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Similar articles for PubMed (Select 9334371)

1.

Heat shock protein-peptide complexes, reconstituted in vitro, elicit peptide-specific cytotoxic T lymphocyte response and tumor immunity.

Blachere NE, Li Z, Chandawarkar RY, Suto R, Jaikaria NS, Basu S, Udono H, Srivastava PK.

J Exp Med. 1997 Oct 20;186(8):1315-22.

2.
3.

In vivo and in vitro activation of T cells after administration of Ag-negative heat shock proteins.

Breloer M, Fleischer B, von Bonin A.

J Immunol. 1999 Mar 15;162(6):3141-7.

4.

Activation of cytotoxic T cells in vitro by recombinant gp96 fusion proteins irrespective of the 'fused' antigenic peptide sequence.

Moré S, Breloer M, Fleischer B, von Bonin A.

Immunol Lett. 1999 Aug 3;69(2):275-82.

PMID:
10482363
5.

Association of peptides with heat shock protein gp96 occurs in vivo and not after cell lysis.

Ménoret A, Peng P, Srivastava PK.

Biochem Biophys Res Commun. 1999 Sep 7;262(3):813-8.

PMID:
10471407
6.

Adjuvanticity of alpha 2-macroglobulin, an independent ligand for the heat shock protein receptor CD91.

Binder RJ, Karimeddini D, Srivastava PK.

J Immunol. 2001 Apr 15;166(8):4968-72.

7.

Calreticulin displays in vivo peptide-binding activity and can elicit CTL responses against bound peptides.

Nair S, Wearsch PA, Mitchell DA, Wassenberg JJ, Gilboa E, Nicchitta CV.

J Immunol. 1999 Jun 1;162(11):6426-32.

8.

Primary T-cell and activated macrophage response associated with tumor protection using peptide/poly-N-acetyl glucosamine vaccination.

Maitre N, Brown JM, Demcheva M, Kelley JR, Lockett MA, Vournakis J, Cole DJ.

Clin Cancer Res. 1999 May;5(5):1173-82.

9.

Molecular and cellular requirements for enhanced antigen cross-presentation to CD8 cytotoxic T lymphocytes.

Oizumi S, Strbo N, Pahwa S, Deyev V, Podack ER.

J Immunol. 2007 Aug 15;179(4):2310-7.

10.
11.

Phylogenetic conservation of the molecular and immunological properties of the chaperones gp96 and hsp70.

Robert J, Ménoret A, Basu S, Cohen N, Srivastava PR.

Eur J Immunol. 2001 Jan;31(1):186-95.

PMID:
11265634
12.

Cross-presentation of human melanoma peptide antigen MART-1 to CTLs from in vitro reconstituted gp96/MART-1 complexes.

Staib F, Distler M, Bethke K, Schmitt U, Galle PR, Heike M.

Cancer Immun. 2004 Apr 16;4:3.

13.

Dendritic cells pulsed with gp96-peptide complexes derived from human hepatocellular carcinoma (HCC) induce specific cytotoxic T lymphocytes.

Wang XH, Qin Y, Hu MH, Xie Y.

Cancer Immunol Immunother. 2005 Oct;54(10):971-80. Epub 2005 Jun 18.

PMID:
15965645
14.

A mechanism for the specific immunogenicity of heat shock protein-chaperoned peptides.

Suto R, Srivastava PK.

Science. 1995 Sep 15;269(5230):1585-8.

PMID:
7545313
15.

Isolation of MHC class I-restricted tumor antigen peptide and its precursors associated with heat shock proteins hsp70, hsp90, and gp96.

Ishii T, Udono H, Yamano T, Ohta H, Uenaka A, Ono T, Hizuta A, Tanaka N, Srivastava PK, Nakayama E.

J Immunol. 1999 Feb 1;162(3):1303-9.

16.

Immunotherapy using heat-shock protein preparations of leukemia cells after syngeneic bone marrow transplantation in mice.

Sato K, Torimoto Y, Tamura Y, Shindo M, Shinzaki H, Hirai K, Kohgo Y.

Blood. 2001 Sep 15;98(6):1852-7.

17.
18.

Efficient cross-presentation by heat shock protein 90-peptide complex-loaded dendritic cells via an endosomal pathway.

Kurotaki T, Tamura Y, Ueda G, Oura J, Kutomi G, Hirohashi Y, Sahara H, Torigoe T, Hiratsuka H, Sunakawa H, Hirata K, Sato N.

J Immunol. 2007 Aug 1;179(3):1803-13.

19.

CD91 is a common receptor for heat shock proteins gp96, hsp90, hsp70, and calreticulin.

Basu S, Binder RJ, Ramalingam T, Srivastava PK.

Immunity. 2001 Mar;14(3):303-13.

20.

Heat shock protein-peptide complexes elicit cytotoxic T-lymphocyte and antibody responses specific for bovine herpesvirus 1.

Navaratnam M, Deshpande MS, Hariharan MJ, Zatechka DS Jr, Srikumaran S.

Vaccine. 2001 Jan 8;19(11-12):1425-34.

PMID:
11163665
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