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Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine

Insulin glargine is a long-acting analogue of human insulin that has been used to manage hyperglycemia in patients with diabetes mellitus (DM) for nearly 20 years. Insulin glargine has a relatively constant concentration-time profile that mimics basal levels of insulin and allows for once-daily admi...

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Autores principales: Goyal, Parag, Pai, Harish Venkatraman, Kodali, Phanichand, Vats, Bhavesh, Vajpai, Navratna, Annegowda, Shankara, Mane, Krishnappa, Mohan, Shamini, Saxena, Shruti, Veerabhadraia, Anil Bangalore, Palande, Milee, Nair, Preethy Sasankan, More, Digvijay Chandrashekar, Karudumpa, Umamaheshwara Rao, Jyothirmai, Kunala, Bhattacharya, Adroha, Almeida, Frida, Khyade, Santosh Gulab, Gouda, Shankara, Ranayhossaini, Daniel J., Moole, Praveen Reddy, Smith, Jeffrey P., Barve, Abhijit, Melarkode, Ramakrishnan, Ullanat, Rajesh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8208551/
https://www.ncbi.nlm.nih.gov/pubmed/34133466
http://dx.doi.org/10.1371/journal.pone.0253168
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author Goyal, Parag
Pai, Harish Venkatraman
Kodali, Phanichand
Vats, Bhavesh
Vajpai, Navratna
Annegowda, Shankara
Mane, Krishnappa
Mohan, Shamini
Saxena, Shruti
Veerabhadraia, Anil Bangalore
Palande, Milee
Nair, Preethy Sasankan
More, Digvijay Chandrashekar
Karudumpa, Umamaheshwara Rao
Jyothirmai, Kunala
Bhattacharya, Adroha
Almeida, Frida
Khyade, Santosh Gulab
Gouda, Shankara
Ranayhossaini, Daniel J.
Moole, Praveen Reddy
Smith, Jeffrey P.
Barve, Abhijit
Melarkode, Ramakrishnan
Ullanat, Rajesh
author_facet Goyal, Parag
Pai, Harish Venkatraman
Kodali, Phanichand
Vats, Bhavesh
Vajpai, Navratna
Annegowda, Shankara
Mane, Krishnappa
Mohan, Shamini
Saxena, Shruti
Veerabhadraia, Anil Bangalore
Palande, Milee
Nair, Preethy Sasankan
More, Digvijay Chandrashekar
Karudumpa, Umamaheshwara Rao
Jyothirmai, Kunala
Bhattacharya, Adroha
Almeida, Frida
Khyade, Santosh Gulab
Gouda, Shankara
Ranayhossaini, Daniel J.
Moole, Praveen Reddy
Smith, Jeffrey P.
Barve, Abhijit
Melarkode, Ramakrishnan
Ullanat, Rajesh
author_sort Goyal, Parag
collection PubMed
description Insulin glargine is a long-acting analogue of human insulin that has been used to manage hyperglycemia in patients with diabetes mellitus (DM) for nearly 20 years. Insulin glargine has a relatively constant concentration-time profile that mimics basal levels of insulin and allows for once-daily administration. MYL-1501D is a biosimilar insulin glargine designed to offer greater access of insulin glargine to patients, with comparable efficacy and safety to the marketed reference product. We conducted a comprehensive panel of studies based on a formal analysis of critical quality attributes to characterize the structural and functional properties of MYL-1501D and reference insulin glargine products available in the United States and European Union. MYL-1501D was comprehensively shown to have high similarity to the reference products in terms of protein structure, metabolic activity (both in vitro cell-based assays and in vivo rabbit bioassays), and in vitro cell-based assays for mitogenic activity. The structural analyses demonstrated that the primary protein sequence was identical, and secondary and tertiary structures are similar between the proposed biosimilar and the reference products. Insulin receptor binding affinity and phosphorylation studies also established analytical similarity. MYL-1501D demonstrated high similarity in different metabolic assays of glucose uptake, adipogenesis activity, and inhibition of stimulated lipolysis. Rabbit bioassay studies showed MYL-1501D and EU-approved insulin glargine are highly similar to US-licensed insulin glargine. These product quality studies show high similarity between MYL-1501D and licensed or approved insulin glargine products and suggest the potential of MYL-1501D as an alternative cost-effective treatment option for patients and clinicians.
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spelling pubmed-82085512021-06-29 Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine Goyal, Parag Pai, Harish Venkatraman Kodali, Phanichand Vats, Bhavesh Vajpai, Navratna Annegowda, Shankara Mane, Krishnappa Mohan, Shamini Saxena, Shruti Veerabhadraia, Anil Bangalore Palande, Milee Nair, Preethy Sasankan More, Digvijay Chandrashekar Karudumpa, Umamaheshwara Rao Jyothirmai, Kunala Bhattacharya, Adroha Almeida, Frida Khyade, Santosh Gulab Gouda, Shankara Ranayhossaini, Daniel J. Moole, Praveen Reddy Smith, Jeffrey P. Barve, Abhijit Melarkode, Ramakrishnan Ullanat, Rajesh PLoS One Research Article Insulin glargine is a long-acting analogue of human insulin that has been used to manage hyperglycemia in patients with diabetes mellitus (DM) for nearly 20 years. Insulin glargine has a relatively constant concentration-time profile that mimics basal levels of insulin and allows for once-daily administration. MYL-1501D is a biosimilar insulin glargine designed to offer greater access of insulin glargine to patients, with comparable efficacy and safety to the marketed reference product. We conducted a comprehensive panel of studies based on a formal analysis of critical quality attributes to characterize the structural and functional properties of MYL-1501D and reference insulin glargine products available in the United States and European Union. MYL-1501D was comprehensively shown to have high similarity to the reference products in terms of protein structure, metabolic activity (both in vitro cell-based assays and in vivo rabbit bioassays), and in vitro cell-based assays for mitogenic activity. The structural analyses demonstrated that the primary protein sequence was identical, and secondary and tertiary structures are similar between the proposed biosimilar and the reference products. Insulin receptor binding affinity and phosphorylation studies also established analytical similarity. MYL-1501D demonstrated high similarity in different metabolic assays of glucose uptake, adipogenesis activity, and inhibition of stimulated lipolysis. Rabbit bioassay studies showed MYL-1501D and EU-approved insulin glargine are highly similar to US-licensed insulin glargine. These product quality studies show high similarity between MYL-1501D and licensed or approved insulin glargine products and suggest the potential of MYL-1501D as an alternative cost-effective treatment option for patients and clinicians. Public Library of Science 2021-06-16 /pmc/articles/PMC8208551/ /pubmed/34133466 http://dx.doi.org/10.1371/journal.pone.0253168 Text en © 2021 Goyal et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Goyal, Parag
Pai, Harish Venkatraman
Kodali, Phanichand
Vats, Bhavesh
Vajpai, Navratna
Annegowda, Shankara
Mane, Krishnappa
Mohan, Shamini
Saxena, Shruti
Veerabhadraia, Anil Bangalore
Palande, Milee
Nair, Preethy Sasankan
More, Digvijay Chandrashekar
Karudumpa, Umamaheshwara Rao
Jyothirmai, Kunala
Bhattacharya, Adroha
Almeida, Frida
Khyade, Santosh Gulab
Gouda, Shankara
Ranayhossaini, Daniel J.
Moole, Praveen Reddy
Smith, Jeffrey P.
Barve, Abhijit
Melarkode, Ramakrishnan
Ullanat, Rajesh
Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine
title Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine
title_full Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine
title_fullStr Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine
title_full_unstemmed Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine
title_short Physicochemical and functional characterization of MYL-1501D, a proposed biosimilar to insulin glargine
title_sort physicochemical and functional characterization of myl-1501d, a proposed biosimilar to insulin glargine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8208551/
https://www.ncbi.nlm.nih.gov/pubmed/34133466
http://dx.doi.org/10.1371/journal.pone.0253168
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