The quantitative determination of intact proteins in biological samples by LC with high-resolution MS detection can be a useful alternative to ligand-binding assays or LC-MS-based quantification of a surrogate peptide after protein digestion. The 22-kDa biopharmaceutical protein somatropin (recombinant human growth hormone) was quantified down to 10 ng/mL (0.45 nM) in 75 μL of rat plasma by the combination of an immunocapture step using an anti-somatropin antibody and LC-MS on a quadrupole-time of flight instrument. Accuracy and precision of the method as well as its selectivity and sensitivity did not depend on the width of the mass extraction window nor on whether only one or a summation of multiple charge states of the protein analyte were used as the detection response. Quantification based on deconvoluted mass spectra showed equally acceptable method performance but with a less favorable lower limit of quantification of 30 ng/mL. Concentrations in plasma after dosing of somatropin to rats correlated well for the deconvolution approach and the quantification based on the summation of the response of the four most intense charge states (14 to 17) of somatropin.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.jchromb.2020.122079 | DOI Listing |
Background: evoke and evoke+ are phase 3, randomized, placebo-controlled trials currently investigating the glucagon-like peptide-1 receptor agonist semaglutide as disease-modifying therapy (DMT) in persons with early Alzheimer's disease (AD). How the evoke and evoke+ trial populations compare with other phase 3 programs for DMTs in early AD has not been described.
Method: We compare the inclusion/exclusion criteria and baseline characteristics of the evoke/evoke+ trial populations with those of Clarity AD (lecanemab) and TRAILBLAZER-ALZ-2 (donanemab): two recent phase 3 trials assessing anti-amyloid monoclonal antibodies in persons with early AD.
Background: Understanding the fundamental differences between the human and pre-human brain is a prerequisite for designing meaningful models and therapies for AD. Expressed CHRFAM7A, a human restricted gene with carrier frequency of 75% in the human population predicts profound translational significance.
Method: The physiological role of CHRFAM7A in human brain is explored using multiomics approach on 600 post mortem human brain tissue samples (ROSMAP).
Alzheimers Dement
December 2024
Memory and Aging Center, UCSF Weill Institute for Neurosciences, University of California, San Francisco, San Francisco, CA, USA.
Women account for almost two-thirds of Alzheimer's disease (AD) cases, yet evidence significantly less clinical benefit from recently deployed amyloid-lowering therapies. To close this disparity gap, there is an urgent need to identify biological drivers of sex differences in the manifestation and clinical response to AD therapeutics. A recent review of multi-omic studies of AD reported >75% of studies showed female-specific changes at the molecular level (vs.
View Article and Find Full Text PDFBackground: Clinical assessments utilized in trials to measure progression in sporadic Alzheimer's disease (SAD) such as the MMSE, ADAS-Cog, CDR-SB and ADCS-ADL are well established. Distinct assessments are utilized for Down Syndrome-related Alzheimer's disease (DSAD). Although these assessments are less well established, they probe comparable domains of cognition and function.
View Article and Find Full Text PDFBackground: Irsenontrine (e2027) is a potent and selective PDE9 inhibitor that increases cellular cGMP which is important for glutamatergic synaptic function. Irsenontrine was investigated to improve cognition in Lewy Body Dementia (LBD; DLB and PDD), and recent phase 2 study data suggests that irsenontrine could be more effective in DLB patients without amyloid copathology. Here, we evaluated differential change from baseline levels in proteins associated with cGMP pathway in DLB participants without amyloid co-pathology (DLB A-) compared to DLB participants with amyloid co-pathology (DLB A+).
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!