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Palladium based nanoparticles for the treatment of advanced melanoma.
Elsey J, Bubley JA, Zhu L, Rao S, Sasaki M, Pollack BP, Yang L, Arbiser JL (2019) Palladium based nanoparticles for the treatment of advanced melanoma. Sci Rep 9:3255. doi: 10.1038/s41598-019-40258-6 PMID: 30824801
Usage: immunohistochemistry (1:300)
Related Products: Fibroblast Growth Factor Rabbit Polyclonal, mammalian (Cat. #AB-07)
Combining naproxen and a dual amylin and calcitonin receptor agonist improves pain and structural outcomes in the collagen-induced arthritis rat model.
Katri A, Dąbrowska A, Löfvall H, Ding M, Karsdal MA, Andreassen KV, Thudium CS, Henriksen K (2019) Combining naproxen and a dual amylin and calcitonin receptor agonist improves pain and structural outcomes in the collagen-induced arthritis rat model. Arthritis Res Ther 21(1):68. doi: 10.1186/s13075-019-1819-9 PMID: 30795801
Objective: To investigate if combining a standard of care NSAID (naproxen) with a Key Bioscience peptides (KBP) resulted in improvement in pain scores, as well as disease activity and structural damage in a rat model of rheumatoid arthritis (RA).
Summary: Combination therapy had improved efficacy over naproxen monotherapy; combination therapy resulted in improved health scores, and reduced mechanical and cold allodynia assessment. Furthermore, protection of articular cartilage structure and preservation of bone structure and bone volume were also observed.
Usage: histology (1:4000)
Related Products: NGFr (mu p75) Rabbit Polyclonal, affinity-purified (Cat. #AB-N01AP)
Degeneration of ipRGCs in mouse models of huntington’s disease disrupts non-image-forming behaviors before motor impairment.
Lin M-S, Liao P-Y, Chen H-M, Chang C-P, Chen S-K, Chern Y (2019) Degeneration of ipRGCs in mouse models of huntington’s disease disrupts non-image-forming behaviors before motor impairment. J Neurosci 39(8):1505. doi: 10.1523/JNEUROSCI.0571-18.2018 PMID: 30587542
Summary: Results show that M1 ipRGCs were susceptible to the toxicity caused by mutant Huntingtin. The resultant impairment of M1 ipRGCs contributed to the early degeneration of the ipRGC–SCN pathway and disrupted circadian regulation during HD progression.
Usage: Immunostaining (1:3000)
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Sacituzumab for the treatment of triple-negative breast cancer: the poster child of future therapy?
Zangardi ML, Spring LM, Nagayama A, Bardia A (2019) Sacituzumab for the treatment of triple-negative breast cancer: the poster child of future therapy?. Expert Opin Investig Drugs 28(2):107-112. doi: 10.1080/13543784.2019.1555239 PMID: 30507322
Summary: This publication explores the potential of sacituzumab as a treatment for triple-negative breast cancer, highlighting its promising role as a leading candidate for future therapeutic approaches. The study suggests that sacituzumab may represent a breakthrough in the management of this aggressive breast cancer subtype, raising hopes for improved outcomes in patients.
Discovery and development of N-[4-(1-Cyclobutylpiperidin-4-yloxy)phenyl]-2-(morpholin-4-yl)acetamide Dihydrochloride (SUVN-G3031): A novel, potent, selective, and orally active histamine H3 receptor inverse agonist with robust wake-promoting activity.
Nirogi R, Shinde A, Mohammed AR, Badange RK, Reballi V, Bandyala TR, Saraf SK, Bojja K, Manchineella S, Achanta PK, Kandukuri KK, Subramanian R, Benade V, Palacharla RC, Jayarajan P, Pandey S, Jasti V (2019) Discovery and development of N-[4-(1-Cyclobutylpiperidin-4-yloxy)phenyl]-2-(morpholin-4-yl)acetamide Dihydrochloride (SUVN-G3031): A novel, potent, selective, and orally active histamine H3 receptor inverse agonist with robust wake-promoting activity. J Med Chem 62(3):1203-1217. doi: 10.1021/acs.jmedchem.8b01280
Objective: To discover and develop a therapeutic for human sleep disorders.
Summary: Histamine H3 Receptor Inverse Agonist demonstrated high receptor occupancy and marked wake promoting effects with decreased REM sleep in Orexin-B-SAP lesioned rats. This study supports its potential therapeutic utility in treating human sleep disorders.
Usage: Injections (490 ng/0.8 μl) were made bilaterally to the lateral hypothalamus.
Related Products: Orexin-B-SAP (Cat. #IT-20)
Selective hematopoietic stem cell ablation using CD117-antibody-drug-conjugates enables safe and effective transplantation with immunity preservation.
Czechowicz A, Palchaudhuri R, Scheck A, Hu Y, Hoggatt J, Saez B, Pang WW, Mansour MK, Tate TA, Chan YY, Walck E, Wernig G, Shizuru JA, Winau F, Scadden DT, Rossi DJ (2019) Selective hematopoietic stem cell ablation using CD117-antibody-drug-conjugates enables safe and effective transplantation with immunity preservation. Nat Commun 10:617. doi: 10.1038/s41467-018-08201-x
Objective: To investigate a safe and effective method for hematopoietic stem cell transplantation.
Summary: CD117-ADC selectively targets hematopoietic stem cells yet does not cause clinically significant side-effects.
Usage: The CD117-ADC was prepared by combining biotinylated anti-CD117 (clone 2B8) with Streptavidin–ZAP. A dose of 1.5 mg/kg of CD117-ADC (~12 µg Streptavidin-ZAP) optimally resulted in depletion of >99% of immunophenotypic and functional HSCs.
Related Products: Streptavidin-ZAP (Cat. #IT-27), Anti-CD117-SAP (Cat. #IT-83)
Hematopoietic chimerism and donor-specific skin allograft tolerance after non-genotoxic CD117 antibody-drug-conjugate conditioning in MHC-mismatched allotransplantation.
Li Z, Czechowicz A, Scheck A, Rossi DJ, Murphy PM (2019) Hematopoietic chimerism and donor-specific skin allograft tolerance after non-genotoxic CD117 antibody-drug-conjugate conditioning in MHC-mismatched allotransplantation. Nat Commun 10:616. doi: 10.1038/s41467-018-08202-w
Objective: To develop a conditioning protocol for fully MHC-mismatched bone marrow allotransplantation in mice involving transient immunosuppression and selective depletion of recipient hematopoietic stem cells.
Summary: CD117-ADC conditioning promotes skin allograft tolerance.
Usage: Biotinylated monoclonal antibodies directed against mouse CD117 were coupled to Streptavidin-ZAP. Each mouse was injected with 1.5 mg/kg of ADC in a total volume of 300 mcl PBS.
Related Products: Streptavidin-ZAP (Cat. #IT-27)
Basal forebrain chemogenetic inhibition disrupts the superior complex movement control of goal-tracking rats.
Kucinski A, Kim Y, Sarter M (2019) Basal forebrain chemogenetic inhibition disrupts the superior complex movement control of goal-tracking rats. Behav Neurosci 133:121-134. doi: 10.1037/bne0000290
Usage: Basal forebrain cholinergic neurons situated in the nucleus basalis and substantia innominata were targeted with 192-IgG-SAP in aCSF infused bilaterally (200 ng/μL; 0.8 μL/hemisphere).
Related Products: 192-IgG-SAP (Cat. #IT-01)
Ablation of brainstem C1 neurons improves cardiac function in volume overload heart failure.
Andrade DC, Toledo C, Díaz HS, Lucero C, Arce-Álvarez A, Oliveira LM, Takakura AC, Moreira TS, Schultz HD, Marcus NJ, Alcayaga J, Del Rio R (2019) Ablation of brainstem C1 neurons improves cardiac function in volume overload heart failure. Clin Sci (Lond) 133(3):393-405. doi: 10.1042/CS20180589
Objective: To determine the role played by RVLM-C1 neurons in cardiac autonomic imbalance, arrhythmogenesis and cardiac dysfunction in volume overload-induced heart failure.
Summary: RVLM-C1 neurons were selectively ablated using Anti-DBH-SAP and measures of cardiacautonomictone, function, and arrhythmia incidence were evaluated. Cardiac autonomic imbalance, arrhythmogenesis and cardiac dysfunction were present in HF rats and improved after Anti-DBH-SAP treatment.
Usage: 7.5ng/100nl of sterile saline solution was injected bilaterally into the RVLM.
Related Products: Anti-DBH-SAP (Cat. #IT-03)
Ro41-5253, a selective antagonist of retinoic acid receptor α, ameliorates chronic unpredictable mild stress-induced depressive-like behaviors in rats: Involvement of regulating HPA axis and improving hippocampal neuronal deficits.
Ke Q, Li R, Cai L, Wu SD, Li CM (2019) Ro41-5253, a selective antagonist of retinoic acid receptor α, ameliorates chronic unpredictable mild stress-induced depressive-like behaviors in rats: Involvement of regulating HPA axis and improving hippocampal neuronal deficits. Brain Res Bull 146:302-309. doi: 10.1016/j.brainresbull.2019.01.022 PMID: 30711623
Usage: histology
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