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ProMIS Neurosciences Inc PMN

ProMIS Neurosciences Inc. is a development stage biotechnology company. The Company is focused on generating and developing antibody therapeutics selectively targeting toxic misfolded proteins in neurodegenerative diseases such as Alzheimer’s disease (AD), amyotrophic lateral sclerosis (ALS) and multiple system atrophy (MSA), an alpha-synucleinopathy. Its proprietary target discovery engine applies a thermodynamic, computational discovery platform - ProMIS and Collective Coordinates - to predict novel targets known as Disease Specific Epitopes on the molecular surface of misfolded proteins. Using this approach, the Company is developing novel antibody therapeutics for AD, ALS and MSA. Its product portfolio includes PMN310 / Amyloid-beta, PMN267 / TDP-43, and PMN442 / Alpha-synuclein. The Company plans to investigate additional synucleinopathies, including Parkinson's disease (PD) and dementia with Lewy bodies (DLB). Its wholly owned subsidiary is ProMIS Neurosciences (US) Inc.


NDAQ:PMN - Post by User

Post by Mole101on May 13, 2021 4:03pm
107 Views
Post# 33196793

Cross-Validation of ELISA and a Portable Surface Plasmon Res

Cross-Validation of ELISA and a Portable Surface Plasmon ResInformative and interesting reading on this study out of Laval University.. open PDF for in-depth analysis.

https://chemrxiv.org/articles/preprint/Cross-Validation_of_ELISA_and_a_Portable_Surface_Plasmon_Resonance_Instrument_for_IgG_Antibodies_Serology_with_SARS-CoV-2_Positive_Individuals/14347013?file=27392765

We report on the development of surface plasmon resonance (SPR) sensors and matching ELISAs for the detection of nucleocapsid and spike antibodies specific against the novel coronavirus 2019 (SARS-CoV-2) in human serum, plasma and dried blood spots (DBS). When exposed to SARS-CoV-2 or a vaccine against SARS-CoV-2, the immune system responds by expressing antibodies at levels that can be detected and monitored to identify the fraction of the population potentially immunized against SARS-CoV-2 and support efforts to deploy a vaccine strategically. A SPR sensor coated with a peptide monolayer and functionalized with various sources of SARS-CoV-2 recombinant proteins expressed in different cell lines detected human anti-SARS-CoV-2 IgG in the nanomolar range. Nucleocapsid expressed in different cell lines did not significantly change the sensitivity of the assays, whereas the use of a CHO cell line to express spike ectodomain led to excellent performance. This bioassay was performed on a portable SPR instrument capable of measuring 4 biological samples within 30 minutes of sample/sensor contact and the chip could be regenerated at least 9 times. Multi-site validation was then performed with in-house and commercial ELISA, which revealed excellent cross-correlations with Pearson’s coefficients exceeding 0.85 in all cases, for measurements in DBS and plasma. This strategy paves the way to point-of-care and rapid testing for antibodies in the context of viral infection and vaccine efficacy monitoring.
 

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