Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Recombinant Production of MFHR1, A Novel Synthetic Multitarget Complement Inhibitor, in Moss Bioreactors
by
Decker, Eva L.
, Kopp, Phillipp
, Häffner, Karsten
, Hoernstein, Sebastian N. W.
, Parsons, Juliana
, Bohlender, Lennard L.
, Busch-Steenberg, Christian
, Zipfel, Peter F.
, Top, Oguz
, Reski, Ralf
, Michelfelder, Stefan
in
Alternative pathway
/ alternative pathway of complement activation
/ Apoptosis
/ Autoantibodies
/ Bioreactors
/ Cell activation
/ Clinical trials
/ Competition
/ Complement
/ Complement activation
/ Complement factor H
/ Complement inhibitors
/ Complement system
/ Eye diseases
/ factor H
/ Genomes
/ Glycan
/ Glycoproteins
/ Good Manufacturing Practice
/ Homologous recombination
/ Immune system
/ Inhibitors
/ Insect cells
/ Insects
/ Kidney diseases
/ Mass spectrometry
/ Mass spectroscopy
/ Microorganisms
/ moss bioreactor
/ Mosses
/ Mutation
/ Older people
/ Patients
/ Pharmaceuticals
/ Photobioreactors
/ Physcomitrella patens
/ Plant Science
/ plant-made recombinant pharmaceuticals
/ Plasma
/ Proteins
/ Regulation
/ synthetic complement inhibitor
2019
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Recombinant Production of MFHR1, A Novel Synthetic Multitarget Complement Inhibitor, in Moss Bioreactors
by
Decker, Eva L.
, Kopp, Phillipp
, Häffner, Karsten
, Hoernstein, Sebastian N. W.
, Parsons, Juliana
, Bohlender, Lennard L.
, Busch-Steenberg, Christian
, Zipfel, Peter F.
, Top, Oguz
, Reski, Ralf
, Michelfelder, Stefan
in
Alternative pathway
/ alternative pathway of complement activation
/ Apoptosis
/ Autoantibodies
/ Bioreactors
/ Cell activation
/ Clinical trials
/ Competition
/ Complement
/ Complement activation
/ Complement factor H
/ Complement inhibitors
/ Complement system
/ Eye diseases
/ factor H
/ Genomes
/ Glycan
/ Glycoproteins
/ Good Manufacturing Practice
/ Homologous recombination
/ Immune system
/ Inhibitors
/ Insect cells
/ Insects
/ Kidney diseases
/ Mass spectrometry
/ Mass spectroscopy
/ Microorganisms
/ moss bioreactor
/ Mosses
/ Mutation
/ Older people
/ Patients
/ Pharmaceuticals
/ Photobioreactors
/ Physcomitrella patens
/ Plant Science
/ plant-made recombinant pharmaceuticals
/ Plasma
/ Proteins
/ Regulation
/ synthetic complement inhibitor
2019
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Recombinant Production of MFHR1, A Novel Synthetic Multitarget Complement Inhibitor, in Moss Bioreactors
by
Decker, Eva L.
, Kopp, Phillipp
, Häffner, Karsten
, Hoernstein, Sebastian N. W.
, Parsons, Juliana
, Bohlender, Lennard L.
, Busch-Steenberg, Christian
, Zipfel, Peter F.
, Top, Oguz
, Reski, Ralf
, Michelfelder, Stefan
in
Alternative pathway
/ alternative pathway of complement activation
/ Apoptosis
/ Autoantibodies
/ Bioreactors
/ Cell activation
/ Clinical trials
/ Competition
/ Complement
/ Complement activation
/ Complement factor H
/ Complement inhibitors
/ Complement system
/ Eye diseases
/ factor H
/ Genomes
/ Glycan
/ Glycoproteins
/ Good Manufacturing Practice
/ Homologous recombination
/ Immune system
/ Inhibitors
/ Insect cells
/ Insects
/ Kidney diseases
/ Mass spectrometry
/ Mass spectroscopy
/ Microorganisms
/ moss bioreactor
/ Mosses
/ Mutation
/ Older people
/ Patients
/ Pharmaceuticals
/ Photobioreactors
/ Physcomitrella patens
/ Plant Science
/ plant-made recombinant pharmaceuticals
/ Plasma
/ Proteins
/ Regulation
/ synthetic complement inhibitor
2019
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Recombinant Production of MFHR1, A Novel Synthetic Multitarget Complement Inhibitor, in Moss Bioreactors
Journal Article
Recombinant Production of MFHR1, A Novel Synthetic Multitarget Complement Inhibitor, in Moss Bioreactors
2019
Request Book From Autostore
and Choose the Collection Method
Overview
The human complement system is an important part of the immune system responsible for lysis and elimination of invading microorganisms and apoptotic body cells. Improper activation of the system due to deficiency, mutations, or autoantibodies of complement regulators, mainly factor H (FH) and FH-related proteins (FHRs), causes severe kidney and eye diseases. However, there is no recombinant FH therapeutic available on the market. The first successful recombinant production of FH was accomplished with the moss bioreactor,
. Recently, a synthetic regulator, MFHR1, was designed to generate a multitarget complement inhibitor that combines the activities of FH and the FH-related protein 1 (FHR1). The potential of MFHR1 was demonstrated in a proof-of-concept study with transiently transfected insect cells. Here, we present the stable production of recombinant glyco-engineered MFHR1 in the moss bioreactor. The key features of this system are precise genome engineering
homologous recombination, Good Manufacturing Practice-compliant production in photobioreactors, high batch-to-batch reproducibility, and product stability. Several potential biopharmaceuticals are being produced in this system. In some cases, these are even biobetters, i.e., the recombinant proteins produced in moss have a superior quality compared to their counterparts from mammalian systems as for example moss-made aGal, which successfully passed phase I clinical trials.
mass spectrometry-based analysis of moss-produced MFHR1, we now prove the correct synthesis and modification of this glycoprotein with predominantly complex-type N-glycan attachment. Moss-produced MFHR1 exhibits cofactor and decay acceleration activities comparable to FH, and its mechanism of action on multiple levels within the alternative pathway of complement activation led to a strong inhibitory activity on the whole alternative pathway, which was higher than with the physiological regulator FH.
MBRLCatalogueRelatedBooks
Related Items
Related Items
This website uses cookies to ensure you get the best experience on our website.