Maleamic acid polymer derivatives and their bioconjugates
A kind of maleimide, polymer technology, applied in the field of polymer chemistry
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Embodiment 1
[0238] Hydrolysis rate of linked PEG maleimide examples
[0239] A series of representative methoxy-PEG maleimides with an average molecular weight of 5000 Daltons were synthesized and studied. Determine the maleimide for each of the following structures by measuring the UV absorption at 297 nm of a solution of mPEG maleimide at a concentration of 5 mg / mL in 50 mM phosphate buffer at a pH of approximately 7.5 Ring hydrolysis reaction kinetics. The general structure of polymer maleimide is shown below. The exact structure corresponding to each linker is provided in Table 1 above (L 1 , L 2 and L 3 ).
[0240]
[0241] structure
(Hour)
Relative speed
L 1 -AMTR
8.8
3.66
L 1 -AMPE
19.4
1.66
L 1 -MCH
16.3
1.98
L 2 -BU
19.6
1.65
L 2 -HE
32.3
1.00
L 3 -ET
8.1
4.01
L 3 -PR
11.5
2.82...
Embodiment 2
[0245] Hydrolysis of a branched linked polymer maleimide, mPEG2-MAL-40K
[0246]
[0247]The polymer maleimide drawn on hair, mPEG2-MAL-40K, was obtained from Nektar (Huntsville, AL). The maleimide ring of the polymer derivative undergoes limited hydrolysis under certain conditions to form the corresponding maleamic acid derivative described below.
[0248] The hydrolysis reaction was monitored analytically by HPLC to observe the decrease in the percentage of parent maleimide over time. The kinetics of the hydrolysis reaction were determined under the following conditions: a pH value of about 5.5, using a HEPES buffer solution at about 25°C.
[0249] A linear relationship can be obtained by plotting the logarithm of the maleamic acid or maleimide concentration versus time (the latter is shown in Figure 3).
[0250] This data was then used to determine the half-life of the hydrolysis reaction, which was calculated to be approximately 34 days under the test conditions. Thu...
Embodiment 3
[0252] Study on the Hydrolysis Rate of Polymer Succinimide Conjugate
[0253] Hydrolysis rates of representative proteins and small molecule model conjugates were studied to examine the relationship between the polymer-terminated maleimide itself and the ring-opening tendency of its conjugates.
[0254] Since large biomolecular components such as proteins have a significant impact on the retention of linked molecules in typical LC columns, it is often more difficult to determine the kinetics of maleimide conjugates than the polymers themselves. In this analysis, the ring-opened acid form of maleamic acid could not be cleanly separated from the ring-opened or ring-closed form. However, combined analytical methods based on size exclusion chromatography (HPLC-SE) and protein analysis electrophoresis (SDS-PAGE) have been successfully used to evaluate polymeric maleimide protein conjugates and those made with nonproteinaceous model compounds. The ring-opening properties o...
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Abstract
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