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1 ctionalizing the poly(G) track of D ODN with thermolytic 2-(N-formyl-N-methyl)aminoethyl (fma) phosph
2 is of oligonucleoside phosphorothioates, the thermolytic 2-[N-methyl-N-(2-pyridyl)]aminoethyl thiopho
3 nyl)formamidinate) have been investigated by thermolytic and photolytic experiments to investigate th
4 droxyl protection of deoxyribonucleosides as thermolytic carbonates.
5 tudied immunomodulatory CpG ODN 1555 through thermolytic cleavage of the 2-(N-formyl-N-methyl)aminoet
6  it can be readily removed, as needed, under thermolytic conditions at neutral pH.
7                             Depending on the thermolytic conditions, dicobalthexacarbonyl-complexed e
8 mma-lactones efficiently under photolytic or thermolytic conditions.
9 aration of unsaturated compounds under mild, thermolytic conditions.
10                                      Several thermolytic CpG-containing DNA oligonucleotides analogou
11                                     Complete thermolytic deprotection of carbonates 7, 8, 13, and 14
12                                              Thermolytic deprotection of these carbonates is preferab
13 opeptides were isolated in high yield from a thermolytic digest of porcine fibrinogen.
14 continuously release small amounts of HCl by thermolytic elimination.
15                                              Thermolytic extrusion of SO(2) from polymer-bound 3-(phe
16                                Additionally, thermolytic groups are attractive in the context of engi
17                                              Thermolytic groups may serve as alternatives to the conv
18                                              Thermolytic groups structurally related to well-studied
19 y, and 3 required an 11-step sequence with a thermolytic intramolecular inverse-demand Diels-Alder re
20 t of the P-domain was also identified in the thermolytic mixture.
21 irus infection, and thus supports the use of thermolytic oligonucleotides as prodrugs in the effectiv
22 ature (LCST) type of phase behavior as novel thermolytic osmotic agents.
23 ntial application of pyridine derivatives as thermolytic phosphate/thiophosphate protecting groups ha
24 cid as both a synthetic building block and a thermolytic precursor to dialkyl ketenes.
25  its use as a single source precursor in the thermolytic production of luminescent rare earth metal d
26 Most of the existing studies have focused on thermolytic salt systems.
27 gradients using synthetic solutions, such as thermolytic salts.
28 tem utilized nanothermal analysis probes for thermolytic surface sampling followed by atmospheric pre

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