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Fulltext::$fmDatabaseName = "htr_web"
Fulltext::$defaultLayout = "cake_abstract_FullText"
Fulltext::$primaryKey = "_id"
Fulltext::$hasMany = array
Fulltext::$useDbConfig = "default"
Fulltext::$useTable = "fulltexts"
Fulltext::$displayField = "_id"
Fulltext::$id = false
Fulltext::$data = array
Fulltext::$table = "fulltexts"
Fulltext::$_schema = array
Fulltext::$validate = array
Fulltext::$validationErrors = array
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Fulltext::$name = "Fulltext"
Fulltext::$alias = "Fulltext"
Fulltext::$tableToModel = array
Fulltext::$logTransactions = false
Fulltext::$cacheQueries = false
Fulltext::$belongsTo = array
Fulltext::$hasOne = array
Fulltext::$hasAndBelongsToMany = array
Fulltext::$actsAs = NULL
Fulltext::$Behaviors = BehaviorCollection object
Fulltext::$whitelist = array
Fulltext::$cacheSources = true
Fulltext::$findQueryType = "all"
Fulltext::$recursive = 1
Fulltext::$order = NULL
Fulltext::$virtualFields = array
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Fulltext::$__associations = array
Fulltext::$__backAssociation = array
Fulltext::$__insertID = NULL
Fulltext::$__numRows = NULL
Fulltext::$__affectedRows = NULL
Fulltext::$_findMethods = array
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Fulltext::$scheme = Scheme object
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Keyword::$fmDatabaseName = "htr_web"
Keyword::$defaultLayout = "cake_keyword"
Keyword::$primaryKey = "_id"
Keyword::$useDbConfig = "default"
Keyword::$useTable = "keywords"
Keyword::$displayField = "_id"
Keyword::$id = false
Keyword::$data = array
Keyword::$table = "keywords"
Keyword::$_schema = array
Keyword::$validate = array
Keyword::$validationErrors = array
Keyword::$tablePrefix = NULL
Keyword::$name = "Keyword"
Keyword::$alias = "keyword"
Keyword::$tableToModel = array
Keyword::$logTransactions = false
Keyword::$cacheQueries = false
Keyword::$belongsTo = array
Keyword::$hasOne = array
Keyword::$hasMany = array
Keyword::$hasAndBelongsToMany = array
Keyword::$actsAs = NULL
Keyword::$Behaviors = BehaviorCollection object
Keyword::$whitelist = array
Keyword::$cacheSources = true
Keyword::$findQueryType = NULL
Keyword::$recursive = 1
Keyword::$order = NULL
Keyword::$virtualFields = array
Keyword::$__associationKeys = array
Keyword::$__associations = array
Keyword::$__backAssociation = array
Keyword::$__insertID = NULL
Keyword::$__numRows = NULL
Keyword::$__affectedRows = NULL
Keyword::$_findMethods = array
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"conditions" => array(
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"order" => "asc"
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"_key_id_article" => "21604",
"flg" => 1
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"order" => array(),
"fields" => "",
"limit" => ""
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$external = true
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array(
"Fulltext" => array()
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)
$recursive = 0
$stack = array(
"keyword"
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$row = array(
"Fulltext" => array(
"-recid" => "14947",
"-modid" => "4",
"_id" => "21604",
"article_No" => "COM-10-12097",
"web_authors" => "<SPAN class="htr_normal">Katarina Vazdar, Davor Margetić, and Ivan Habuš*</SPAN><br />",
"web_references" => "<SPAN class="htr_normal">1.	</SPAN><SPAN class="htr_normal">M. Arend, B. Westermann, and N. Risch, </SPAN><SPAN class="htr_italic">Angew. Chem. Int. Ed.</SPAN><SPAN class="htr_normal">, 1998, </SPAN><SPAN class="htr_bold">37</SPAN><SPAN class="htr_normal">, 1044</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1002/(SICI)1521-3773(19980504)37:8&lt;1044::AID-ANIE1044&gt;3.0.CO;2-E" target="_new"> CrossRef</a> <BR>2.	</SPAN><SPAN class="htr_normal">M. Tramontini and L. Angiolini, </SPAN><SPAN class="htr_italic">Tetrahedron</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">1990, </SPAN><SPAN class="htr_bold">46</SPAN><SPAN class="htr_normal">, 1791</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4020(01)89752-0" target="_new"> CrossRef</a> <BR>3.	</SPAN><SPAN class="htr_normal">J. Barluenga, F. Fernández-Marí, A. L. Viado, E. Aguilar, and B. Olano, </SPAN><SPAN class="htr_italic">J. Org. Chem.</SPAN><SPAN class="htr_normal">, 1996, </SPAN><SPAN class="htr_bold">61</SPAN><SPAN class="htr_normal">, 5659</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo960494b" target="_new"> CrossRef</a> <BR>4.	</SPAN><SPAN class="htr_normal">G. A. Molander and P. J. Stengel, </SPAN><SPAN class="htr_italic">J. Org. Chem.</SPAN><SPAN class="htr_normal">, 1995, </SPAN><SPAN class="htr_bold">60</SPAN><SPAN class="htr_normal">, 6660</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo00126a005" target="_new"> CrossRef</a> <BR>5.	</SPAN><SPAN class="htr_normal">C. Palomo, J. M. Aizpurua, J. M. García, M. Iturburu, and J. M. Odriozola, </SPAN><SPAN class="htr_italic">J. Org. Chem.</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">1994, </SPAN><SPAN class="htr_bold">59</SPAN><SPAN class="htr_normal">, 5184</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo00097a020" target="_new"> CrossRef</a> <BR>6.	</SPAN><SPAN class="htr_normal">“Enantioselective Synthesis of β-Amino Acids”, ed. by E. Juaristi, VCH, New York, 1997</SPAN><SPAN class="htr_normal">.<BR>7.	</SPAN><SPAN class="htr_normal">G. Cardillo and C. Tomasini, </SPAN><SPAN class="htr_italic">Chem. Soc. Rev.</SPAN><SPAN class="htr_normal">, 1996, </SPAN><SPAN class="htr_bold">25</SPAN><SPAN class="htr_normal">, 117</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1039/cs9962500117" target="_new"> CrossRef</a> <BR>8.	</SPAN><SPAN class="htr_normal">D. Enders, H. Wahl, and W. Bettray, </SPAN><SPAN class="htr_italic">Angew. Chem., Int. Ed. Engl.</SPAN><SPAN class="htr_normal">, 1995, </SPAN><SPAN class="htr_bold">34</SPAN><SPAN class="htr_normal">, 455</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1002/anie.199504551" target="_new"> CrossRef</a> <BR>9.	</SPAN><SPAN class="htr_normal">J. M. M. Verkade, L. J. C. van Hemert, P. Quaedflieg, and F. Rutjes, </SPAN><SPAN class="htr_italic">Chem. Soc. Rev.</SPAN><SPAN class="htr_normal">, 2008, </SPAN><SPAN class="htr_bold">37</SPAN><SPAN class="htr_normal">, 29</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1039/b713885g" target="_new"> CrossRef</a> <BR>10.	</SPAN><SPAN class="htr_normal">A. Cordova, </SPAN><SPAN class="htr_italic">Acc. Chem. Res.</SPAN><SPAN class="htr_normal">, 2004, </SPAN><SPAN class="htr_bold">37</SPAN><SPAN class="htr_normal">, 102</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/ar030231l" target="_new"> CrossRef</a> <BR>11.	</SPAN><SPAN class="htr_normal">S. Kobayashi and H. Ishitani, </SPAN><SPAN class="htr_italic">Chem. Rew.</SPAN><SPAN class="htr_normal">, 1999, </SPAN><SPAN class="htr_bold">99</SPAN><SPAN class="htr_normal">, 1069</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/cr980414z" target="_new"> CrossRef</a> <BR>12.	</SPAN><SPAN class="htr_normal">M. Arend, B. Westermann, and N. Risch, </SPAN><SPAN class="htr_italic">Angew. Chem. Int. Ed.</SPAN><SPAN class="htr_normal">, 1998, </SPAN><SPAN class="htr_bold">37</SPAN><SPAN class="htr_normal">, 1045</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1002/(SICI)1521-3773(19980504)37:8&lt;1044::AID-ANIE1044&gt;3.0.CO;2-E" target="_new"> CrossRef</a> <BR>13.	</SPAN><SPAN class="htr_normal">D. J. Hart and D.-C. Ha, </SPAN><SPAN class="htr_italic">Chem. Rev.</SPAN><SPAN class="htr_normal">, 1989, </SPAN><SPAN class="htr_bold">89</SPAN><SPAN class="htr_normal">, 1447</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/cr00097a003" target="_new"> CrossRef</a> <BR>14.	</SPAN><SPAN class="htr_normal">F. A. Davis, J. M. Szewczyk, and R. E. Reddy, </SPAN><SPAN class="htr_italic">J. Org. Chem.</SPAN><SPAN class="htr_normal">, 1996, </SPAN><SPAN class="htr_bold">61</SPAN><SPAN class="htr_normal">, 2222</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo951917x" target="_new"> CrossRef</a> <BR>15.	</SPAN><SPAN class="htr_normal">G. Cainelli, M. Panunzio, E. Bandini, G. Martelli, and G. Spunta, </SPAN><SPAN class="htr_italic">Tetrahedron,</SPAN><SPAN class="htr_normal"> 1996, </SPAN><SPAN class="htr_bold">52</SPAN><SPAN class="htr_normal">, 1685</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/0040-4020(95)00997-3" target="_new"> CrossRef</a> <BR>16.	</SPAN><SPAN class="htr_normal">S. Kobayashi, M. Araki, and M. Yasuda, </SPAN><SPAN class="htr_italic">Tetrahedron Lett.</SPAN><SPAN class="htr_normal">, 1995, </SPAN><SPAN class="htr_bold">36</SPAN><SPAN class="htr_normal">, 5773</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/0040-4039(95)01096-Z" target="_new"> CrossRef</a> <BR>17.	</SPAN><SPAN class="htr_normal">P. G. Cozzi, B. Di Simone, and A. Umani-Ronchi, </SPAN><SPAN class="htr_italic">Tetrahedron Lett.</SPAN><SPAN class="htr_normal">, 1996, </SPAN><SPAN class="htr_bold">37</SPAN><SPAN class="htr_normal">, 1691</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/0040-4039(96)00108-6" target="_new"> CrossRef</a> <BR>18.	</SPAN><SPAN class="htr_normal">I. Ojima, S. Inaba, and K. Yoshida, </SPAN><SPAN class="htr_italic">Tetrahedron Lett.</SPAN><SPAN class="htr_normal">, 1977, </SPAN><SPAN class="htr_bold">18</SPAN><SPAN class="htr_normal">, 3643</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4039(01)83315-3" target="_new"> CrossRef</a> <BR>19.	</SPAN><SPAN class="htr_normal">G. S. Singh, </SPAN><SPAN class="htr_italic">Tetrahedron</SPAN><SPAN class="htr_normal">, 2003, </SPAN><SPAN class="htr_bold">59</SPAN><SPAN class="htr_normal">, 7631</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4020(03)01099-8" target="_new"> CrossRef</a> <BR>20.	</SPAN><SPAN class="htr_normal">B. Heldreth, T. E. Long, S. Jang, G. S. K. Reddy, E. Turos, S. Dickey, and D. V. Lim, </SPAN><SPAN class="htr_italic">Bioorg. Med. Chem.</SPAN><SPAN class="htr_normal">, 2006, </SPAN><SPAN class="htr_bold">14</SPAN><SPAN class="htr_normal">, 3775</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/j.bmc.2006.01.029" target="_new"> CrossRef</a> <BR>21.	</SPAN><SPAN class="htr_normal">C. D. Guillon, G. A. Koppel, M. J. Brownstein, M. O. Chaney, C. F. Ferris, S.-F. Lu, K. M. Fabio, M. J. Miller, N. D. Heindel, D. C. Hunden, R. D. G. Cooper, S. W. Kaldor, J. J. Skelton, B. A. Dressman, M. P. Clay, M. I. Steinberg, R. F. Brunsf, and N. G. Simon, </SPAN><SPAN class="htr_italic">Bioorg. Med. Chem.</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">2007, </SPAN><SPAN class="htr_bold">15</SPAN><SPAN class="htr_normal">, 2054</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/j.bmc.2006.12.031" target="_new"> CrossRef</a> <BR>22.	</SPAN><SPAN class="htr_normal">A. R. A. S. Deshmukh, B. M. Bhawal, D. Krishnaswamy, V. V. Govande, B. A. Shinkre, and A. Jayanthi, </SPAN><SPAN class="htr_italic">Curr. Med. Chem.</SPAN><SPAN class="htr_normal">, 2004, </SPAN><SPAN class="htr_bold">11</SPAN><SPAN class="htr_normal">, 1889</SPAN><SPAN class="htr_normal">.<BR>23.	</SPAN><SPAN class="htr_normal">B. Alcaide and P. Almendros, </SPAN><SPAN class="htr_italic">Curr. Med. Chem.</SPAN><SPAN class="htr_normal">, 2004, </SPAN><SPAN class="htr_bold">11</SPAN><SPAN class="htr_normal">, 192</SPAN><SPAN class="htr_normal">.<BR>24.	</SPAN><SPAN class="htr_normal">X. Qian, B. Zheng, B. Burke, M. T. Saindane, and D. R. Kronenthal,</SPAN><SPAN class="htr_italic"> J. Org. Chem.</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">2002,</SPAN><SPAN class="htr_bold"> 67</SPAN><SPAN class="htr_italic">, </SPAN><SPAN class="htr_normal">3595</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo010757o" target="_new"> CrossRef</a> <BR>25.	</SPAN><SPAN class="htr_normal">I. Ojima, I. Habuš, M. Zhao, M. Zucco, Y.-H. Park, C. M. Sun, and T. Brigaud, </SPAN><SPAN class="htr_italic">Tetrahedron</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">1992, </SPAN><SPAN class="htr_bold">48</SPAN><SPAN class="htr_normal">, 6985</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4020(01)91210-4" target="_new"> CrossRef</a> <BR>26.	</SPAN><SPAN class="htr_normal">B. Alcaide, P. Almendros, and C. Aragoncillo, </SPAN><SPAN class="htr_italic">Chem. Rev.</SPAN><SPAN class="htr_normal">, 2007, </SPAN><SPAN class="htr_bold">107</SPAN><SPAN class="htr_normal">, 4437</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/cr0307300" target="_new"> CrossRef</a> <BR>27.	</SPAN><SPAN class="htr_normal">A. K. Bose, B. K. Banik, C. Mathur, D. R. Wagle, and M. S. Manhas, </SPAN><SPAN class="htr_italic">Tetrahedron</SPAN><SPAN class="htr_normal">, 2000, </SPAN><SPAN class="htr_bold">56</SPAN><SPAN class="htr_normal">, 5603</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4020(00)00410-5" target="_new"> CrossRef</a> <BR>28.	</SPAN><SPAN class="htr_normal">I. Ojima and F. Delaloge, </SPAN><SPAN class="htr_italic">Chem. Soc. Rev.</SPAN><SPAN class="htr_normal">, 1997, </SPAN><SPAN class="htr_bold">26</SPAN><SPAN class="htr_normal">, 377</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1039/cs9972600377" target="_new"> CrossRef</a> <BR>29.	</SPAN><SPAN class="htr_normal">I. Ojima and I. Habuš, </SPAN><SPAN class="htr_italic">Tetrahedron Lett.</SPAN><SPAN class="htr_normal">, 1990, </SPAN><SPAN class="htr_bold">31</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">4289</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4039(00)97603-2" target="_new"> CrossRef</a> <BR>30.	</SPAN><SPAN class="htr_normal">I. Ojima, I. Habuš, M. Zhao, G. I. Georg, and L. R. Jayasinghe, </SPAN><SPAN class="htr_italic">J. Org. Chem.</SPAN><SPAN class="htr_normal">, 1991, </SPAN><SPAN class="htr_bold">56</SPAN><SPAN class="htr_italic">,</SPAN><SPAN class="htr_normal"> 1681</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo00005a003" target="_new"> CrossRef</a> <BR>31.	</SPAN><SPAN class="htr_normal">T. Poljak, K. Molčanov, A. Višnjevac, I. Habuš, V. Kovač, and V. Rapić, </SPAN><SPAN class="htr_italic">J. Mol. Struct.</SPAN><SPAN class="htr_normal">, 2005, </SPAN><SPAN class="htr_bold">751</SPAN><SPAN class="htr_normal">, 60</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/j.molstruc.2005.04.023" target="_new"> CrossRef</a> <BR>32.	</SPAN><SPAN class="htr_normal">K. Radolović, K. Molčanov, and I. Habuš, </SPAN><SPAN class="htr_italic">J. Mol. Struct.</SPAN><SPAN class="htr_normal">, 2010, </SPAN><SPAN class="htr_bold">966</SPAN><SPAN class="htr_italic">,</SPAN><SPAN class="htr_normal"> 8</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/j.molstruc.2009.11.056" target="_new"> CrossRef</a> <BR>33.	</SPAN><SPAN class="htr_normal">C. Palomo, M. Oiarbide, A. Landa, A. Esnal, and A. Linden, </SPAN><SPAN class="htr_italic">J. Org. Chem.</SPAN><SPAN class="htr_normal">, 2001, </SPAN><SPAN class="htr_bold">66</SPAN><SPAN class="htr_normal">, 4180</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/jo001786m" target="_new"> CrossRef</a> <BR>34.	</SPAN><SPAN class="htr_normal">N. Hatanaka, R. Abe, and I. Ojima, </SPAN><SPAN class="htr_italic">Chem. Lett.</SPAN><SPAN class="htr_normal">, 1982, </SPAN><SPAN class="htr_bold">11</SPAN><SPAN class="htr_italic">,</SPAN><SPAN class="htr_normal"> 445</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1246/cl.1982.445" target="_new"> CrossRef</a> <BR>35.	</SPAN><SPAN class="htr_normal">P. R. Bonneau, F. Hasani, C. Plouffe, E. Malenfant, S. R. LaPlante, I. Guse, W. W. Ogilvie, R. Plante, W. C. Davidson, J. L. Hopkins, M. M. Morelock, M. G. Cordingley, and R. Déziel,</SPAN><SPAN class="htr_italic"> J. Am. Chem. Soc.</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">1999, </SPAN><SPAN class="htr_bold">121</SPAN><SPAN class="htr_italic">, </SPAN><SPAN class="htr_normal">2965</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/ja983905+" target="_new"> CrossRef</a> <BR>36.	</SPAN><SPAN class="htr_normal">T. C. Maier and J. Podlech,</SPAN><SPAN class="htr_italic"> Eur. J. Org. Chem.</SPAN><SPAN class="htr_normal">,</SPAN><SPAN class="htr_italic"> </SPAN><SPAN class="htr_normal">2004, 4379</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1002/ejoc.200400295" target="_new"> CrossRef</a> <BR>37.	</SPAN><SPAN class="htr_normal">M. Gómez-Gallego, M. J. Mancheño, and M. A. Sierra, </SPAN><SPAN class="htr_italic">Tetrahedron</SPAN><SPAN class="htr_normal">, 2000, </SPAN><SPAN class="htr_bold">56</SPAN><SPAN class="htr_normal">, 5743</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4020(00)00378-1" target="_new"> CrossRef</a> <BR>38.	</SPAN><SPAN class="htr_normal">T. Poljak, K. Molčanov, D. Margetić, and I. Habuš, </SPAN><SPAN class="htr_italic">Croat. Chem. Acta</SPAN><SPAN class="htr_normal">, 2008, </SPAN><SPAN class="htr_bold">81</SPAN><SPAN class="htr_normal">, 539</SPAN><SPAN class="htr_normal">.<BR>39.	</SPAN><SPAN class="htr_normal">V. Kovač, K. Radolović, I. Habuš, D. Siebler, K. Heinze, and V. Rapić, </SPAN><SPAN class="htr_italic">Eur. J. Inorg. Chem.</SPAN><SPAN class="htr_normal">, 2009, </SPAN><SPAN class="htr_bold">3</SPAN><SPAN class="htr_normal">, 389</SPAN><SPAN class="htr_normal">.<BR>40.	</SPAN><SPAN class="htr_normal">K. Radolović, I. Habuš, and B. Kralj, </SPAN><SPAN class="htr_italic">Heterocycles</SPAN><SPAN class="htr_normal">, 2009, </SPAN><SPAN class="htr_bold">78</SPAN><SPAN class="htr_normal">, 1729</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.3987/COM-09-11668" target="_new"> CrossRef</a> <BR>41.	</SPAN><SPAN class="htr_normal">I. Ojima, “Advances in Asymmetric Synthesis: Asymmetric Syntheses by Means of the </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-Lactam Synthon Method”</SPAN><SPAN class="htr_italic">,</SPAN><SPAN class="htr_normal"> Vol. 1, ed. by A. Hassner, Jai Press, Inc., Greenwich, CT, 1995, pp. 95-147</SPAN><SPAN class="htr_normal">.<BR>42.	</SPAN><SPAN class="htr_normal">X.-X. Yan, Q. Peng, Q. Li, K. Zhang, J. Yao, X.-L. Hou, and Y.-D. Wu, </SPAN><SPAN class="htr_italic">J. Am. Chem. Soc</SPAN><SPAN class="htr_normal">., 2008, </SPAN><SPAN class="htr_bold">130</SPAN><SPAN class="htr_normal">, 14362</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1021/ja804527r" target="_new"> CrossRef</a> <BR>43.	</SPAN><SPAN class="htr_normal">K. Ishimaru and T. Kojima, </SPAN><SPAN class="htr_italic">Tetrahedron Lett.</SPAN><SPAN class="htr_normal">, 2003, </SPAN><SPAN class="htr_bold">44</SPAN><SPAN class="htr_normal">, 5441</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0040-4039(03)01314-5" target="_new"> CrossRef</a> <BR>44.	</SPAN><SPAN class="htr_normal">H. Takahashi, Y. Suzuki, and H. Inagaki, </SPAN><SPAN class="htr_italic">Chem. Pharm. Bull.</SPAN><SPAN class="htr_normal">, 1982, </SPAN><SPAN class="htr_bold">30</SPAN><SPAN class="htr_normal">, 3160</SPAN><SPAN class="htr_normal">.<BR>45.	</SPAN><SPAN class="htr_normal">D. Enders and U. Reinhold, </SPAN><SPAN class="htr_italic">Tetrahedron: Asymmetry</SPAN><SPAN class="htr_normal">, 1997, </SPAN><SPAN class="htr_bold">8</SPAN><SPAN class="htr_normal">, 1895</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/S0957-4166(97)00208-5" target="_new"> CrossRef</a> <BR>46.	</SPAN><SPAN class="htr_normal">R. Badorrey, C. Cativiela, M. D. Díaz-de-Villegas, and J. A. Gálvez, </SPAN><SPAN class="htr_italic">Tetrahedron Lett.</SPAN><SPAN class="htr_normal">, 2003, </SPAN><SPAN class="htr_bold">44</SPAN><SPAN class="htr_normal">, 9189</SPAN><SPAN class="htr_normal">.<a href="http://dx.doi.org/10.1016/j.tetlet.2003.10.027" target="_new"> CrossRef</a> <BR>47.	</SPAN><SPAN class="htr_normal">A. D. Becke, </SPAN><SPAN class="htr_italic">J. Chem. Phys.</SPAN><SPAN class="htr_normal">, 1993, </SPAN><SPAN class="htr_bold">98</SPAN><SPAN class="htr_normal">, 1372; C. Lee, W. Yang, and R. G. Parr, </SPAN><SPAN class="htr_italic">Phys. Rev. B</SPAN><SPAN class="htr_normal">, 1988, </SPAN><SPAN class="htr_bold">37</SPAN><SPAN class="htr_italic">,</SPAN><SPAN class="htr_normal"> 785</SPAN><SPAN class="htr_normal">.<BR>48.	</SPAN><SPAN class="htr_italic">Gaussian 03</SPAN><SPAN class="htr_normal">, Revision C.02, M. J. Frisch, G. W. Trucks, H. B. Schlegel, G. E. Scuseria, M. A. Robb, J. R. Cheeseman, J. A. Montgomery Jr, T. Vreven, K. N. Kudin, J. C. Burant, J. M. Millam, S. S. Iyengar, J. Tomasi, V. Barone, B. Mennucci, M. Cossi, G. Scalmani, N. Rega, G. A. Petersson, H. Nakatsuji, M. Hada, M. Ehara, K. Toyota, R. Fukuda, J. Hasegawa, M. Ishida, T. Nakajima, Y. Honda, O. Kitao, H. Nakai, M. Klene, X. Li, J. E. Knox, H. P. Hratchian, J. B. Cross, V. Bakken, C. Adamo, J. Jaramillo, R. Gomperts, R. E. Stratmann, O. Yazyev, A. J. Austin, R. Cammi, C. Pomelli, J. W. Ochterski, P. Y. Ayala, K. Morokuma, G. A. Voth, P. Salvador, J. J. Dannenberg, V. G. Zakrzewski, S. Dapprich, A. D. Daniels, M. C. Strain, O. Farkas, D. K. Malick, A. D. Rabuck, K. Raghavachari, J. B. Foresman, J. V. Ortiz, Q. Cui, A. G. Baboul, S. Clifford, J. Cioslowski, B. B. Stefanov, G. Liu, A. Liashenko, P. Piskorz, I. Komaromi, R. L. Martin, D. J. Fox, T. Keith, M. A. Al-Laham, C. Y. Peng, A. Nanayakkara, M. Challacombe, P. M. W. Gill, B. Johnson, W. Chen, M. W. Wong, C. Gonzalez, and J. A. Pople, 2004, Gaussian Inc., Wallingford CT.</SPAN>",
"web_abstract" => "<SPAN class="htr_normal">Lewis acid (ZnI</SPAN><SPAN class="htr_sub">2</SPAN><SPAN class="htr_normal">) – promoted Mannich reaction of azetidin-2-one – tethered aldimines </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal"> with silylenol ether </SPAN><SPAN class="htr_bold">4</SPAN><SPAN class="htr_normal"> in toluene at –20 °C afforded a diastereomeric mixture of </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-amino acid esters </SPAN><SPAN class="htr_bold">5a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal">/</SPAN><SPAN class="htr_bold">6a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal">. The effect of the amount of zinc(II) iodide, equimolar (100 mol%) and catalytic (20 mol%), on the chemical yield and the product stereoisomeric ratio was studied. The diastereoselective Mannich reaction of imine </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal"> with silylenol ether </SPAN><SPAN class="htr_bold">4</SPAN><SPAN class="htr_normal"> at low temperature (–20 °C) in toluene under equimolar zinc(II) iodide catalysis provided the best chemical yield – 99% combined with the highest diastereoselectivity of </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-amino acid esters </SPAN><SPAN class="htr_bold">5a</SPAN><SPAN class="htr_normal">/</SPAN><SPAN class="htr_bold">6a</SPAN><SPAN class="htr_normal"> – 85:15%. Furthermore, the influence of various groups on azetidin-2-one – tethered imines </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal"> (R</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_normal"> = phenyl, ferrocenyl; R</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_normal"> = alkyl, aryl, ferrocenyl) has been applied in the Mannich reaction leading to the formation of two stereoisomers of </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-amino acid esters </SPAN><SPAN class="htr_bold">5a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal">/</SPAN><SPAN class="htr_bold">6a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal"> with diastereomeric ratio varying from 92:8 to 59:41%.</SPAN>",
"web_article_title" => "<b><SPAN class="htr_normal">Lewis Acid Promoted Diastereoselective Mannich Reaction of β-Lactam-Tethered Aldimines with 1-Methoxy-1-trimethylsilyloxy-2,2-dimethylethene</SPAN></b>",
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"container_Scheme::abstract_text_css" => "<SPAN class="htr_bold">INTRODUCTION<BR></SPAN><SPAN class="htr_normal">Mannich reaction, in the modern organic synthesis, represents an excellent tool for the C–C bond construction that makes it a favorable choice in natural product synthesis.</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_normal"> However, the application of the Mannich reaction in organic synthesis is often accompanied by numerous disadvantages, especially in the design of asymmetric variants of the reaction.</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_normal"> Nevertheless, numerous synthetic variants of the Mannich reaction were developed during the 20</SPAN><SPAN class="htr_super">t</SPAN><SPAN class="htr_super">h</SPAN><SPAN class="htr_normal"> century,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">-</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_normal"> ensuring the production of Mannich bases with high enantiomeric and diastereomeric purity.</SPAN><SPAN class="htr_super">9</SPAN><SPAN class="htr_super">-</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">7</SPAN><SPAN class="htr_normal"> One of these methods is the stereoselective Lewis acid promoted condensation of silylenol ethers to imines, an indirect route to enantio- and diastereo-enriched </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-amino acids, first described by Ojima and coworkers.</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_normal"> <BR>Monocyclic </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactam derivatives occupy a central place among medicinally important compounds due to their diverse and interesting antibiotic activities.</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">9</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">0</SPAN><SPAN class="htr_normal"> Consequently, the development of their synthesis and application as novel biologically active compounds has been of considerable interest to the scientific community in the past few decades.</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">-</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">5</SPAN><SPAN class="htr_normal"> Their potential is also recognized in the field of amino acid and peptide synthesis, where they provide access to non – protein </SPAN><SPAN class="htr_normal">α</SPAN><SPAN class="htr_normal">- and </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-amino acids and their peptides.</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">6</SPAN><SPAN class="htr_super">-</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">9</SPAN><SPAN class="htr_normal"> The synergy of two excellent stereoselective methods: (i) chiral ester enolate – imine condensation strategy</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">9</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">0</SPAN><SPAN class="htr_normal"> that was applied to the asymmetric synthesis of </SPAN><SPAN class="htr_italic">trans</SPAN><SPAN class="htr_normal">-3-amino-</SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactams</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">9</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_normal"> and (ii) Lewis acid promoted Mannich condensation of the </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactam – tethered aldimines with silyl enol ethers</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_normal"> provides multifunctional compounds, e.g. diamino acids and diamino alcohols. The multifunctional compounds of this type can serve as valuable precursors for exploration in the field of peptidomimetics,</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">4</SPAN><SPAN class="htr_normal"> enzyme inhibition,</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">5</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">5</SPAN><SPAN class="htr_normal"> and the synthesis of macrocyclic compounds.</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">6</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">7</SPAN><SPAN class="htr_normal"> <BR>In continuation of our research in the field of </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactam chemistry</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_super">-</SPAN><SPAN class="htr_super">4</SPAN><SPAN class="htr_super">0</SPAN><SPAN class="htr_normal"> we further explored </SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactams as synthons and chiral precursors in diastereoselective synthesis. We report here the study on the chemical yield and diastereoselectivity of the Lewis acid – promoted Mannich reaction of azetidin-2-one – tethered aldimines </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r </SPAN><SPAN class="htr_normal">with 1-methoxy-1-trimethylsilyloxy-2,2-dimethylethene </SPAN><SPAN class="htr_bold">4</SPAN><SPAN class="htr_normal">.<BR><BR><BR></SPAN><SPAN class="htr_bold">RESULTS AND DISCUSSION<BR></SPAN><SPAN class="htr_normal">We applied lithium chiral ester enolate – imine condensation strategy</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">0</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">4</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">4</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_normal"> to the asymmetric synthesis</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">9</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_normal"> of </SPAN><SPAN class="htr_italic">trans</SPAN><SPAN class="htr_normal">-3-amino-</SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactams </SPAN><SPAN class="htr_bold">1a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">b</SPAN><SPAN class="htr_normal">. Treatment of </SPAN><SPAN class="htr_italic">trans</SPAN><SPAN class="htr_normal">-3-amino-</SPAN><SPAN class="htr_normal">β</SPAN><SPAN class="htr_normal">-lactams </SPAN><SPAN class="htr_bold">1a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">b</SPAN><SPAN class="htr_normal"> with a variety of aldehydes </SPAN><SPAN class="htr_bold">2a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">p</SPAN><SPAN class="htr_normal"> in boiling ethanol followed by stirring in dichloromethane at room temperature in the presence of sodium sulfate provided</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">2</SPAN><SPAN class="htr_super">,</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_normal"> the corresponding imines </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal"> (Scheme 1). Aryl and ferrocenyl imines </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">j</SPAN><SPAN class="htr_normal"> and </SPAN><SPAN class="htr_bold">3m</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal"> (isolated yields vary from 62 to 89%, Table 1) were purified by recrystallization, while alkyl imines </SPAN><SPAN class="htr_bold">3k</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">l</SPAN><SPAN class="htr_normal"> (</SPAN><SPAN class="htr_super">1</SPAN><SPAN class="htr_normal">H NMR spectra calculated yields: 63 and 61%) were generated</SPAN><SPAN class="htr_super">3</SPAN><SPAN class="htr_super">8</SPAN><SPAN class="htr_normal"> in dichloromethane at room temperature, filtered, evaporated to dryness, and as such applied in the next reaction step.<BR>1-Methoxy-1-trimethylsilyloxy-2,2-dimethylethene </SPAN><SPAN class="htr_bold">4</SPAN><SPAN class="htr_normal"> was used in the Mannich reaction with azetidin-2-one – tethered imines </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal">-</SPAN><SPAN class="htr_bold">r</SPAN><SPAN class="htr_normal">. We studied the Mannich reaction of imine </SPAN><SPAN class="htr_bold">3a</SPAN><SPAN class="htr_normal"> and silylenol ether </SPAN><SPAN class="htr_bold">4</SPAN><SPAN class="htr_normal"> in the presence of equimolar (100 mol%) and catalytic (20 mol%) amount of zinc(II) iodide in toluene at low</SPAN>",
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