Page last updated: 2024-10-29

ketamine and Delayed Effects, Prenatal Exposure

ketamine has been researched along with Delayed Effects, Prenatal Exposure in 24 studies

Ketamine: A cyclohexanone derivative used for induction of anesthesia. Its mechanism of action is not well understood, but ketamine can block NMDA receptors (RECEPTORS, N-METHYL-D-ASPARTATE) and may interact with sigma receptors.
ketamine : A member of the class of cyclohexanones in which one of the hydrogens at position 2 is substituted by a 2-chlorophenyl group, while the other is substituted by a methylamino group.

Research Excerpts

ExcerptRelevanceReference
"Here we show that mice prenatally exposed to ketamine displayed anxiety-like behaviors during adulthood, but not during puberty."7.96Prenatal Exposure to Ketamine Leads to Anxiety-Like Behaviors and Dysfunction in Bed Nucleus of Stria Terminalis. ( Chen, Y; Feng, X; Guo, H; Hu, Y; Li, Y; Lin, J; Lin, L; Liu, T; Lu, Z; Sun, J; Xu, S, 2020)
" Thus, the aim of this study was (1) to evaluate the cognitive effects and biochemical markers produced by the AIN-93 diet (control), the AIN-93 diet supplemented with different doses of FA (5, 10, and 50 mg/kg), and a FA-deficient diet during pregnancy and lactation in female mother rats (dams) and (2) to evaluate the effect of maternal diets on inflammatory parameters in the adult offspring which were subjected to an animal model of schizophrenia (SZ) induced by ketamine (Ket)."7.88The Evaluation of Folic Acid-Deficient or Folic Acid-Supplemented Diet in the Gestational Phase of Female Rats and in Their Adult Offspring Subjected to an Animal Model of Schizophrenia. ( Alves, CSV; Barcellos, AS; Budni, J; Canever, L; Citadin, S; Damázio, L; De Luca, LA; Garcez, ML; Mastella, G; Polla, JV; Quevedo, J; Zugno, AI, 2018)
"Schizophrenia is a complex neuropsychiatric disorder characterized by hallucinations, delusions, anhedonia, flat affect and cognitive impairments."5.48Prenatal exposure to ketamine in rats: Implications on animal models of schizophrenia. ( Coronel-Oliveros, CM; Pacheco-Calderón, R, 2018)
"Here we show that mice prenatally exposed to ketamine displayed anxiety-like behaviors during adulthood, but not during puberty."3.96Prenatal Exposure to Ketamine Leads to Anxiety-Like Behaviors and Dysfunction in Bed Nucleus of Stria Terminalis. ( Chen, Y; Feng, X; Guo, H; Hu, Y; Li, Y; Lin, J; Lin, L; Liu, T; Lu, Z; Sun, J; Xu, S, 2020)
" Thus, the aim of this study was (1) to evaluate the cognitive effects and biochemical markers produced by the AIN-93 diet (control), the AIN-93 diet supplemented with different doses of FA (5, 10, and 50 mg/kg), and a FA-deficient diet during pregnancy and lactation in female mother rats (dams) and (2) to evaluate the effect of maternal diets on inflammatory parameters in the adult offspring which were subjected to an animal model of schizophrenia (SZ) induced by ketamine (Ket)."3.88The Evaluation of Folic Acid-Deficient or Folic Acid-Supplemented Diet in the Gestational Phase of Female Rats and in Their Adult Offspring Subjected to an Animal Model of Schizophrenia. ( Alves, CSV; Barcellos, AS; Budni, J; Canever, L; Citadin, S; Damázio, L; De Luca, LA; Garcez, ML; Mastella, G; Polla, JV; Quevedo, J; Zugno, AI, 2018)
"A deficiency of maternal folic acid (FA) can compromise the function and development of the brain, and may produce a susceptibility to diseases such as schizophrenia (SZ) in the later life of offspring."3.88Changes in behavioural parameters, oxidative stress and neurotrophins in the brain of adult offspring induced to an animal model of schizophrenia: The effects of FA deficient or FA supplemented diet during the neurodevelopmental phase. ( Budni, J; Canever, L; Carvalho, G; Damázio, L; Fachim, I; Freire, TG; Gava, FF; Godói, AK; Gomes, S; Mastella, GA; Michels, C; Peterle, BR; Quevedo, J; Valvassori, SS; Zugno, AI, 2018)
"Infections during pregnancy are associated with an increased risk of neuropsychiatric disorders with developmental etiologies, such as schizophrenia and autism spectrum disorders (ASD)."1.91(R)-ketamine attenuates neurodevelopmental disease-related phenotypes in a mouse model of maternal immune activation. ( da Silva Júnior, JC; de Andrade Silva, SC; de Lima, DA; de Oliveira, EG; de Santana, JH; de Souza Barbosa, MV; Dos Santos Junior, OH; Duarte, FS; Gomes, DA; Lagranha, CJ; Lira, EC, 2023)
"Major depressive disorder is a common and debilitating condition with substantial economic impact."1.51The novel antidepressant ketamine enhances dentate gyrus proliferation with no effects on synaptic plasticity or hippocampal function in depressive-like rats. ( Andersson, M; Bergström, N; Culley, G; Ehn, J; Engström, A; Hanse, E; Karlsson, L; Kuhn, HG; Michaëlsson, H; Savvidi, P; Seth, H; Svensson, J, 2019)
"Ketamine is an N-methyl-D-aspartate (NMDA) receptor antagonist widely used in pediatric anesthetic and therapeutic practices and veterinary medicine."1.51Behavioral effects of postnatal ketamine exposure in rhesus macaque infants are dependent on MAOA-LPR genotype. ( Capitanio, JP; Del Rosso, L; Herrington, JA, 2019)
"Schizophrenia is a complex neuropsychiatric disorder characterized by hallucinations, delusions, anhedonia, flat affect and cognitive impairments."1.48Prenatal exposure to ketamine in rats: Implications on animal models of schizophrenia. ( Coronel-Oliveros, CM; Pacheco-Calderón, R, 2018)
"Ketamine is an N-methyl-D-aspartate (NMDA) receptor antagonist that is used in anesthetic, abuse, and therapeutic contexts."1.38Behavioral effects of prenatal ketamine exposure in rhesus macaques are dependent on MAOA genotype. ( Blozis, SA; Calonder, LA; Capitanio, JP; Del Rosso, LA; Penedo, MC, 2012)

Research

Studies (24)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's3 (12.50)29.6817
2010's18 (75.00)24.3611
2020's3 (12.50)2.80

Authors

AuthorsStudies
Huang, R1
Lin, B1
Tian, H1
Luo, Q1
Li, Y7
de Oliveira, EG1
de Lima, DA1
da Silva Júnior, JC1
de Souza Barbosa, MV1
de Andrade Silva, SC1
de Santana, JH1
Dos Santos Junior, OH1
Lira, EC1
Lagranha, CJ1
Duarte, FS1
Gomes, DA1
Sun, J3
Lin, J1
Feng, X1
Lu, Z1
Liu, T3
Lin, L4
Chen, Y1
Hu, Y2
Xu, S1
Guo, H1
Halim, AA1
Alsayed, B1
Embarak, S1
Yaseen, T1
Dabbous, S1
Fontaine, O1
Dueluzeau, R1
Raibaud, P1
Chabanet, C1
Popoff, MR1
Badoual, J1
Gabilan, JC1
Andremont, A1
Gómez, L1
Andrés, S1
Sánchez, J1
Alonso, JM1
Rey, J1
López, F1
Jiménez, A1
Yan, Z1
Zhou, L3
Zhao, Y3
Wang, J7
Huang, L2
Hu, K1
Liu, H4
Wang, H3
Guo, Z1
Song, Y1
Huang, H4
Yang, R1
Owen, TW1
Al-Kaysi, RO1
Bardeen, CJ1
Cheng, Q1
Wu, S1
Cheng, T1
Zhou, X1
Wang, B4
Zhang, Q4
Wu, X2
Yao, Y3
Ochiai, T1
Ishiguro, H2
Nakano, R2
Kubota, Y2
Hara, M1
Sunada, K1
Hashimoto, K1
Kajioka, J1
Fujishima, A1
Jiao, J3
Gai, QY3
Wang, W3
Zang, YP2
Niu, LL2
Fu, YJ3
Wang, X4
Yao, LP1
Qin, QP1
Wang, ZY1
Liu, J4
Aleksic Sabo, V1
Knezevic, P1
Borges-Argáez, R1
Chan-Balan, R1
Cetina-Montejo, L1
Ayora-Talavera, G1
Sansores-Peraza, P1
Gómez-Carballo, J1
Cáceres-Farfán, M1
Jang, J1
Akin, D1
Bashir, R1
Yu, Z1
Zhu, J2
Jiang, H1
He, C2
Xiao, Z1
Xu, J2
Sun, Q1
Han, D1
Lei, H1
Zhao, K2
Zhu, L1
Li, X4
Fu, H2
Wilson, BK1
Step, DL1
Maxwell, CL1
Gifford, CA1
Richards, CJ1
Krehbiel, CR1
Warner, JM1
Doerr, AJ1
Erickson, GE1
Guretzky, JA1
Rasby, RJ1
Watson, AK1
Klopfenstein, TJ1
Sun, Y4
Liu, Z3
Pham, TD1
Lee, BK1
Yang, FC1
Wu, KH1
Lin, WP1
Hu, MK1
Shao, J1
Sun, M1
Xu, G1
Zhang, X6
Xu, N1
Wang, R1
Liu, S1
He, H1
Dong, X2
Yang, M2
Yang, Q1
Duan, S1
Yu, Y2
Han, J2
Zhang, C3
Chen, L2
Yang, X1
Li, W3
Wang, T2
Campbell, DA1
Gao, K1
Zager, RA1
Johnson, ACM1
Guillem, A1
Keyser, J1
Singh, B1
Steubl, D1
Schneider, MP1
Meiselbach, H1
Nadal, J1
Schmid, MC1
Saritas, T1
Krane, V1
Sommerer, C1
Baid-Agrawal, S1
Voelkl, J1
Kotsis, F1
Köttgen, A1
Eckardt, KU1
Scherberich, JE1
Li, H4
Yao, L2
Sun, L3
Zhu, Z1
Naren, N1
Zhang, XX2
Gentile, GL1
Rupert, AS1
Carrasco, LI1
Garcia, EM1
Kumar, NG1
Walsh, SW1
Jefferson, KK1
Guest, RL1
Samé Guerra, D1
Wissler, M1
Grimm, J1
Silhavy, TJ1
Lee, JH2
Yoo, JS1
Kim, Y1
Kim, JS2
Lee, EJ1
Roe, JH1
Delorme, M1
Bouchard, PA1
Simon, M1
Simard, S1
Lellouche, F1
D'Urzo, KA1
Mok, F1
D'Urzo, AD1
Koneru, B1
Lopez, G1
Farooqi, A1
Conkrite, KL1
Nguyen, TH1
Macha, SJ1
Modi, A1
Rokita, JL1
Urias, E1
Hindle, A1
Davidson, H1
Mccoy, K1
Nance, J1
Yazdani, V1
Irwin, MS1
Yang, S1
Wheeler, DA1
Maris, JM1
Diskin, SJ1
Reynolds, CP1
Abhilash, L1
Kalliyil, A1
Sheeba, V1
Hartley, AM2
Meunier, B2
Pinotsis, N1
Maréchal, A2
Xu, JY1
Genko, N1
Haraux, F1
Rich, PR1
Kamalanathan, M1
Doyle, SM1
Xu, C1
Achberger, AM1
Wade, TL1
Schwehr, K1
Santschi, PH1
Sylvan, JB1
Quigg, A1
Leong, W1
Xu, W2
Gao, S1
Zhai, X1
Wang, C2
Gilson, E1
Ye, J1
Lu, Y1
Yan, R1
Zhang, Y6
Hu, Z1
You, Q1
Cai, Q1
Yang, D1
Gu, S1
Dai, H1
Zhao, X1
Gui, C1
Gui, J1
Wu, PK1
Hong, SK1
Starenki, D1
Oshima, K1
Shao, H1
Gestwicki, JE1
Tsai, S1
Park, JI1
Wang, Y7
Zhao, R1
Gu, Z1
Dong, C3
Guo, G1
Li, L4
Barrett, HE1
Meester, EJ1
van Gaalen, K1
van der Heiden, K1
Krenning, BJ1
Beekman, FJ1
de Blois, E1
de Swart, J1
Verhagen, HJ1
Maina, T1
Nock, BA1
Norenberg, JP1
de Jong, M1
Gijsen, FJH1
Bernsen, MR1
Martínez-Milla, J1
Galán-Arriola, C1
Carnero, M1
Cobiella, J1
Pérez-Camargo, D1
Bautista-Hernández, V1
Rigol, M1
Solanes, N1
Villena-Gutierrez, R1
Lobo, M1
Mateo, J1
Vilchez-Tschischke, JP1
Salinas, B1
Cussó, L1
López, GJ1
Fuster, V1
Desco, M1
Sanchez-González, J1
Ibanez, B1
van den Berg, P1
Schweitzer, DH1
van Haard, PMM1
Geusens, PP1
van den Bergh, JP1
Zhu, X1
Huang, X2
Xu, H2
Yang, G2
Lin, Z1
Salem, HF1
Nafady, MM1
Kharshoum, RM1
Abd El-Ghafar, OA1
Farouk, HO1
Domiciano, D1
Nery, FC1
de Carvalho, PA1
Prudente, DO1
de Souza, LB1
Chalfun-Júnior, A1
Paiva, R1
Marchiori, PER1
Lu, M2
An, Z1
Jiang, J2
Li, J7
Du, S1
Zhou, H1
Cui, J1
Wu, W1
Liu, Y7
Song, J1
Lian, Q1
Uddin Ahmad, Z1
Gang, DD1
Konggidinata, MI1
Gallo, AA1
Zappi, ME1
Yang, TWW1
Johari, Y1
Burton, PR1
Earnest, A1
Shaw, K1
Hare, JL1
Brown, WA1
Kim, GA1
Han, S1
Choi, GH1
Choi, J1
Lim, YS1
Gallo, A1
Cancelli, C1
Ceron, E1
Covino, M1
Capoluongo, E1
Pocino, K1
Ianiro, G1
Cammarota, G1
Gasbarrini, A1
Montalto, M1
Somasundar, Y1
Lu, IC1
Mills, MR1
Qian, LY1
Olivares, X1
Ryabov, AD1
Collins, TJ1
Zhao, L1
Doddipatla, S1
Thomas, AM1
Nikolayev, AA1
Galimova, GR1
Azyazov, VN1
Mebel, AM1
Kaiser, RI1
Guo, S1
Yang, P1
Yu, X2
Wu, Y2
Zhang, H4
Yu, B2
Han, B1
George, MW1
Moor, MB1
Bonny, O1
Langenberg, E1
Paik, H1
Smith, EH1
Nair, HP1
Hanke, I1
Ganschow, S1
Catalan, G1
Domingo, N1
Schlom, DG1
Assefa, MK1
Wu, G2
Hayton, TW1
Becker, B1
Enikeev, D1
Netsch, C1
Gross, AJ1
Laukhtina, E1
Glybochko, P1
Rapoport, L1
Herrmann, TRW1
Taratkin, M1
Dai, W1
Shi, J2
Carreno, J1
Kloner, RA1
Pickersgill, NA1
Vetter, JM1
Kim, EH1
Cope, SJ1
Du, K1
Venkatesh, R1
Giardina, JD1
Saad, NES1
Bhayani, SB1
Figenshau, RS1
Eriksson, J1
Landfeldt, E1
Ireland, S1
Jackson, C1
Wyatt, E1
Gaudig, M1
Stancill, JS1
Happ, JT1
Broniowska, KA1
Hogg, N1
Corbett, JA1
Tang, LF1
Bi, YL1
Fan, Y2
Sun, YB1
Wang, AL1
Xiao, BH1
Wang, LF1
Qiu, SW1
Guo, SW1
Wáng, YXJ1
Chu, S1
Pan, Q1
Li, D2
Zheng, S2
Ma, L1
Wang, L3
Hu, T1
Wang, F1
Han, Z1
Yin, Z1
Ge, X1
Xie, K1
Lei, P1
Dias-Santagata, D1
Lennerz, JK1
Sadow, PM1
Frazier, RP1
Govinda Raju, S1
Henry, D1
Chung, T1
Kherani, J1
Rothenberg, SM1
Wirth, LJ1
Marti, CN1
Choi, NG1
Bae, SJ1
Ni, L1
Luo, X1
Dai, T1
Yang, Y3
Lee, R1
Fleischer, AS1
Wemhoff, AP1
Ford, CR1
Kleppinger, EL1
Helms, K1
Bush, AA1
Luna-Abanto, J1
García Ruiz, L1
Laura Martinez, J1
Álvarez Larraondo, M1
Villoslada Terrones, V1
Dukic, L1
Maric, N1
Simundic, AM1
Chogtu, B1
Ommurugan, B1
Thomson, SR1
Kalthur, SG1
Benidir, M1
El Massoudi, S1
El Ghadraoui, L1
Lazraq, A1
Benjelloun, M1
Errachidi, F1
Cassar, M1
Law, AD1
Chow, ES1
Giebultowicz, JM1
Kretzschmar, D1
Salonurmi, T1
Nabil, H1
Ronkainen, J1
Hyötyläinen, T1
Hautajärvi, H1
Savolainen, MJ1
Tolonen, A1
Orešič, M1
Känsäkoski, P1
Rysä, J1
Hakkola, J1
Hukkanen, J1
Zhu, N1
Du, Q1
Hao, P1
Cao, X1
Li, CX1
Zhao, S1
Luo, XM1
Feng, JX1
Gonzalez-Cotto, M1
Guo, L1
Karwan, M1
Sen, SK1
Barb, J1
Collado, CJ1
Elloumi, F1
Palmieri, EM1
Boelte, K1
Kolodgie, FD1
Finn, AV1
Biesecker, LG1
McVicar, DW1
Qu, F1
Deng, Z1
Xie, Y2
Tang, J3
Chen, Z2
Luo, W1
Xiong, D1
Zhao, D1
Fang, J1
Zhou, Z1
Niu, PP1
Song, B1
Xu, YM1
Zhang, Z2
Qiu, N1
Yin, J1
Zhang, J3
Guo, W1
Liu, M2
Chen, D5
Luo, K1
He, Z2
Zheng, G1
Xu, F1
Sun, W1
Yin, F1
van Hest, JCM1
Du, L2
Shi, X1
Kang, S1
Duan, W1
Zhang, S2
Feng, J2
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Shen, G1
Ren, H1
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Alame, M1
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Azpilikueta, A1
de Andrea, CE1
Etxeberria, I1
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Dymek, B1
Stanczak, PS1
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Olczak, J1
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Zagozdzon, A1
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Enyedy, I1
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Marcotte, DJ1
Murugan, P1
Santoro, JC1
Gonzalez-Lopez de Turiso, F1
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Boudot, C1
Brossas, JY1
Pinault, E1
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Sournia-Saquet, A1
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Destere, A1
Tronnet, A1
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Bonduelle, C1
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Corvaisier, S1
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Wyllie, S1
Milne, R1
Fairlamb, AH1
Valentin, A1
Courtioux, B1
Verhaeghe, P1
Fang, X1
Gao, M1
Gao, H1
Bi, W1
Tang, H1
Cui, Y1
Zhang, L3
Fan, H1
Yu, H1
Mathison, CJN1
Chianelli, D1
Rucker, PV1
Nelson, J1
Roland, J1
Huang, Z2
Xie, YF1
Epple, R1
Bursulaya, B1
Lee, C1
Gao, MY1
Shaffer, J1
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Galkin, A1
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Kasibhatla, S1
Kinyamu-Akunda, J1
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Molteni, V1
Tellew, JE1
Jin, X1
Pang, B1
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Ma, Y1
Soo Lee, M1
Yuan, W1
Gao, R1
Qi, H1
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Chua, H1
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Ou, Y1
Huang, M1
Zhu, Y1
Yu, J1
Tian, J1
Zhao, M1
Hu, J1
Yao, C1
Zhang, B1
Usawachintachit, M1
Tzou, DT1
Washington, SL1
Hu, W1
Chi, T1
Sorensen, MD1
Bailey, MR1
Hsi, RS1
Cunitz, BW1
Simon, J1
Wang, YN1
Dunmire, BL1
Paun, M1
Starr, F1
Lu, W1
Evan, AP1
Harper, JD1
Han, G1
Rodrigues, AE1
Fouladvand, F1
Falahi, E1
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Anigboro, AA1
Avwioroko, OJ1
Cholu, CO1
Sonei, A1
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Kanaani, L1
Jahromy, MH1
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Hong, KB1
Suh, HJ1
Park, JH1
Shin, E1
Park, E1
Kouakou-Kouamé, CA1
N'guessan, FK1
Montet, D1
Djè, MK1
Kim, GD1
González-Fernández, D1
Pons, EDC1
Rueda, D1
Sinisterra, OT1
Murillo, E1
Scott, ME1
Koski, KG1
Shete, PB1
Gonzales, R1
Ackerman, S1
Cattamanchi, A1
Handley, MA1
Li, XX1
Xiao, SZ1
Gu, FF1
He, WP1
Ni, YX1
Han, LZ1
Heffernan, JK1
Valgepea, K1
de Souza Pinto Lemgruber, R1
Casini, I1
Plan, M1
Tappel, R1
Simpson, SD1
Köpke, M1
Nielsen, LK1
Marcellin, E1
Cen, YK1
Lin, JG1
Wang, YL1
Wang, JY1
Liu, ZQ1
Zheng, YG1
Spirk, D1
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Sudano, I1
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Kaplan, DL1
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Park, DJ1
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Song, M1
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Yang, C2
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Merle, G1
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Kim, MJ1
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Choi, M1
Ku, KB1
Lee, CS1
Jun, S1
Park, D1
Kim, HG1
Kim, SJ1
Lee, JO1
Kim, BT1
Park, EC1
Kim, SI1
Ende, M1
Kirkkala, T1
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Talla, D1
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Zhan, P1
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Wang, Q2
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Sun, Z1
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Xu, X1
Ma, G1
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Ratner, JR1
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Gu, C1
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Wang, ZF1
Liu, SL1
Ba, YF1
Zhang, RX1
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Fan, CC1
Chen, PN1
Liang, GH1
Yu, YK1
Wang, HR1
Li, HM1
Li, ZX1
Lalani, SS1
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Khalique, A1
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Han, X1
Zhou, Y3
Xue, H1
Zhang, W1
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Noer, PR1
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Goldstein, A1
Ke, C1
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Kong, F1
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Mazumder, D1
Yan, X1
Ma, C1
Tang, Y1
Kong, X1
Lu, J1
Zhang, M1
Vital-Jacome, M1
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Xia, Y1
Chen, S1
Luo, M1
Wu, J1
Cai, S1
He, Y2
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Jackowski, K1
Yuan, Q1
Sherrell, PC1
Chen, J2
Bi, X1
Nutho, B1
Mahalapbutr, P1
Hengphasatporn, K1
Pattaranggoon, NC1
Simanon, N1
Shigeta, Y1
Hannongbua, S1
Rungrotmongkol, T1
Caffrey, PJ1
Kher, R1
Bian, K1
Delaney, S1
Xue, J1
Wu, P1
Xu, L1
Yuan, Y1
Luo, J1
Ye, S1
Ustriyana, P1
Wei, B1
Raee, E1
Wesdemiotis, C1
Sahai, N1
Kaur, A1
Nigam, K1
Srivastava, S1
Tyagi, A1
Dang, S1
Millar, JE1
Bartnikowski, N1
Passmore, MR1
Obonyo, NG1
Malfertheiner, MV1
von Bahr, V1
Redd, MA1
See Hoe, L1
Ki, KK1
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Shekar, K1
Palpant, N1
Suen, JY1
Matthay, MA1
McAuley, DF1
Fraser, JF1
Settles, JA1
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Suico, JG1
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Lee, JS1
Lee, EY1
Lee, HY1
Yu, HG1
Leslie, I1
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Pickering, L1
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Vogel, K1
Hampel, D1
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Fogleman, AD1
Ferraz, SL1
O'Connor, M1
Mazzucchelli, TG1
Kajiyama, H1
Suzuki, S1
Shimbo, A1
Utsumi, F1
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Javvaji, PK1
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Mao, C1
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Cheng, H1
Zhang, G1
Jiang, F1
Meng, X1
Elnour, IE1
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Song, E1
Rohde, S1
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Muslem, R1
de Woestijne, PCV1
der Meulen, MHV1
Kraemer, US1
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Chen, WP1
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Wang, WP1
Yu, L1
Tan, SJ1
Xin, S1
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Guo, YG1
Tanda, S1
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Yan, W1
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Xu, D1
Hassan, HM1
Jiang, Z1
Bachmann, KF1
Haenggi, M1
Jakob, SM1
Takala, J1
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Chu, Q1
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Reviews

3 reviews available for ketamine and Delayed Effects, Prenatal Exposure

ArticleYear
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016
Developmental neurotoxicity of ketamine in pediatric clinical use.
    Toxicology letters, 2013, Jun-20, Volume: 220, Issue:1

    Topics: Analgesics; Apoptosis; Brain; Cell Differentiation; Female; Humans; Infant, Newborn; Infant, Prematu

2013
Antischizophrenic activity independent of dopamine D2 blockade.
    Expert opinion on therapeutic targets, 2002, Volume: 6, Issue:5

    Topics: Amino Acid Transport System X-AG; Animals; Antipsychotic Agents; Brain Chemistry; Dopamine D2 Recept

2002

Trials

1 trial available for ketamine and Delayed Effects, Prenatal Exposure

ArticleYear
    The Egyptian journal of chest diseases and tuberculosis, 2016, Volume: 65, Issue:1

    Topics: A549 Cells; Acetylmuramyl-Alanyl-Isoglutamine; Acinetobacter baumannii; Acute Lung Injury; Adaptor P

2016

Other Studies

21 other studies available for ketamine and Delayed Effects, Prenatal Exposure

ArticleYear
Prenatal Exposure to General Anesthesia Drug Esketamine Impaired Neurobehavior in Offspring.
    Cellular and molecular neurobiology, 2023, Volume: 43, Issue:6

    Topics: Anesthesia, General; Anesthetics; Animals; Female; Hippocampus; Humans; Ketamine; Neuronal Plasticit

2023
(R)-ketamine attenuates neurodevelopmental disease-related phenotypes in a mouse model of maternal immune activation.
    European archives of psychiatry and clinical neuroscience, 2023, Volume: 273, Issue:7

    Topics: Animals; Behavior, Animal; Cytokines; Disease Models, Animal; Female; Humans; Ketamine; Male; Mice;

2023
Prenatal Exposure to Ketamine Leads to Anxiety-Like Behaviors and Dysfunction in Bed Nucleus of Stria Terminalis.
    The international journal of neuropsychopharmacology, 2020, 04-21, Volume: 23, Issue:3

    Topics: Age Factors; Anesthetics, Dissociative; Animals; Anxiety; Behavior, Animal; Disease Models, Animal;

2020
The Evaluation of Folic Acid-Deficient or Folic Acid-Supplemented Diet in the Gestational Phase of Female Rats and in Their Adult Offspring Subjected to an Animal Model of Schizophrenia.
    Molecular neurobiology, 2018, Volume: 55, Issue:3

    Topics: Animals; Dietary Supplements; Disease Models, Animal; Female; Folic Acid; Folic Acid Deficiency; Inf

2018
How Ketamine Affects Livers of Pregnant Mice and Developing Mice?
    International journal of molecular sciences, 2017, May-19, Volume: 18, Issue:5

    Topics: Alkaline Phosphatase; Analgesics; Animals; Aspartate Aminotransferases; Cell Death; Cell Proliferati

2017
Prenatal exposure to ketamine in rats: Implications on animal models of schizophrenia.
    Developmental psychobiology, 2018, Volume: 60, Issue:1

    Topics: Animals; Behavior, Animal; CA3 Region, Hippocampal; Cognitive Dysfunction; Disease Models, Animal; E

2018
Changes in behavioural parameters, oxidative stress and neurotrophins in the brain of adult offspring induced to an animal model of schizophrenia: The effects of FA deficient or FA supplemented diet during the neurodevelopmental phase.
    Progress in neuro-psychopharmacology & biological psychiatry, 2018, 08-30, Volume: 86

    Topics: Animals; Behavior, Animal; Brain; Dietary Supplements; Disease Models, Animal; Female; Folic Acid; F

2018
The novel antidepressant ketamine enhances dentate gyrus proliferation with no effects on synaptic plasticity or hippocampal function in depressive-like rats.
    Acta physiologica (Oxford, England), 2019, Volume: 225, Issue:4

    Topics: Animals; Dentate Gyrus; Depressive Disorder, Major; Dexamethasone; Disease Models, Animal; Drug Eval

2019
Behavioral effects of postnatal ketamine exposure in rhesus macaque infants are dependent on MAOA-LPR genotype.
    Developmental psychobiology, 2019, Volume: 61, Issue:4

    Topics: Animals; Behavior, Animal; Excitatory Amino Acid Antagonists; Female; Genotype; Ketamine; Macaca mul

2019
Chronic exposure to cigarette smoke during gestation results in altered cholinesterase enzyme activity and behavioral deficits in adult rat offspring: potential relevance to schizophrenia.
    Journal of psychiatric research, 2013, Volume: 47, Issue:6

    Topics: Animals; Cholinesterases; Disease Models, Animal; Female; Ketamine; Maternal Exposure; Motor Activit

2013
Ketamine administered to pregnant rats in the second trimester causes long-lasting behavioral disorders in offspring.
    Neurobiology of disease, 2014, Volume: 68

    Topics: Age Factors; Analgesics; Animals; Animals, Newborn; Body Temperature; Cell Proliferation; Disease Mo

2014
Ketamine alters cortical integration of GABAergic interneurons and induces long-term sex-dependent impairments in transgenic Gad67-GFP mice.
    Cell death & disease, 2014, Jul-03, Volume: 5

    Topics: Animals; Apoptosis; Calcium; Cell Differentiation; Cerebral Cortex; Female; gamma-Aminobutyric Acid;

2014
Prenatal ketamine exposure causes abnormal development of prefrontal cortex in rat.
    Scientific reports, 2016, 05-26, Volume: 6

    Topics: Abnormalities, Drug-Induced; Anesthetics, Dissociative; Animals; Apoptosis; Brain; Cells, Cultured;

2016
Reactive Oxygen Species-mediated Loss of Phenotype of Parvalbumin Interneurons Contributes to Long-term Cognitive Impairments After Repeated Neonatal Ketamine Exposures.
    Neurotoxicity research, 2016, Volume: 30, Issue:4

    Topics: Acetophenones; Animals; Anxiety; Brain; Cognitive Dysfunction; Cohort Studies; Disease Models, Anima

2016
Transgenerational impairment of hippocampal Akt-mTOR signaling and behavioral deficits in the offspring of mice that experience postpartum depression-like illness.
    Progress in neuro-psychopharmacology & biological psychiatry, 2017, 02-06, Volume: 73

    Topics: Age Factors; Animals; Depression, Postpartum; Disease Models, Animal; Eating; Excitatory Amino Acid

2017
Effects of early or late prenatal immune activation in mice on behavioral and neuroanatomical abnormalities relevant to schizophrenia in the adulthood.
    International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience, 2017, Volume: 58

    Topics: Age Factors; Analysis of Variance; Animals; Animals, Newborn; Brain; Disease Models, Animal; Embryo,

2017
Increased risk of developing schizophrenia in animals exposed to cigarette smoke during the gestational period.
    Progress in neuro-psychopharmacology & biological psychiatry, 2017, 04-03, Volume: 75

    Topics: Acetylcholinesterase; Analysis of Variance; Animals; Animals, Newborn; Avoidance Learning; Choline O

2017
Prenatal exposure to cigarette smoke causes persistent changes in the oxidative balance and in DNA structural integrity in rats submitted to the animal model of schizophrenia.
    Journal of psychiatric research, 2011, Volume: 45, Issue:11

    Topics: Animals; DNA; DNA Damage; Female; Ketamine; Lipid Peroxidation; Male; Models, Animal; Pregnancy; Pre

2011
Behavioral effects of prenatal ketamine exposure in rhesus macaques are dependent on MAOA genotype.
    Experimental and clinical psychopharmacology, 2012, Volume: 20, Issue:3

    Topics: Animals; Emotions; Exploratory Behavior; Female; Genotype; Ketamine; Macaca mulatta; Male; Maternal

2012
Potential role of maternal toxicity in the developmental effects of ketamine and cocaine in mice.
    Teratology, 2000, Volume: 62, Issue:4

    Topics: Abnormalities, Drug-Induced; Animals; Body Weight; Bone and Bones; Cocaine; Drug Combinations; Femal

2000
Paradoxical effects of ketamine on the memory of fetuses of different ages.
    Brain research. Developmental brain research, 2001, Mar-29, Volume: 127, Issue:1

    Topics: Age Factors; Animals; Animals, Newborn; Antimanic Agents; Avoidance Learning; Brain; Critical Period

2001