogers WL, Smith SA, DeForrest JM, Oehl RS, Petrillo EW. Jr. J. Med. Chem. 1995; 38: 4557
  • 9 Fields SC. Tetrahedron 1999; 55: 12237
  • 10 Rádai Z, Keglevich G. Molecules 2018; 23: 1493
  • 11 Kumar KS, Reddy CB, Reddy CR, Rani CS, Reddy MV. N. Org. Commun. 2012; 5: 50
  • 12 Mahmood T, Samad K, Zahra T, Ahmadreza B. Chin. J. Chem. 2012; 30: 827
  • 13 Nandre KP, Nandre JP, Patil VS, Bhosale SV. Chem. Biol. Interface 2012; 2: 314
  • 14 Kong D.-L, Liu R.-D, Li G.-Z, Zhang P.-W, Wu M.-S. Asian J. Chem. 2014; 26: 1246
  • 15 Kulkarni MA, Lad UP, Desai UV, Mitragotri SD. C. R. Chim. 2013; 16: 148
  • 16 Ramananarivo HR, Solhy A, Sebti J, Smahi A, Zahouily M, Clark J, Sebti S. ACS Sustainable Chem. Eng. 2013; 403
  • 17 Santhisudha S, Sreelakshmi P, Jayaprakash SH, Kumar BV, Reddy CS. Phosphorus, Sulfur Silicon Relat. Elem. 2015; 190: 1479
  • 18 Keglevich G, Rádai Z, Kiss NZ. Green Proc. Synth. 2017; 6: 197
  • 19 Rádai Z, Szeles P, Kiss NZ, Hegedűs L, Windt T, Nagy V, Keglevich G. Heteroat. Chem. 2018; 29: e21436
  • 20 Keglevich G, Tóth VR, Drahos L. Heteroat. Chem. 2011; 22: 15
  • 21 Texier-Boullet F, Foucaud A. Tetrahedron Lett. 1980; 21: 2161
  • 22 Texier-Boullet F, Foucaud A. Synthesis 1982; 165
  • 23 Texier-Boullet F, Foucaud A. Synthesis 1982; 916
  • 24 Texier-Boullet F, Lequitte M. Tetrahedron Lett. 1986; 27: 3515
  • 25 Smahi A, Solhy A, Tahir R, Sebti S, Mayoral JA, García JI, Fraile JM, Zahouily M. Catal. Commun. 2008; 9: 2503
  • 26 Varga PR, Hägele G, Keglevich G. Tetrahedron Lett. 2021; 68: 152902
  • 27 Keglevich G, Sipos M, Takács D, Greiner I. Heteroat. Chem. 2007; 18: 226
  • 28 Varga PR, Belovics A, Bagi P, Tóth S, Szakács G, Bősze S, Szabó R, Drahos L, Keglevich G. Molecules 2022; 27: 2067
  • 29 Öhler E, Zbiral E. Liebigs Ann. Chem. 1991; 229
  • 30 Kalchhauser H, Öhler E. Helv. Chim. Acta 1991; 74: 417
  • 31 Rádai Z, Szabó R, Szigetvári Á, Kiss NZ, Mucsi Z, Keglevich G. Curr. Org. Chem. 2020; 24: 465