Page last updated: 2024-10-19

nitrites and Diabetes Mellitus, Type 1

nitrites has been researched along with Diabetes Mellitus, Type 1 in 42 studies

Nitrites: Salts of nitrous acid or compounds containing the group NO2-. The inorganic nitrites of the type MNO2 (where M=metal) are all insoluble, except the alkali nitrites. The organic nitrites may be isomeric, but not identical with the corresponding nitro compounds. (Grant & Hackh's Chemical Dictionary, 5th ed)

Diabetes Mellitus, Type 1: A subtype of DIABETES MELLITUS that is characterized by INSULIN deficiency. It is manifested by the sudden onset of severe HYPERGLYCEMIA, rapid progression to DIABETIC KETOACIDOSIS, and DEATH unless treated with insulin. The disease may occur at any age, but is most common in childhood or adolescence.

Research Excerpts

ExcerptRelevanceReference
"IDDM is characterized by progressive beta-cell destruction which leads to complete insulin deficiency; at the time of diagnosis 80-90% of beta cells have been destroyed."2.39Dietary factors in the aetiology of diabetes. ( Aro, A; Virtanen, SM, 1994)
"According to regression, type 1 diabetes leads to a 2-fold increase in DNA damage."1.62DNA damage in leukocytes and serum nitrite concentration are negatively associated in type 1 diabetes. ( Borisovs, V; Celma, L; Dekante, A; Pahirko, L; Rostoka, E; Salna, I; Sjakste, N; Sokolovska, J; Valeinis, J, 2021)
"We studied 42 children with type 1 diabetes and 41 matched healthy control subjects, both divided into prepubertal or pubertal children."1.33Serum and urinary nitrites and nitrates and Doppler sonography in children with diabetes. ( Chiarelli, F; Mohn, A; Pelliccia, P; Primavera, A; Savino, A; Schiavone, C; Tumini, S, 2006)
"Uric acid was suppressed by 20% in the diabetic patients (P < 0."1.31Nitrosative stress, uric Acid, and peripheral nerve function in early type 1 diabetes. ( Bryner, KD; Christie, I; Ganser, G; Hobbs, GR; Hoeldtke, RD; McNeill, DR; Riggs, JE; Van Dyke, K; Warehime, SS, 2002)
"Reduced bioavailability of endothelium-derived nitric oxide is implicated in diabetic macrovascular and microvascular disease."1.31Abnormal metabolic fate of nitric oxide in Type I diabetes mellitus. ( Frenneaux, MP; Goodfellow, J; James, PE; Jones, CJ; Milsom, AB; Peters, JR, 2002)
"Nicotine treatment reduced the hyperglycemia and incidence of disease in both the MLDS and NOD mouse models of diabetes."1.31Nicotine reduces the incidence of type I diabetes in mice. ( Mabley, JG; Pacher, P; Salzman, AL; Southan, GJ; Szabó, C, 2002)
"Moreover, in IDDM patients reduced nitrate/nitrite excretion was strongly associated with elevated plasmatic beta-thromboglobulin levels."1.30The association of reduced endothelium derived relaxing factor-NO production with endothelial damage and increased in vivo platelet activation in patients with diabetes mellitus. ( Huszka, M; Kaplar, M; Laszlo, P; Palatka, K; Rejto, L; Tornai, I; Udvardy, M, 1997)
"Insulin dependent diabetes mellitus (IDDM) is an autoimmune disease characterised by extreme insulin deficiency due to an overall decrease in the mass of properly functioning beta-cells."1.30Insulitis and mechanisms of disease resistance: studies in an animal model of insulin dependent diabetes mellitus. ( Barley, J; Bone, AJ; Cunningham, JM; Gwilliam, DJ; Hitchcock, PR, 1999)
"Almost similar nitrite plasma levels in IDDM (17 +/- 0."1.30Nitrite plasma levels in type 1 and 2 diabetics with and without complications. ( Ferlito, S; Gallina, M, 1998)

Research

Studies (42)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's11 (26.19)18.2507
2000's24 (57.14)29.6817
2010's5 (11.90)24.3611
2020's2 (4.76)2.80

Authors

AuthorsStudies
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, L1
Zhao, Y3
Wang, J6
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, W2
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
Lin, L3
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, C2
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, H1
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, JA3
Tang, LF1
Bi, YL1
Fan, Y2
Sun, YB1
Wang, AL1
Xiao, BH1
Wang, LF1
Qiu, SW1
Guo, SW1
Wáng, YXJ1
Sun, J2
Chu, S1
Pan, Q1
Li, D2
Zheng, S2
Ma, L1
Wang, L3
Hu, T1
Wang, F2
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, Y4
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
Li, Y4
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
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Tang, J3
Chen, Z2
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Xiong, D1
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Fang, J1
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Niu, PP1
Song, B1
Xu, YM1
Zhang, Z2
Qiu, N1
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Guo, W1
Liu, M2
Liu, T2
Chen, D5
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Sun, W1
Yin, F1
van Hest, JCM1
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Baek, SH1
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
Loitzenbauer, M1
Talla, D1
Wildner, M1
Miletich, R1
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Kang, D1
Feng, D2
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De Clercq, E1
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Zhan, P1
Guo, Y1
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Kawazoe, Y1
Jena, P1
Sun, Z1
Li, Z2
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Xu, X2
Ma, G1
Huo, X1
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Ratner, JR1
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Schwartzer, JJ1
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Tamir, Z1
Yao, W1
Wang, P1
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Huang, J2
Sun, HB1
Xing, WQ1
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Zheng, Y1
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Wang, ZF1
Liu, SL1
Ba, YF1
Zhang, RX1
Liu, BX1
Fan, CC1
Chen, PN1
Liang, GH1
Yu, YK1
Wang, HR1
Li, HM1
Li, ZX1
Lalani, SS1
Anasir, MI1
Poh, CL1
Khan, IT1
Nadeem, M1
Imran, M1
Khalique, A1
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Cerbo, RM1
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Monti, MC1
Vacca, M1
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Cena, H1
Kong, D1
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Zhou, Y3
Xue, H1
Zhang, W1
Ruan, Z1
Li, S2
Noer, PR1
Kjaer-Sorensen, K1
Juhl, AK1
Goldstein, A1
Ke, C1
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Kong, F1
Lin, S1
Wang, Z2
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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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Jacob, SI1
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Maron, L1
Ménard, G1
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Laveillé, A1
Capet, M1
Duvauchelle, T1
Schwartz, JC1
Robert, P1
Le Foll, B1
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Luo, M1
Wu, J1
Cai, S1
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Misiak, M1
Jackowski, K1
Yuan, Q1
Sherrell, PC1
Chen, J2
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Mahalapbutr, P1
Hengphasatporn, K1
Pattaranggoon, NC1
Simanon, N1
Shigeta, Y1
Hannongbua, S1
Rungrotmongkol, T1
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Kher, R1
Bian, K1
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Ye, S1
Ustriyana, P1
Wei, B1
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Wesdemiotis, C1
Sahai, N1
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Tyagi, A1
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Malfertheiner, MV1
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Gerety, GF1
Spaepen, E1
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Lee, HY1
Yu, HG1
Leslie, I1
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Larkin, J1
Pickering, L1
Lima, HK1
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Hampel, D1
Wagner-Gillespie, M1
Fogleman, AD1
Ferraz, SL1
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Suzuki, S1
Shimbo, A1
Utsumi, F1
Yoshikawa, N1
Kikkawa, F1
Javvaji, PK1
Dhali, A1
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Selvaraju, S1
Mech, A1
Sejian, V1
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Vaidya, SS1
Mao, C1
Akhatayeva, Z1
Cheng, H1
Zhang, G1
Jiang, F1
Meng, X1
Elnour, IE1
Lan, X1
Song, E1
Rohde, S1
Antonides, CFJ1
Muslem, R1
de Woestijne, PCV1
der Meulen, MHV1
Kraemer, US1
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Pourmand, A1
Ghassemi, M1
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Hood, C1
Sikka, N1
Duan, H1
Chen, WP1
Fan, M1
Wang, WP1
Yu, L1
Tan, SJ1
Xin, S1
Wan, LJ1
Guo, YG1
Tanda, S1
Gingl, K1
Ličbinský, R1
Hegrová, J1
Goessler, W1
Li, ZL1
Zhou, YL1
Yan, W1
Luo, L1
Su, ZZ1
Fan, MZ1
Wang, SR1
Zhao, WG1
Xu, D1
Hassan, HM1
Jiang, Z1
Bachmann, KF1
Haenggi, M1
Jakob, SM1
Takala, J1
Gattinoni, L1
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Bentley, RF1
Vecchiarelli, E1
Banks, L1
Gonçalves, PEO1
Thomas, SG1
Goodman, JM1
Mather, K1
Boachie, R1
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Panahi, S1
Anderson, GH1
Luhovyy, BL1
Nafie, MS1
Arafa, K1
Sedky, NK1
Alakhdar, AA1
Arafa, RK1
Fan, S1
Hu, H1
Liang, J1
Hu, BC1
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Liu, YY1
Chu, Q1
Wu, MC1
Lu, X1
Wang, D1
Hu, M1
Shen, H1
Yao, M1
Dahlgren, RA1
Vysloužil, J1
Kulich, P1
Zeman, T1
Vaculovič, T1
Tvrdoňová, M1
Mikuška, P1
Večeřa, Z1
Stráská, J1
Moravec, P1
Balcar, VJ1
Šerý, O1
Qiao, L1
Xiong, X1
Peng, X1
Zheng, J1
Duan, J1
Xiao, W1
Zhou, HY1
Sui, ZY1
Zhao, FL1
Sun, YN1
Wang, HY1
Han, BH1
Jintao, X1
Shasha, Y1
Jincai, W1
Chunyan, L1
Mengya, Y1
Yongli, S1
Rasoanirina, BNV1
Lassoued, MA1
Miladi, K1
Razafindrakoto, Z1
Chaâbane-Banaoues, R1
Ramanitrahasimbola, D1
Cornet, M1
Sfar, S1
Liang, C1
Xing, Q1
Yi, JL1
Zhang, YQ1
Li, CY1
Tang, SJ1
Gao, C1
Sun, X1
Peng, M1
Sun, XF1
Zhang, T1
Shi, JH1
Liao, CX1
Gao, WJ1
Sun, LL1
Gao, Y1
Cao, WH1
Lyu, J1
Yu, CQ1
Wang, SF1
Pang, ZC1
Cong, LM1
Dong, Z1
Wu, F1
Wu, XP1
Jiang, GH1
Wang, XJ1
Wang, BY1
Li, LM1
Pan, L1
Wan, SP1
Yi, HWL1
He, HJ1
Yong, ZP1
Shan, GL1
Weng, TT1
Yan, SQ1
Gao, GP1
Wei, C1
Tao, FB1
Shao, ZH1
Yao, T1
Dong, S1
Shi, S1
Feng, YL1
Zhang, YW1
Wang, SP1
Shi, AX1
Operario, D1
Zhang, ZH1
Zhu, XF1
Zaller, N1
Gao, P1
Sun, YH1
Zhang, HB1
Mattila, M1
Niinistö, S1
Takkinen, HM1
Tapanainen, H1
Reinivuo, H1
Åkerlund, M1
Suomi, J1
Ahonen, S1
Ilonen, J1
Toppari, J1
Knip, M1
Veijola, R1
Virtanen, SM2
Rostoka, E1
Salna, I1
Dekante, A1
Pahirko, L1
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Celma, L1
Valeinis, J1
Sjakste, N1
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Tripathi, P1
Dixit, K1
Mir, AR1
Habib, S1
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Ali, A1
Yin, D1
Hou, Z1
Pitocco, D1
Zaccardi, F1
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Romitelli, F1
Martini, F1
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Speranza, D1
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Zuppi, C1
Ghirlanda, G1
Samuelsson, U1
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Hyöty, H2
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Benson, VS1
Vanleeuwen, JA1
Taylor, J1
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Van Til, L1
Hoeldtke, RD2
Bryner, KD2
McNeill, DR2
Hobbs, GR1
Riggs, JE1
Warehime, SS2
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Ganser, G1
Van Dyke, K2
Milsom, AB1
Jones, CJ1
Goodfellow, J1
Frenneaux, MP1
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Hobbs, G1
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Clinical Trials (1)

Trial Overview

TrialPhaseEnrollmentStudy TypeStart DateStatus
Trial to Reduce IDDM in the Genetically at Risk (TRIGR): the Pilot Study[NCT00570102]Phase 2230 participants (Actual)Interventional1995-02-28Completed
[information is prepared from clinicaltrials.gov, extracted Sep-2024]

Reviews

5 reviews available for nitrites and Diabetes Mellitus, Type 1

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
Environmental causes: dietary causes.
    Endocrinology and metabolism clinics of North America, 2004, Volume: 33, Issue:1

    Topics: Celiac Disease; Diabetes Mellitus, Type 1; Diet; Glutens; Humans; Nitrates; Nitrites; Nitroso Compou

2004
[Environmental factors in the development of type 1 diabetes -- a new insight].
    Przeglad lekarski, 2007, Volume: 64, Issue:3

    Topics: Autoimmune Diseases; Bacterial Infections; Causality; Comorbidity; Diabetes Mellitus, Type 1; Diet;

2007
Dietary factors in the aetiology of diabetes.
    Annals of medicine, 1994, Volume: 26, Issue:6

    Topics: Animals; Case-Control Studies; Child; Cohort Studies; Diabetes Mellitus, Type 1; Diabetes Mellitus,

1994
Environmental factors in the aetiology of childhood diabetes.
    Diabetes, nutrition & metabolism, 1999, Volume: 12, Issue:2

    Topics: Animals; Autoimmunity; Child; Diabetes Mellitus, Type 1; Diet; Enterovirus Infections; Genetic Predi

1999

Trials

1 trial available for nitrites and Diabetes Mellitus, Type 1

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

37 other studies available for nitrites and Diabetes Mellitus, Type 1

ArticleYear
Maternal Nitrate and Nitrite Intakes during Pregnancy and Risk of Islet Autoimmunity and Type 1 Diabetes: The DIPP Cohort Study.
    The Journal of nutrition, 2020, 11-19, Volume: 150, Issue:11

    Topics: Adolescent; Autoantibodies; Autoimmunity; Child; Child, Preschool; Cohort Studies; Diabetes Mellitus

2020
DNA damage in leukocytes and serum nitrite concentration are negatively associated in type 1 diabetes.
    Mutagenesis, 2021, 07-07, Volume: 36, Issue:3

    Topics: Adult; Comet Assay; Diabetes Complications; Diabetes Mellitus, Type 1; DNA Damage; Female; Humans; L

2021
Peroxynitrite modified DNA presents better epitopes for anti-DNA autoantibodies in diabetes type 1 patients.
    Cellular immunology, 2014, Volume: 290, Issue:1

    Topics: Antibodies, Antinuclear; Diabetes Mellitus, Type 1; DNA; DNA Adducts; DNA Breaks; Epitopes; Guanine;

2014
In situ eNOS/NO up-regulation-a simple and effective therapeutic strategy for diabetic skin ulcer.
    Scientific reports, 2016, 07-25, Volume: 6

    Topics: Animals; Blood Glucose; Cell Survival; Diabetes Complications; Diabetes Mellitus, Type 1; Disease Mo

2016
Role of asymmetric-dimethyl-L-arginine (ADMA) and nitrite/nitrate (NOx) in the pathogenesis of oxidative stress in female subjects with uncomplicated type 1 diabetes mellitus.
    Diabetes research and clinical practice, 2009, Volume: 86, Issue:3

    Topics: Adult; Arginine; Blood Glucose; Blood Specimen Collection; Cholesterol; Cholesterol, HDL; Cholestero

2009
Low zinc in drinking water is associated with the risk of type 1 diabetes in children.
    Pediatric diabetes, 2011, Volume: 12, Issue:3 Pt 1

    Topics: Adolescent; Child; Diabetes Mellitus, Type 1; Enterovirus; Environmental Exposure; Humans; Hydrogen-

2011
Type 1 diabetes mellitus and components in drinking water and diet: a population-based, case-control study in Prince Edward Island, Canada.
    Journal of the American College of Nutrition, 2010, Volume: 29, Issue:6

    Topics: Case-Control Studies; Child; Data Collection; Diabetes Mellitus, Type 1; Diet; Drinking; Energy Inta

2010
Nitrosative stress, uric Acid, and peripheral nerve function in early type 1 diabetes.
    Diabetes, 2002, Volume: 51, Issue:9

    Topics: Adolescent; Adult; Autonomic Nervous System; Child; Diabetes Mellitus, Type 1; Dinoprost; F2-Isopros

2002
Abnormal metabolic fate of nitric oxide in Type I diabetes mellitus.
    Diabetologia, 2002, Volume: 45, Issue:11

    Topics: Adult; Age of Onset; Biological Availability; Blood Glucose; Blood Specimen Collection; Cholesterol;

2002
Oxidative stress and insulin requirements in patients with recent-onset type 1 diabetes.
    The Journal of clinical endocrinology and metabolism, 2003, Volume: 88, Issue:4

    Topics: Adolescent; Adult; Child; Diabetes Mellitus, Type 1; Dinoprost; F2-Isoprostanes; Female; Glycated He

2003
DNA damage and antioxidant defense in peripheral leukocytes of patients with Type I diabetes mellitus.
    Mutation research, 2003, Jun-19, Volume: 527, Issue:1-2

    Topics: Adult; Antioxidants; Blood Glucose; Comet Assay; Diabetes Mellitus, Type 1; DNA Damage; DNA-Formamid

2003
IL-1beta, IFN-gamma and TNF-alpha increase vulnerability of pancreatic beta cells to autoimmune destruction.
    Journal of autoimmunity, 2003, Volume: 20, Issue:4

    Topics: Animals; Animals, Congenic; Autoimmunity; Diabetes Mellitus, Type 1; DNA Damage; fas Receptor; In Vi

2003
Shift in metabolic substrate uptake by the heart during development of alloxan-induced diabetes.
    American journal of physiology. Heart and circulatory physiology, 2003, Volume: 285, Issue:3

    Topics: 3-Hydroxybutyric Acid; Alloxan; Animals; Blood Glucose; Blood Pressure; Body Weight; Carbon Dioxide;

2003
The role of adrenomedullin and receptors in glomerular hyperfiltration in streptozotocin-induced diabetic rats.
    Kidney international, 2004, Volume: 65, Issue:2

    Topics: Adrenomedullin; Animals; Aorta; Blood Glucose; Blotting, Northern; Cells, Cultured; Diabetes Mellitu

2004
Antioxidant enzyme activity and mRNA expression in the islets of Langerhans from the BB/S rat model of type 1 diabetes and an insulin-producing cell line.
    Journal of molecular medicine (Berlin, Germany), 2004, Volume: 82, Issue:5

    Topics: Animals; Antioxidants; Catalase; Cell Line; Cytokines; Diabetes Mellitus, Type 1; Disease Models, An

2004
Influence of peroxisome proliferator-activated receptor gamma activation by its endogenous ligand 15-deoxy Delta12,14 prostaglandin J2 on nitric oxide production in term placental tissues from diabetic women.
    Molecular human reproduction, 2004, Volume: 10, Issue:9

    Topics: Diabetes Mellitus, Type 1; Diabetes, Gestational; Female; Humans; Immunologic Factors; Nitrates; Nit

2004
Successful abrogation by thymoquinone against induction of diabetes mellitus with streptozotocin via nitric oxide inhibitory mechanism.
    International immunopharmacology, 2005, Volume: 5, Issue:1

    Topics: Animals; Benzoquinones; Blood Glucose; Diabetes Mellitus, Experimental; Diabetes Mellitus, Type 1; I

2005
Macrophage-derived cytokine and nitric oxide profiles in type I and type II diabetes mellitus: effect of thymoquinone.
    Acta diabetologica, 2005, Volume: 42, Issue:1

    Topics: Animals; Benzoquinones; Blood Glucose; Cytokines; Diabetes Mellitus, Type 1; Diabetes Mellitus, Type

2005
[Effect of nitric oxide upon apoptosis activation in immunocompetent blood cells in diabetes mellitus, type 1].
    Fiziolohichnyi zhurnal (Kiev, Ukraine : 1994), 2005, Volume: 51, Issue:4

    Topics: Adult; Apoptosis; Diabetes Mellitus, Type 1; Female; Humans; Leukocytes, Mononuclear; Male; Neutroph

2005
Differences in the nitric oxide metabolism in streptozotocin-treated rats and children suffering from Type 1 diabetes.
    Life sciences, 2006, Feb-16, Volume: 78, Issue:12

    Topics: Animals; Child; Diabetes Mellitus, Experimental; Diabetes Mellitus, Type 1; Humans; Leukocytes; Nitr

2006
Serum and urinary nitrites and nitrates and Doppler sonography in children with diabetes.
    Diabetes care, 2006, Volume: 29, Issue:12

    Topics: Blood Glucose; Child; Diabetes Mellitus, Type 1; Glomerular Filtration Rate; Glycated Hemoglobin; Hu

2006
Exposure to environmental factors in drinking water: risk of islet autoimmunity and type 1 diabetes--the BABYDIAB study.
    Hormone and metabolic research = Hormon- und Stoffwechselforschung = Hormones et metabolisme, 2008, Volume: 40, Issue:8

    Topics: Aluminum; Autoantibodies; Autoimmune Diseases; Child; Diabetes Mellitus, Type 1; Environmental Expos

2008
Nitric oxide mediates cytokine-induced inhibition of insulin secretion by human islets of Langerhans.
    Proceedings of the National Academy of Sciences of the United States of America, 1993, Mar-01, Volume: 90, Issue:5

    Topics: Arginine; Cyclic GMP; Diabetes Mellitus, Type 1; Electron Spin Resonance Spectroscopy; Humans; In Vi

1993
The association of reduced endothelium derived relaxing factor-NO production with endothelial damage and increased in vivo platelet activation in patients with diabetes mellitus.
    Thrombosis research, 1997, Apr-15, Volume: 86, Issue:2

    Topics: Adult; Blood Glucose; Diabetes Complications; Diabetes Mellitus; Diabetes Mellitus, Type 1; Diabetes

1997
Transgenic mice overexpressing type 2 nitric-oxide synthase in pancreatic beta cells develop insulin-dependent diabetes without insulitis.
    The Journal of biological chemistry, 1998, Jan-30, Volume: 273, Issue:5

    Topics: Animals; Diabetes Mellitus, Experimental; Diabetes Mellitus, Type 1; DNA Damage; Guanidines; Insulin

1998
Potential role of resident islet macrophage activation in the initiation of autoimmune diabetes.
    Journal of immunology (Baltimore, Md. : 1950), 1998, Mar-15, Volume: 160, Issue:6

    Topics: Animals; Diabetes Mellitus, Type 1; Insulin; Insulin Secretion; Interleukin-1; Islets of Langerhans;

1998
Activation of peritoneal macrophages during the prediabetic phase in low-dose streptozotocin-treated mice.
    Advances in experimental medicine and biology, 1997, Volume: 426

    Topics: Animals; Cells, Cultured; Diabetes Mellitus, Experimental; Diabetes Mellitus, Type 1; Kinetics; Lact

1997
Macrophages and antioxidant status in the NOD mouse pancreas.
    Journal of cellular biochemistry, 1998, Dec-15, Volume: 71, Issue:4

    Topics: Animals; Antioxidants; Blood Glucose; Catalase; Diabetes Mellitus, Type 1; Female; Free Radical Scav

1998
Impairment of nitric oxide-mediated relaxations in anaesthetized autoperfused streptozotocin-induced diabetic rats.
    Naunyn-Schmiedeberg's archives of pharmacology, 1998, Volume: 358, Issue:5

    Topics: Acetylcholine; Anesthesia; Animals; Arginine; Blood Glucose; Blood Pressure; Body Weight; Diabetes M

1998
Insulitis and mechanisms of disease resistance: studies in an animal model of insulin dependent diabetes mellitus.
    Journal of molecular medicine (Berlin, Germany), 1999, Volume: 77, Issue:1

    Topics: Age of Onset; Animals; Blood Glucose; Cells, Cultured; Diabetes Mellitus, Type 1; Disease Models, An

1999
Nitrite plasma levels in type 1 and 2 diabetics with and without complications.
    Panminerva medica, 1998, Volume: 40, Issue:4

    Topics: Adult; Diabetes Mellitus, Type 1; Diabetes Mellitus, Type 2; Female; Humans; Middle Aged; Nitrites

1998
Inhibition of the cytokine-mediated inducible nitric oxide synthase expression in rat insulinoma cells by phenyl N-tert-butylnitrone.
    Nitric oxide : biology and chemistry, 2000, Volume: 4, Issue:2

    Topics: Acetylcysteine; Animals; Blotting, Northern; Cell Survival; Cyclic N-Oxides; Cytokines; Diabetes Mel

2000
Activation of extracellular signal-regulated kinase (ERK)1/2 contributes to cytokine-induced apoptosis in purified rat pancreatic beta-cells.
    European cytokine network, 2000, Volume: 11, Issue:2

    Topics: Animals; Apoptosis; Base Sequence; Cells, Cultured; Diabetes Mellitus, Type 1; DNA Primers; Enzyme A

2000
The phosphodiesterase inhibitors pentoxifylline and rolipram suppress macrophage activation and nitric oxide production in vitro and in vivo.
    Clinical immunology (Orlando, Fla.), 2001, Volume: 98, Issue:2

    Topics: 8-Bromo Cyclic Adenosine Monophosphate; Animals; Autoimmune Diseases; Bucladesine; Cells, Cultured;

2001
Prodigiosin blocks T cell activation by inhibiting interleukin-2Ralpha expression and delays progression of autoimmune diabetes and collagen-induced arthritis.
    The Journal of pharmacology and experimental therapeutics, 2001, Volume: 299, Issue:2

    Topics: Animals; Anti-Bacterial Agents; Antirheumatic Agents; Arthritis; Cell Division; Collagen; Cyclospori

2001
Nicotine reduces the incidence of type I diabetes in mice.
    The Journal of pharmacology and experimental therapeutics, 2002, Volume: 300, Issue:3

    Topics: Age of Onset; Animals; Blood Glucose; Cytokines; Diabetes Mellitus, Experimental; Diabetes Mellitus,

2002
Evidence for a sustained increase in clonal beta-cell basal intracellular Ca2+ levels after incubation in the presence of newly diagnosed Type-1 diabetic patient sera. Possible role in serum-induced inhibition of insulin secretion.
    The Journal of endocrinology, 2002, Volume: 173, Issue:1

    Topics: Adenosine Triphosphate; Animals; Apoptosis; Calcium; Cell Line; Complement C1q; Complement C3; Compl

2002