Dual role of D-amino acid oxidase in experimental pain models
D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies indicating an upregulation and increased activity of DAAO in different pain models. Furthermore, the upregulation of DAAO also results in the de...
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| Vydáno v: | European journal of pharmacology Ročník 855; s. 98 - 102 |
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| Hlavní autoři: | , , , |
| Médium: | Journal Article |
| Jazyk: | angličtina |
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Netherlands
Elsevier B.V
15.07.2019
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| ISSN: | 0014-2999, 1879-0712, 1879-0712 |
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| Abstract | D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies indicating an upregulation and increased activity of DAAO in different pain models. Furthermore, the upregulation of DAAO also results in the development of morphine tolerance as well as morphine-induced hyperalgesia. Accordingly, the knockdown of DAAO gene or pharmacological inhibition of DAAO reduces pain, reverses tolerance to morphine and hyperalgesia. The pain inducing actions of DAAO are related to augmented production of (hydrogen peroxide) H2O2, pro-inflammatory cytokines and activation of (Transient receptor protein Ankyrin-1) TRPA1 channels. On the other hand, exogenously administrated DAAO has also been shown to attenuate the pain in different pain models. The pain attenuating actions of DAAO enzyme has been linked to extensive metabolism of D-serine, which may not be able to activate NMDA receptor and trigger pain. The current review highlights the pain attenuating and pain inducing role of DAAO in experimental studies. |
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| AbstractList | D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies indicating an upregulation and increased activity of DAAO in different pain models. Furthermore, the upregulation of DAAO also results in the development of morphine tolerance as well as morphine-induced hyperalgesia. Accordingly, the knockdown of DAAO gene or pharmacological inhibition of DAAO reduces pain, reverses tolerance to morphine and hyperalgesia. The pain inducing actions of DAAO are related to augmented production of (hydrogen peroxide) H
O
, pro-inflammatory cytokines and activation of (Transient receptor protein Ankyrin-1) TRPA1 channels. On the other hand, exogenously administrated DAAO has also been shown to attenuate the pain in different pain models. The pain attenuating actions of DAAO enzyme has been linked to extensive metabolism of D-serine, which may not be able to activate NMDA receptor and trigger pain. The current review highlights the pain attenuating and pain inducing role of DAAO in experimental studies. D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies indicating an upregulation and increased activity of DAAO in different pain models. Furthermore, the upregulation of DAAO also results in the development of morphine tolerance as well as morphine-induced hyperalgesia. Accordingly, the knockdown of DAAO gene or pharmacological inhibition of DAAO reduces pain, reverses tolerance to morphine and hyperalgesia. The pain inducing actions of DAAO are related to augmented production of (hydrogen peroxide) H2O2, pro-inflammatory cytokines and activation of (Transient receptor protein Ankyrin-1) TRPA1 channels. On the other hand, exogenously administrated DAAO has also been shown to attenuate the pain in different pain models. The pain attenuating actions of DAAO enzyme has been linked to extensive metabolism of D-serine, which may not be able to activate NMDA receptor and trigger pain. The current review highlights the pain attenuating and pain inducing role of DAAO in experimental studies. D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies indicating an upregulation and increased activity of DAAO in different pain models. Furthermore, the upregulation of DAAO also results in the development of morphine tolerance as well as morphine-induced hyperalgesia. Accordingly, the knockdown of DAAO gene or pharmacological inhibition of DAAO reduces pain, reverses tolerance to morphine and hyperalgesia. The pain inducing actions of DAAO are related to augmented production of (hydrogen peroxide) H2O2, pro-inflammatory cytokines and activation of (Transient receptor protein Ankyrin-1) TRPA1 channels. On the other hand, exogenously administrated DAAO has also been shown to attenuate the pain in different pain models. The pain attenuating actions of DAAO enzyme has been linked to extensive metabolism of D-serine, which may not be able to activate NMDA receptor and trigger pain. The current review highlights the pain attenuating and pain inducing role of DAAO in experimental studies.D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies indicating an upregulation and increased activity of DAAO in different pain models. Furthermore, the upregulation of DAAO also results in the development of morphine tolerance as well as morphine-induced hyperalgesia. Accordingly, the knockdown of DAAO gene or pharmacological inhibition of DAAO reduces pain, reverses tolerance to morphine and hyperalgesia. The pain inducing actions of DAAO are related to augmented production of (hydrogen peroxide) H2O2, pro-inflammatory cytokines and activation of (Transient receptor protein Ankyrin-1) TRPA1 channels. On the other hand, exogenously administrated DAAO has also been shown to attenuate the pain in different pain models. The pain attenuating actions of DAAO enzyme has been linked to extensive metabolism of D-serine, which may not be able to activate NMDA receptor and trigger pain. The current review highlights the pain attenuating and pain inducing role of DAAO in experimental studies. |
| Author | Jaggi, Amteshwar Singh Singh, Nirmal Sharma, Jasmine Kulshrestha, Ritu |
| Author_xml | – sequence: 1 givenname: Jasmine surname: Sharma fullname: Sharma, Jasmine organization: Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala, 147002 India – sequence: 2 givenname: Ritu surname: Kulshrestha fullname: Kulshrestha, Ritu organization: Vallabhbhai Patel Chest Institute, New Delhi, India – sequence: 3 givenname: Nirmal surname: Singh fullname: Singh, Nirmal organization: Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala, 147002 India – sequence: 4 givenname: Amteshwar Singh surname: Jaggi fullname: Jaggi, Amteshwar Singh email: amteshwarjaggi@yahoo.co.in organization: Department of Pharmaceutical Sciences and Drug Research, Punjabi University, Patiala, 147002 India |
| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/31059710$$D View this record in MEDLINE/PubMed |
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| CitedBy_id | crossref_primary_10_1080_10715762_2024_2427088 crossref_primary_10_1016_j_yexcr_2020_112383 crossref_primary_10_1007_s43440_020_00207_x |
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| Keywords | Nerve injury Pain D-serine H2O2 D-amino acid oxidase HO |
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| Snippet | D-amino acid oxidase (DAAO) is an astroglial enzyme abundantly present in the pain sensing regions including brain and spinal cord. There have been studies... |
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| SubjectTerms | Analgesics - pharmacology Animals D-amino acid oxidase D-Amino-Acid Oxidase - antagonists & inhibitors D-Amino-Acid Oxidase - metabolism D-Amino-Acid Oxidase - pharmacology D-serine Disease Models, Animal Enzyme Inhibitors - pharmacology H2O2 Humans Nerve injury Nociception - drug effects Pain Pain - enzymology Pain - physiopathology |
| Title | Dual role of D-amino acid oxidase in experimental pain models |
| URI | https://dx.doi.org/10.1016/j.ejphar.2019.05.001 https://www.ncbi.nlm.nih.gov/pubmed/31059710 https://www.proquest.com/docview/2231974178 |
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