Page last updated: 2024-10-19

nitrates and Disbacteriosis

nitrates has been researched along with Disbacteriosis in 12 studies

Nitrates: Inorganic or organic salts and esters of nitric acid. These compounds contain the NO3- radical.

Research

Studies (12)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's0 (0.00)29.6817
2010's4 (33.33)24.3611
2020's8 (66.67)2.80

Authors

AuthorsStudies
Bahadoran, Z1
Mirmiran, P1
Carlström, M1
Ghasemi, A1
Hao, Y1
Karaoz, U1
Yang, L1
Yachimski, PS1
Tseng, W1
Nossa, CW1
Ye, W1
Tseng, M1
Poles, M1
Francois, F1
Traube, M1
Brown, SM1
Chen, Y2
Torralba, M1
Peek, RM1
Brodie, EL1
Pei, Z1
Lee, JY1
Tsolis, RM2
Bäumler, AJ2
Hu, J1
Tong, Y1
Shen, Z1
Li, Y2
Cheng, C1
Au, R1
Xu, F1
Liu, Y1
Zhu, L1
Shen, H1
Qutob, HMH1
Saad, RA1
Bali, H1
Osailan, A1
Jaber, J1
Alzahrani, E1
Alyami, J1
Elsayed, H1
Alserihi, R1
Shaikhomar, OA1
Divya, KM1
Savitha, DP1
Krishna, GA1
Dhanya, TM1
Mohanan, PV1
Shah, SF1
Jafry, AT1
Hussain, G1
Kazim, AH1
Ali, M1
Rivani, E1
Endraswari, PD1
Widodo, ADW1
Khalil, MR1
Guldberg, R1
Nørgård, BM1
Uldbjerg, N1
Wehberg, S1
Fowobaje, KR1
Mashood, LO1
Ekholuenetale, M1
Ibidoja, OJ1
Romagnoli, A1
D'Agostino, M1
Pavoni, E1
Ardiccioni, C1
Motta, S1
Crippa, P1
Biagetti, G1
Notarstefano, V1
Rexha, J1
Perta, N1
Barocci, S1
Costabile, BK1
Colasurdo, G1
Caucci, S1
Mencarelli, D1
Turchetti, C1
Farina, M1
Pierantoni, L1
La Teana, A1
Al Hadi, R1
Cicconardi, F1
Chinappi, M1
Trucchi, E1
Mancia, F1
Menzo, S1
Morozzo Della Rocca, B1
D'Annessa, I1
Di Marino, D1
Choya, A1
de Rivas, B1
Gutiérrez-Ortiz, JI1
López-Fonseca, R1
Xu, S1
Cheng, B1
Huang, Z1
Liu, T1
Jiang, L1
Guo, W1
Xiong, J1
Amirazodi, M1
Daryanoosh, F1
Mehrabi, A1
Gaeini, A1
Koushkie Jahromi, M1
Salesi, M1
Zarifkar, AH1
Studeny, P1
Netukova, M1
Nemcokova, M1
Klimesova, YM1
Krizova, D1
Kang, H1
Tao, Y1
Zhang, Q1
Sha, D1
Yao, J1
Gao, Y2
Liu, J1
Ji, L1
Shi, P1
Shi, C1
Wu, YL1
Wright, AI1
M El-Metwaly, N1
A Katouah, H1
El-Desouky, MG1
El-Bindary, AA1
El-Bindary, MA1
Kostakis, ID1
Raptis, DA1
Davidson, BR1
Iype, S1
Nasralla, D1
Imber, C1
Sharma, D1
Pissanou, T1
Pollok, JM1
Hughes, AM1
Sanderson, E1
Morris, T1
Ayorech, Z1
Tesli, M1
Ask, H1
Reichborn-Kjennerud, T1
Andreassen, OA1
Magnus, P1
Helgeland, Ø1
Johansson, S1
Njølstad, P1
Davey Smith, G1
Havdahl, A1
Howe, LD1
Davies, NM1
Amrillah, T1
Prasetio, A1
Supandi, AR1
Sidiq, DH1
Putra, FS1
Nugroho, MA1
Salsabilla, Z1
Azmi, R1
Grammatikopoulos, P1
Bouloumis, T1
Steinhauer, S1
Mironov, VS2
Bazhenova, TA2
Manakin, YV2
Yagubskii, EB2
Yakushev, IA1
Gilmutdinov, IF1
Simonov, SV1
Lan, K1
Yang, H1
Zheng, J1
Hu, H1
Zhu, T1
Zou, X1
Hu, B1
Liu, H1
Olokede, O1
Wu, H1
Holtzapple, M1
Gungor, O1
Kose, M1
Ghaemi, R1
Acker, M1
Stosic, A1
Jacobs, R1
Selvaganapathy, PR1
Ludwig, N1
Yerneni, SS1
Azambuja, JH1
Pietrowska, M1
Widłak, P1
Hinck, CS1
Głuszko, A1
Szczepański, MJ1
Kärmer, T1
Kallinger, I1
Schulz, D1
Bauer, RJ1
Spanier, G1
Spoerl, S1
Meier, JK1
Ettl, T1
Razzo, BM1
Reichert, TE1
Hinck, AP1
Whiteside, TL1
Wei, ZL1
Juan, W1
Tong, D1
Juan, LX1
Sa, LY1
Jie, HFM1
Xiao, G1
Xiang, LG1
Jie, HM1
Xu, C1
Yu, DN1
Yao, ZX1
Bigdeli, F1
Gao, XM1
Cheng, X1
Li, JZ1
Zhang, JW1
Wang, W3
Guan, ZJ1
Bu, Y1
Liu, KG1
Morsali, A1
Das, R1
Paul, R1
Parui, A1
Shrotri, A1
Atzori, C1
Lomachenko, KA1
Singh, AK1
Mondal, J1
Peter, SC1
Florimbio, AR1
Coughlin, LN1
Bauermeister, JA1
Young, SD1
Zimmerman, MA1
Walton, MA1
Bonar, EE1
Demir, D1
Balci, AB1
Kahraman, N1
Sunbul, SA1
Gucu, A1
Seker, IB1
Badem, S1
Yuksel, A1
Ozyazicioglu, AF1
Goncu, MT1
Zhang, H1
Zhou, H1
Deng, Z1
Luo, L1
Ong, SP1
Wang, C1
Xin, H1
Whittingham, MS1
Zhou, G1
Maemura, R1
Wakamatsu, M1
Matsumoto, K1
Sakaguchi, H1
Yoshida, N1
Hama, A1
Yoshida, T1
Miwata, S1
Kitazawa, H1
Narita, K1
Kataoka, S1
Ichikawa, D1
Hamada, M1
Taniguchi, R1
Suzuki, K1
Kawashima, N1
Nishikawa, E1
Narita, A1
Okuno, Y1
Nishio, N1
Kato, K1
Kojima, S1
Morita, K1
Muramatsu, H1
Takahashi, Y1
Yirgu, A1
Mekonnen, Y1
Eyado, A1
Staropoli, A1
Vinale, F1
Zac, J1
Zac, S1
Pérez-Padilla, R1
Remigio-Luna, A1
Guzmán-Boulloud, N1
Gochicoa-Rangel, L1
Guzmán-Valderrábano, C1
Thirión-Romero, I1
Statsenko, ME1
Turkina, SV1
Barantsevich, ER1
Karakulova, YV1
Baranova, NS1
Morzhukhina, MV1
Wang, Q1
Gu, Y1
Chen, C1
Qiao, L1
Pan, F1
Song, C1
Canetto, SS1
Entilli, L1
Cerbo, I1
Cipolletta, S1
Wu, Y2
Zhu, P1
Jiang, Y1
Zhang, X1
Wang, Z1
Xie, B1
Song, T1
Zhang, F1
Luo, A1
Li, S1
Xiong, X1
Han, J1
Peng, X1
Li, M1
Huang, L1
Chen, Q1
Fang, W1
Hou, Y1
Zhu, Y1
Ye, J1
Liu, L1
Islam, MR1
Sanderson, P1
Johansen, MP1
Payne, TE1
Naidu, R1
Cao, J1
Yang, J1
Niu, X1
Liu, X1
Zhai, Y1
Qiang, C1
Niu, Y1
Li, Z1
Dong, N1
Wen, B1
Ouyang, Z1
Zhang, Y1
Li, J2
Zhao, M1
Zhao, J1
Morici, P1
Rizzato, C1
Ghelardi, E1
Rossolini, GM1
Lupetti, A1
Gözüküçük, R1
Cakiroglu, B1
He, X1
Li, R1
Zhao, D1
Zhang, L1
Ji, X1
Fan, X1
Chen, J1
Wang, Y1
Luo, Y1
Zheng, D1
Xie, L1
Sun, S1
Cai, Z1
Liu, Q1
Ma, K1
Sun, X1
Drinkwater, JJ1
Davis, TME1
Turner, AW1
Davis, WA1
Suzuki, Y1
Mizuta, Y1
Mikagi, A1
Misawa-Suzuki, T1
Tsuchido, Y1
Sugaya, T1
Hashimoto, T1
Ema, K1
Hayashita, T1
Petrick, HL1
Ogilvie, LM1
Brunetta, HS1
Robinson, A1
Kirsh, AJ1
Barbeau, PA1
Handy, RM1
Coyle-Asbil, B1
Gianetto-Hill, C1
Dennis, KMJH1
van Loon, LJC1
Chabowski, A1
Schertzer, JD1
Allen-Vercoe, E1
Simpson, JA1
Holloway, GP1
Mazurel, D1
Carda-Diéguez, M1
Langenburg, T1
Žiemytė, M1
Johnston, W1
Martínez, CP1
Albalat, F1
Llena, C1
Al-Hebshi, N1
Culshaw, S1
Mira, A1
Rosier, BT1
Ma, L1
Hu, L1
Jin, L1
Wang, J2
Li, X1
Chang, S1
Zhang, C1
Wang, S1
Kobayashi, J1
Byndloss, MX1
Olsan, EE1
Rivera-Chávez, F1
Tiffany, CR1
Cevallos, SA1
Lokken, KL1
Torres, TP1
Byndloss, AJ1
Faber, F1
Litvak, Y1
Lopez, CA1
Xu, G1
Napoli, E1
Giulivi, C1
Revzin, A1
Lebrilla, CB1
Rocha, BS1
Correia, MG1
Pereira, A1
Henriques, I1
Da Silva, GJ1
Laranjinha, J1
Briskey, D1
Tucker, PS1
Johnson, DW1
Coombes, JS1

Clinical Trials (1)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
'Oral Microbiome -Dietary Nitrate' Interactions and Cognitive Health in Older Age[NCT05518214]60 participants (Anticipated)Interventional2021-09-29Recruiting
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Reviews

5 reviews available for nitrates and Disbacteriosis

ArticleYear
Inorganic nitrate: A potential prebiotic for oral microbiota dysbiosis associated with type 2 diabetes.
    Nitric oxide : biology and chemistry, 2021, 11-01, Volume: 116

    Topics: Animals; Bacteria; Bacterial Proteins; Diabetes Mellitus, Type 2; Dysbiosis; Humans; Microbiota; Mou

2021
The microbiome and gut homeostasis.
    Science (New York, N.Y.), 2022, Volume: 377, Issue:6601

    Topics: Bacteria; Colon; Dysbiosis; Gastrointestinal Microbiome; Homeostasis; Host Microbial Interactions; H

2022
Impact of dexamethasone and tocilizumab on hematological parameters in COVID-19 patients with chronic disease.
    Medicina clinica (English ed.), 2022, Dec-23, Volume: 159, Issue:12

    Topics: Acetaminophen; Acetylcarnitine; Acetylcholinesterase; Acids; Acinetobacter baumannii; Acinetobacter

2022
Effect of diet and gut environment on the gastrointestinal formation of N-nitroso compounds: A review.
    Nitric oxide : biology and chemistry, 2018, 02-28, Volume: 73

    Topics: Colon; Colorectal Neoplasms; Diet; Dysbiosis; Esophagus; Humans; Inflammatory Bowel Diseases; Nitrat

2018
Microbiota and the nitrogen cycle: Implications in the development and progression of CVD and CKD.
    Nitric oxide : biology and chemistry, 2016, 07-01, Volume: 57

    Topics: Ammonia; Animals; Cardiovascular Diseases; Disease Progression; Dysbiosis; Humans; Microbiota; Nitra

2016

Trials

1 trial available for nitrates and Disbacteriosis

ArticleYear
Impact of dexamethasone and tocilizumab on hematological parameters in COVID-19 patients with chronic disease.
    Medicina clinica (English ed.), 2022, Dec-23, Volume: 159, Issue:12

    Topics: Acetaminophen; Acetylcarnitine; Acetylcholinesterase; Acids; Acinetobacter baumannii; Acinetobacter

2022

Other Studies

7 other studies available for nitrates and Disbacteriosis

ArticleYear
Progressive dysbiosis of human orodigestive microbiota along the sequence of gastroesophageal reflux, Barrett's esophagus and esophageal adenocarcinoma.
    International journal of cancer, 2022, 11-15, Volume: 151, Issue:10

    Topics: Acetaldehyde; Adenocarcinoma; Anti-Bacterial Agents; Barrett Esophagus; Case-Control Studies; Dysbio

2022
Gegen Qinlian decoction ameliorates murine colitis by inhibiting the expansion of Enterobacteriaceae through activating PPAR-γ signaling.
    Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie, 2022, Volume: 154

    Topics: Animals; Colitis; Colitis, Ulcerative; Colon; Dextran Sulfate; Disease Models, Animal; Drugs, Chines

2022
Dietary Nitrate and Corresponding Gut Microbiota Prevent Cardiac Dysfunction in Obese Mice.
    Diabetes, 2023, 07-01, Volume: 72, Issue:7

    Topics: Animals; Diet, High-Fat; Dysbiosis; Fibrosis; Gastrointestinal Microbiome; Glucose Intolerance; Hear

2023
Nitrate and a nitrate-reducing Rothia aeria strain as potential prebiotic or synbiotic treatments for periodontitis.
    NPJ biofilms and microbiomes, 2023, Jun-17, Volume: 9, Issue:1

    Topics: Dysbiosis; Humans; Nitrates; Periodontitis; Prebiotics; Synbiotics

2023
Rebalancing glucolipid metabolism and gut microbiome dysbiosis by nitrate-dependent alleviation of high-fat diet-induced obesity.
    BMJ open diabetes research & care, 2020, Volume: 8, Issue:1

    Topics: Animals; Diet, High-Fat; Dysbiosis; Gastrointestinal Microbiome; Mice; Mice, Inbred C57BL; Nitrates;

2020
Microbiota-activated PPAR-γ signaling inhibits dysbiotic Enterobacteriaceae expansion.
    Science (New York, N.Y.), 2017, 08-11, Volume: 357, Issue:6351

    Topics: Angiopoietin-Like Protein 4; Anilides; Animals; Anti-Bacterial Agents; Butyrates; Caco-2 Cells; Clos

2017
Inorganic nitrate prevents the loss of tight junction proteins and modulates inflammatory events induced by broad-spectrum antibiotics: A role for intestinal microbiota?
    Nitric oxide : biology and chemistry, 2019, 07-01, Volume: 88

    Topics: Animals; Anti-Bacterial Agents; Base Sequence; Cecum; Claudin-5; Dysbiosis; Feces; Gastric Mucosa; G

2019