دورية أكاديمية

Hormone replacement therapy did not alleviate temporomandibular joint inflammatory pain in ovariectomized rats.

التفاصيل البيبلوغرافية
العنوان: Hormone replacement therapy did not alleviate temporomandibular joint inflammatory pain in ovariectomized rats.
المؤلفون: Kroeff GPH; Postgraduate Program in Biological Sciences: Pharmacology and Therapeutics, Institute of Basic Health Sciences (ICBS), Universidade Federal Do Rio Grande Do Sul (UFRGS), Porto Alegre, RS, 90050-170, Brazil.; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil., de Castro JM; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil.; Postgraduate Program in Medicine: Medical Sciences, UFRGS, Porto Alegre, RS, 90050-170, Brazil., Braga HB; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil., Bosco TD; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil.; Postgraduate Program in Medicine: Medical Sciences, UFRGS, Porto Alegre, RS, 90050-170, Brazil., de Oliveira TC; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil., de Sousa Morais IT; Postgraduate Program in Biological Sciences: Pharmacology and Therapeutics, Institute of Basic Health Sciences (ICBS), Universidade Federal Do Rio Grande Do Sul (UFRGS), Porto Alegre, RS, 90050-170, Brazil.; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil., Medeiros LF; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil.; Postgraduate Program in Health and Human Development, Universidade La Salle, Canoas, RS, 92010-000, Brazil., Caumo W; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil.; Postgraduate Program in Medicine: Medical Sciences, UFRGS, Porto Alegre, RS, 90050-170, Brazil., Stein DJ; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil.; Postgraduate Program in Medicine: Medical Sciences, UFRGS, Porto Alegre, RS, 90050-170, Brazil., Torres ILS; Postgraduate Program in Biological Sciences: Pharmacology and Therapeutics, Institute of Basic Health Sciences (ICBS), Universidade Federal Do Rio Grande Do Sul (UFRGS), Porto Alegre, RS, 90050-170, Brazil. iltorres@hcpa.edu.br.; Pharmacology of Pain and Neuromodulation Laboratory: Preclinical Investigations, Hospital de Clínicas de Porto Alegre (HCPA), Rua Ramiro Barcelos, 2350, Bairro Santa Cecília, Porto Alegre, RS, 90050-903, Brazil. iltorres@hcpa.edu.br.; Postgraduate Program in Medicine: Medical Sciences, UFRGS, Porto Alegre, RS, 90050-170, Brazil. iltorres@hcpa.edu.br.
المصدر: Odontology [Odontology] 2024 Jul 02. Date of Electronic Publication: 2024 Jul 02.
Publication Model: Ahead of Print
نوع المنشور: Journal Article
اللغة: English
بيانات الدورية: Publisher: Springer-Verlag Tokyo Country of Publication: Japan NLM ID: 101134822 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1618-1255 (Electronic) Linking ISSN: 16181247 NLM ISO Abbreviation: Odontology Subsets: MEDLINE
أسماء مطبوعة: Original Publication: Tokyo : Springer-Verlag Tokyo, c2001-
مستخلص: This study had the aim of examining the relationships between variations in estrogen levels resulting from ovariectomy, and estrogen hormone replacement therapy (HRT) in rats subjected to an orofacial inflammatory pain model. Eighty adult female Wistar rats were initially divided into 2 groups: Sham or ovariectomy (OVX-D1). Seven days later (D7), the rats were subjected to an unilateral infiltration of Freund's Complete Adjuvant (CFA) or saline solution into the right temporomandibular joint (TMJ). Then, rats received 17β-estradiol (28 µg/kg/day) or placebo for 21 days (D10-D31). Nociception was evaluated by the von Frey (VF) and the Hot Plate (HP) tests, and depressive-like behavior by the Forced Swimming (FS) test. On D32 all rats were euthanized and serum, hippocampus and brainstem were collected. The CFA groups presented a mechanical hyperalgesia until day 21 (p ≤ 0.05). No differences were observed among groups in the HP (p = 0.735), and in the immobility and swimming time of the FS (p = 0.800; p = 0.998, respectively). In the brainstem, there was a significant difference in the TNF-ɑ levels (p = 0.043), and a marginal significant difference in BDNF levels (p = 0.054), without differences among groups in the hippocampal BDNF and TNF-ɑ levels (p = 0.232; p = 0.081, respectively). In conclusion, the hormone replacement therapy did not alleviate orofacial pain in ovariectomized rats. However, there is a decrease in brainstem TNF-ɑ levels in the animals submitted to both models, which was partially reverted by HRT.
(© 2024. The Author(s), under exclusive licence to The Society of The Nippon Dental University.)
References: Tsang A, Von Korff M, Lee S, Alonso J, Karam E, Angermeyer MC, Borges GL, Bromet EJ, Demytteneare K, de Girolamo G, de Graaf R, Gureje O, Lepine JP, Haro JM, Levinson D, Oakley Browne MA, Posada-Villa J, Seedat S, Watanabe M. Common chronic pain conditions in developed and developing countries: gender and age differences and comorbidity with depression-anxiety disorders. J Pain. 2008;9(10):883–91. https://doi.org/10.1016/j.jpain.2008.05.005 . (PMID: 10.1016/j.jpain.2008.05.00518602869)
Neville A, Peleg R, Singer Y, Sherf M, Shvartzman P. Chronic Pain: a population-based study. Isr Med Assoc J. 2008;10:676–80 (PMID:19009944). (PMID: 19009944)
Unruh AM. Gender variations in clinical pain experience. Pain. 1996;65(2–3):123–67. https://doi.org/10.1016/0304-3959(95)00214-6 . (PMID: 8826503). (PMID: 10.1016/0304-3959(95)00214-68826503)
Hornung RS, Raut NG, Cantu DJ, Lockhart LM, Averitt DL. Sigma-1 receptors and progesterone metabolizing enzymes in nociceptive sensory neurons of the female rat trigeminal ganglia: a neural substrate for the antinociceptive actions of progesterone. Mol Pain. 2022;18:17448069211069256. https://doi.org/10.1177/17448069211069255 . (PMID: 10.1177/17448069211069255350403788777333)
Hilgenberg PB, Cunha CO, Mendonça LM, Conti PCR. Dor orofacial odontogênica e a importância do diagnóstico diferencial. Relato de caso Rev Dor. 2010;11(2):169–72.
Ferneini EM. Temporomandibular Joint Disorders (TMD). J Oral Maxillofac Surg. 2021;79(10):2171–2. https://doi.org/10.1016/j.joms.2021.07.008 . (PMID: 34620421). (PMID: 10.1016/j.joms.2021.07.00834620421)
Oliveira LK, Almeida Gde A, Lelis ÉR, Tavares M, Fernandes Neto AJ. Temporomandibular disorder and anxiety, quality of sleep, and quality of life in nursing professionals. Braz Oral Res. 2015;29:S1806-83242015000100270. https://doi.org/10.1590/1807-3107BOR-2015 . (PMID: 26039910). (PMID: 10.1590/1807-3107BOR-201526892357)
Demyttenaere K, Bruffaerts R, Lee S, Posada-Villa J, Kovess V, Angermeyer MC, Levinson D, de Girolamo G, Nakane H, Mneimneh Z, Lara C, de Graaf R, Scott KM, Gureje O, Stein DJ, Haro JM, Bromet EJ, Kessler RC, Alonso J, Von Korff M. Mental disorders among persons with chronic back or neck pain: results from the World Mental Health Surveys. Pain. 2007;129(3):332–42. https://doi.org/10.1016/j.pain.2007.01.022 . (Epub 2007 Mar 9 PMID: 17350169). (PMID: 10.1016/j.pain.2007.01.02217350169)
Wang J, Chao Y, Wan Q, Zhu Z. The possible role of estrogen in the incidence of temporomandibular disorders. Med Hypotheses. 2008;71:564–7. https://doi.org/10.1016/j.mehy.2008.05.011 . (Epub 2008 Jul 1 PMID: 18597950). (PMID: 10.1016/j.mehy.2008.05.01118597950)
Albertin A, Kerppers II, Amorim CF, Costa RV, Ferrari Correa JC, Oliveira CS. The effect of manual therapy on masseter muscle pain and spasm. Electromyogr Clin Neurophysiol. 2010;50(2):107–12 (PMID: 20405786). (PMID: 20405786)
Gomes NC, Berni-Schwarzenbeck KC, Packer AC, Rodrigues-Bigaton D. Effect of cathodal high-voltage electrical stimulation on pain in women with TMD. Rev Bras Fisioter. 2012;16(1):10–5. (PMID: 10.1590/S1413-3555201200010000322441222)
Zhou FH, Zhao HY. Acupuncture and ultrasound therapy for temporomandibular disorders. Di Yi Jun Yi Da Xue Xue Bao. 2004;24(6):720–1 (Chinese PMID: 15201103). (PMID: 15201103)
Rodrigues D, Siriani AO, Bérzin F. Effect of conventional TENS on pain and electromyographic activity of masticatory muscles in TMD patients. Braz Oral Res. 2004;18(4):290–5. https://doi.org/10.1590/s1806-83242004000400003 . (PMID: 10.1590/s1806-8324200400040000316089258)
Romero-Reyes M, Uyanik JM. Orofacial pain management: current perspectives. J Pain Res. 2014;21(7):99–115. https://doi.org/10.2147/JPR.S37593. (PMID: 10.2147/JPR.S37593.)
LeResche L, Saunders K, Von Korff MR, Barlow W, Dworkin SF. Use of exogenous hormones and risk of temporomandibular disorder pain. Pain. 1997;69(1–2):153–60. https://doi.org/10.1016/s0304-3959(96)03230-7 . (PMID: 10.1016/s0304-3959(96)03230-79060026)
Figueroba SR, Franco GC, Omar NF, Groppo MF, Groppo FC. Dependence of cytokine levels on the sex of experimental animals: a pilot study on the effect of oestrogen in the temporomandibular joint synovial tissues. Int J Oral Maxillofac Surg. 2015;44(11):1368–75. https://doi.org/10.1016/j.ijom.2015.06.025 . (Epub 2015 Jul 17 PMID: 26194775). (PMID: 10.1016/j.ijom.2015.06.02526194775)
Abdrabuh A, Baljon K, Alyami Y. Impact of estrogen therapy on temporomandibular joints of rats: Histological and hormone analytical study. Saudi Dent J. 2021;33(7):608–13. https://doi.org/10.1016/j.sdentj.2020.07.006 . (PMID: 10.1016/j.sdentj.2020.07.00634803308)
Berger M, Szalewski L, Bakalczuk M, Bakalczuk G, Bakalczuk S, Szkutnik J. Association between estrogen levels and temporomandibular disorders: a systematic literature review. Prz Menopauzalny. 2015;14(4):260–70. https://doi.org/10.5114/pm.2015.56538 . (PMID: 10.5114/pm.2015.56538268482994733902)
Fejes-Szabó A, Spekker E, Tar L, Nagy-Grócz G, Bohár Z, Laborc KF, Vécsei L, Párdutz Á. Chronic 17β-estradiol pretreatment has pronociceptive effect on behavioral and morphological changes induced by orofacial formalin in ovariectomized rats. J Pain Res. 2018;25(11):2011–21. https://doi.org/10.2147/JPR.S165969 . (PMID: 10.2147/JPR.S165969)
Bagis B, Ayaz EA, Turgut S, Durkan R, Özcan M. Gender difference in prevalence of signs and symptoms of temporomandibular joint disorders: a retrospective study on 243 consecutive patients. Int J Med Sci. 2012;9(7):539–44. https://doi.org/10.7150/ijms.4474 . (PMID: 10.7150/ijms.4474229914923444974)
Lora VR, Canales Gde L, Gonçalves LM, Meloto CB, Barbosa CM. Prevalence of temporomandibular disorders in postmenopausal women and relationship with pain and HRT. Braz Oral Res. 2016;30(1):e100. https://doi.org/10.1590/1807-3107BOR-2016.vol30.0100 . (PMID: 27556676). (PMID: 10.1590/1807-3107BOR-2016.vol30.010027556676)
Nekora-Azak A, Evlioglu G, Ceyhan A, Keskin H, Berkman S, Issever H. Estrogen replacement therapy among postmenopausal women and its effects on signs and symptoms of temporomandibular disorders. Cranio. 2008;26(3):211–5. https://doi.org/10.1179/crn.2008.028 . (PMID: 18686498). (PMID: 10.1179/crn.2008.02818686498)
Hatch JP, Rugh JD, Sakai S, Saunders MJ. Is use of exogenous estrogen associated with temporomandibular signs and symptoms? J Am Dent Assoc. 2001;132(3):319–26. https://doi.org/10.14219/jada.archive.2001.0174 . (PMID: 11258088). (PMID: 10.14219/jada.archive.2001.017411258088)
Harding AT, Heaton NS. The Impact of Estrogens and Their Receptors on Immunity and Inflammation during Infection. Cancers (Basel). 2022;14(4):909. https://doi.org/10.3390/cancers14040909 . (PMID: 10.3390/cancers1404090935205657)
Zwiri A, Al-Hatamleh MAI, Ahmad W, WMA, Ahmed Asif J, Khoo SP, Husein A, Ab-Ghani Z, Kassim NK. Biomarkers for temporomandibular disorders: current status and future directions. Diagnost (Basel). 2020;10(5):303. https://doi.org/10.3390/diagnostics10050303 . (PMID: 10.3390/diagnostics10050303)
Campos MIG, Campos PSF, Line SRP. 2015 Inflammatory cytokines activity in temporomandibular joint disorders: a review of literature. Braz J Oral Sci. 5:(18) 1054–62. Available from: https://periodicos.sbu.unicamp.br/ojs/index.php/bjos/article/view/8641896.
Schulte W, Bernhagen J, Bucala R. Cytokines in sepsis: potent immunoregulators and potential therapeutic targets–an updated view. Mediators Inflamm. 2013;2013:165974. https://doi.org/10.1155/2013/165974 . (PMID: 10.1155/2013/165974238534273703895)
Davies AM. The role of neurotrophins in the developing nervous system. J Neurobiol. 1994;25(11):1334–48. https://doi.org/10.1002/neu.480251103 . (PMID: 7852989). (PMID: 10.1002/neu.4802511037852989)
Bemelmans MH, van Tits LJ, Buurman WA. Tumor necrosis factor: function, release and clearance. Crit Rev Immunol. 1996;16(1):1–11. https://doi.org/10.1615/critrevimmunol.v16.i1.10 . (PMID: 8809470). (PMID: 10.1615/critrevimmunol.v16.i1.108809470)
Snider WD. Functions of the neurotrophins during nervous system development: what the knockouts are teaching us. Cell. 1994;77(5):627–38. https://doi.org/10.1016/0092-8674(94)90048-5 . (PMID: 8205613). (PMID: 10.1016/0092-8674(94)90048-58205613)
Scharfman HE, MacLusky NJ. Estrogen and brain-derived neurotrophic factor (BDNF) in hippocampus: complexity of steroid hormone-growth factor interactions in the adult CNS. Front Neuroendocrinol. 2006;27(4):415–35. https://doi.org/10.1016/j.yfrne.2006.09.004 . (PMID: 10.1016/j.yfrne.2006.09.004170555601778460)
Jasim H, Ghafouri B, Gerdle B, Hedenberg-Magnusson B, Ernberg M. Altered levels of salivary and plasma pain related markers in temporomandibular disorders. J Headache Pain. 2020;21:1. (PMID: 10.1186/s10194-020-01160-z)
Fischer M, Wille G, Klien S, Shanib H, Holle D, Gaul C, et al. Brain-derived neurotrophic factor in primary headaches. J Headache Pain. 2012;13(6):469–75. (PMID: 10.1007/s10194-012-0454-5225845313464472)
Nijs J, Meeus M, Versijpt J, Moens M, Bos I, Knaepen K, et al. Brain-derived neurotrophic factor as a driving force behind neuroplasticity in neuropathic and central sensitization pain: a new therapeutic target? Expert Opin Ther Targets. 2015;19(4):565–76. (PMID: 10.1517/14728222.2014.99450625519921)
Simao AP, Mendonca VA, de Oliveira Almeida TM, Santos SA, Gomes WF, Coimbra CC, et al. Involvement of BDNF in knee osteoarthritis: the relationship with inflammation and clinical parameters. Rheumatol Int. 2014;34(8):1153–7. (PMID: 10.1007/s00296-013-2943-524399456)
Merighi A, Salio C, Ghirri A, Lossi L, Ferrini F, Betelli C, Bardoni R. BDNF as a pain modulator. Prog Neurobiol. 2008;85(3):297–317. https://doi.org/10.1016/j.pneurobio.2008.04.004 . (Epub 2008 Apr 26 PMID: 18514997). (PMID: 10.1016/j.pneurobio.2008.04.00418514997)
Binder DK, Scharfman HE. Brain-derived neurotrophic factor. Growth Factors. 2004;22(3):123–31. https://doi.org/10.1080/08977190410001723308 . (PMID: 10.1080/08977190410001723308155182352504526)
Park SB, Lee YJ, Chung CK. Bone mineral density changes after ovariectomy in rats as an osteopenic model: stepwise description of double dorso-lateral approach. J Korean Neurosurg Soc. 2010;48(4):309–12. https://doi.org/10.3340/jkns.2010.48.4.309 . (PMID: 10.3340/jkns.2010.48.4.309211133562982907)
Philippe L, Gegout-Pottie P, Guingamp C, Bordji K, Terlain B, Netter P, Gillet P. Relations between functional, inflammatory, and degenerative parameters during adjuvant arthritis in rats. Am J Physiol. 1997;273(4):R1550–6. https://doi.org/10.1152/ajpregu.1997.273.4.R1550 . (PMID: 9362323). (PMID: 10.1152/ajpregu.1997.273.4.R15509362323)
Yamazaki Y, Ren K, Shimada M, Iwata K. Modulation of paratrigeminal nociceptive neurons following temporomandibular joint inflammation in rats. Exp Neurol. 2008;214(2):209–18. https://doi.org/10.1016/j.expneurol.2008.08.005 . (PMID: 10.1016/j.expneurol.2008.08.005187787062684032)
Imbe H, Iwata K, Zhou QQ, Zou S, Dubner R, Ren K. Orofacial deep and cutaneous tissue inflammation and trigeminal neuronal activation implications for persistent temporomandibular pain. Cells Tissues Organs. 2001;169(3):238–47. (PMID: 10.1159/00004788711455119)
Ström JO, Theodorsson A, Ingberg E, Isaksson IM, Theodorsson E. Ovariectomy and 17β-estradiol replacement in rats and mice: a visual demonstration. J Vis Exp. 2012;64:e4013. https://doi.org/10.3791/4013 . (PMID: 10.3791/4013)
Goldman JM, Murr AS, Cooper RL. The rodent estrous cycle: characterization of vaginal cytology and its utility in toxicological studies. Birth Defects Res B Dev Reprod Toxicol. 2007;80(2):84–97. https://doi.org/10.1002/bdrb.20106 . (PMID: 17342777). (PMID: 10.1002/bdrb.2010617342777)
Liu S, Crawford J, Tao F. Assessing orofacial pain behaviors in animal models: a review. Brain Sci. 2023;13(3):390. https://doi.org/10.3390/brainsci13030390. (PMID: 10.3390/brainsci13030390.3697920010046781)
Woolfe G, MacDonald AD. The evaluation of the analgesic action of pethidine hydrochloride. J Pharmacol Exp Ther. 1944;80(3):300–7.
Gregory NS, Harris AL, Robinson CR, Dougherty PM, Fuchs PN, Sluka KA. An overview of animal models of pain: disease models and outcome measures. J Pain. 2013;14(11):1255–69. https://doi.org/10.1016/j.jpain.2013.06.008 . (PMID: 10.1016/j.jpain.2013.06.00824035349)
Castagné V, Moser P, Roux S, Porsolt RD. Rodent models of depression: forced swim and tail suspension behavioral despair tests in rats and mice. Curr Protoc Pharmacol. 2010. https://doi.org/10.1002/0471141755.ph0508s49 . (PMID: 10.1002/0471141755.ph0508s4922294373)
Porsolt RD, Anton G, Blavet N, Jalfre M. Behavioural despair in rats: a new model sensitive to antidepressant treatments. Eur J Pharmacol. 1978;47(4):379–91. https://doi.org/10.1016/0014-2999(78)90118-8 . (PMID: 204499). (PMID: 10.1016/0014-2999(78)90118-8204499)
Fillingim RB, Ness TJ. Sex-related hormonal influences on pain and analgesic responses. Neurosci Biobehav Rev. 2000;24(4):485–501. https://doi.org/10.1016/s0149-7634(00)00017-8 . (PMID: 10817845). (PMID: 10.1016/s0149-7634(00)00017-810817845)
Abdus-Saboor I, Fried NT, Lay M, Burdge J, Swanson K, Fischer R, Jones J, Dong P, Cai W, Guo X, Tao YX, Bethea J, Ma M, Dong X, Ding L, Luo W. Development of a mouse pain scale using sub-second behavioral mapping and statistical modeling. Cell Rep. 2019;28(6):1623-1634e4. https://doi.org/10.1016/j.celrep.2019.07.017. (PMID: 10.1016/j.celrep.2019.07.017.313905746724534)
Okamoto K, Tashiro A, Hirata H, Bereiter DA. Differential modulation of TMJ neurons in superficial laminae of trigeminal subnucleus caudalis/upper cervical cord junction region of male and cycling female rats by morphine. Pain. 2005;114(1–2):203–11. https://doi.org/10.1016/j.pain.2004.12.013 . (Epub 2005 Jan 26 PMID: 15733646). (PMID: 10.1016/j.pain.2004.12.01315733646)
da Silva Moreira SF, Medeiros LF, de Souza A, de Oliveira C, Scarabelot VL, Fregni F, Caumo W, Torres IL. Transcranial direct current stimulation (tDCS) neuromodulatory effects on mechanical hyperalgesia and cortical BDNF levels in ovariectomized rats. Life Sci. 2016;15(145):233–9. https://doi.org/10.1016/j.lfs.2015.10.011 . (Epub 2015 Oct 22 PMID: 26471218). (PMID: 10.1016/j.lfs.2015.10.011)
Paller CJ, Campbell CM, Edwards RR, Dobs AS. Sex-based differences in pain perception and treatment. Pain Med. 2009;10(2):289–99. https://doi.org/10.1111/j.1526-4637.2008.00558.x . (PMID: 10.1111/j.1526-4637.2008.00558.x19207233)
Chakraborty TR, Gore AC. Aging-related changes in ovarian hormones, their receptors, and neuroendocrine function. Exp Biol Med (Maywood). 2004;229(10):977–87. https://doi.org/10.1177/153537020422901001 . (PMID: 15522833). (PMID: 10.1177/15353702042290100115522833)
Hwang C, Pu HF, Hwang CY, Liu JY, Yao HC, Tung YF, Wang PS. Age-related differences in the release of luteinizing hormone and gonadotropin-releasing hormone in ovariectomized rats. Neuroendocrinology. 1990;52(2):127–32. https://doi.org/10.1159/000125562 . (PMID: 2125700). (PMID: 10.1159/0001255622125700)
Borsini F, Meli A. Is the forced swimming test a suitable model for revealing antidepressant activity? Psychopharmacology. 1988;94(2):147–60. https://doi.org/10.1007/BF00176837 . (PMID: 3127840). (PMID: 10.1007/BF001768373127840)
Li LH, Wang ZC, Yu J, Zhang YQ. Ovariectomy results in variable changes in nociception, mood and depression in adult female rats. PLoS ONE. 2014;9(4):e94312. https://doi.org/10.1371/journal.pone.0094312. (PMID: 10.1371/journal.pone.0094312.247104723978042)
Walf AA, Paris JJ, Frye CA. Chronic estradiol replacement to aged female rats reduces anxiety-like and depression-like behavior and enhances cognitive performance. Psychoneuroendocrinology. 2009;34(6):909–16. https://doi.org/10.1016/j.psyneuen.2009.01.004 . (PMID: 10.1016/j.psyneuen.2009.01.004192160302696690)
Grigoryan GA. Ovariectomy as a model of anxiety-depressive disorders. Neurochem J. 2022;16:1–13. https://doi.org/10.1134/S1819712422010068 . (PMID: 10.1134/S1819712422010068)
Kiss A, Delattre AM, Pereira SI, Carolino RG, Szawka RE, Anselmo-Franci JA, Zanata SM, Ferraz AC. 17β-estradiol replacement in young, adult and middle-aged female ovariectomized rats promotes improvement of spatial reference memory and an antidepressant effect and alters monoamines and BDNF levels in memory- and depression-related brain areas. Behav Brain Res. 2012;227(1):100–8. https://doi.org/10.1016/j.bbr.2011.10.047 . (Epub 2011 Nov 7 PMID: 22085882). (PMID: 10.1016/j.bbr.2011.10.04722085882)
Boivin JR, Piekarski DJ, Wahlberg JK, Wilbrecht L. Age, sex, and gonadal hormones differently influence anxiety- and depression-related behavior during puberty in mice. Psychoneuroendocrinology. 2017;85:78–87. https://doi.org/10.1016/j.psyneuen.2017.08.009 . (PMID: 10.1016/j.psyneuen.2017.08.009288379096596309)
do Nascimento GC, Leite-Panissi CR. Time-dependent analysis of nociception and anxiety-like behavior in rats submitted to persistent inflammation of the temporomandibular joint. Physiol Behav. 2014;125:1–7. https://doi.org/10.1016/j.physbeh.2013.11.009 . (PMID: 10.1016/j.physbeh.2013.11.00924291383)
Spears R, Dees LA, Sapozhnikov M, Bellinger LL, Hutchins B. Temporal changes in inflammatory mediator concentrations in an adjuvant model of temporomandibular joint inflammation. J Orofac Pain. 2005;19(1):34–40. (PMID: 15779537)
Rauf A, Badoni H, Abu-Izneid T, Olatunde A, Rahman MM, Painuli S, Semwal P, Wilairatana P, Mubarak MS. Neuroinflammatory markers: key indicators in the pathology of neurodegenerative diseases. Molecules. 2022;27(10):3194. https://doi.org/10.3390/molecules27103194. (PMID: 10.3390/molecules27103194.356306709146652)
Beyeler SA, Naidoo R, Plunkett DLM, Huxtable AG. Homotypic neonatal and adult inflammation primes adult microglia without impairing adult breathing. The Faseb J: Physiol. 2022. https://doi.org/10.1096/fasebj.2022.36.S1.0R587 . (PMID: 10.1096/fasebj.2022.36.S1.0R587)
Chung JY, Yi JW, Kim SM, Lim YJ, Chung JH, Jo DJ. Changes in gene expression in the rat hippocampus after focal cerebral ischemia. J Korean Neurosurg Soc. 2011;50(3):173–8. https://doi.org/10.3340/jkns.2011.50.3.173 . (PMID: 10.3340/jkns.2011.50.3.173221029443218173)
Hedley KE, Callister RJ, Callister R, Horvat JC, Tadros MA. Alterations in brainstem respiratory centers following peripheral inflammation: a systematic review. J Neuroimmunol. 2022;369:577903. https://doi.org/10.1016/j.jneuroim.2022.577903 . (PMID: 10.1016/j.jneuroim.2022.57790335687985)
Kraynak TE, Marsland AL, Wager TD, Gianaros PJ. Functional neuroanatomy of peripheral inflammatory physiology: a meta-analysis of human neuroimaging studies. Neurosci Biobehav Rev. 2018;94:76–92. https://doi.org/10.1016/j.neubiorev.2018.07.013 . (PMID: 10.1016/j.neubiorev.2018.07.013300679396363360)
Basinger H, Hogg JP. Neuroanatomy, Brainstem. [Updated 2023 Jul 4]. In: StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2024 Jan-. Available from: https://www.ncbi.nlm.nih.gov/books/NBK544297/.
Smith PA. BDNF: no gain without pain? Neuroscience. 2014;26(283):107–23. https://doi.org/10.1016/j.neuroscience.2014.05.044 . (Epub 2014 Jun 2 PMID: 24887639). (PMID: 10.1016/j.neuroscience.2014.05.044)
Russell WMS, Burch RL. The principles of humane experimental technique, Methuen, London. ISBN 0900767782. 1959. https://caat.jhsph.edu/the-principles-of-humane-experimental-technique/.
Muley MM, Krustev E, McDougall JJ. Preclinical assessment of inflammatory pain. CNS Neurosci Ther. 2016;22(2):88–101. https://doi.org/10.1111/cns.12486 . (PMID: 10.1111/cns.1248626663896)
معلومات مُعتمدة: PQ 302345/2011-6 Conselho Nacional de Desenvolvimento Científico e Tecnológico; PQ 301256/2013-6 Conselho Nacional de Desenvolvimento Científico e Tecnológico; FIPE HCPA Grant #2021-0632 Hospital de Clínicas de Porto Alegre; 1245/13 Financiadora de Estudos e Projetos; 1245/13 Financiadora de Estudos e Projetos
فهرسة مساهمة: Keywords: CFA; Estrogen; Ovariectomy; Rats; Temporomandibular disorders
تواريخ الأحداث: Date Created: 20240702 Latest Revision: 20240702
رمز التحديث: 20240703
DOI: 10.1007/s10266-024-00964-8
PMID: 38954152
قاعدة البيانات: MEDLINE